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Impacts of road on plant invasions in the Middle Mountain region of central Nepal
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作者 Ananda ADHIKARI Adarsha SUBEDI +1 位作者 Achyut TIWARI Bharat Babu SHRESTHA 《Journal of Mountain Science》 SCIE CSCD 2024年第2期619-632,共14页
Biological invasion is triggered by human development activities such as the construction and expansion of road networks.Road verges serve as important habitats and corridors for the distribution of invasive alien pla... Biological invasion is triggered by human development activities such as the construction and expansion of road networks.Road verges serve as important habitats and corridors for the distribution of invasive alien plant species(IAPS)between geographically distant habitats.However,the trajectory of plant invasion and the data regarding the impact of roads on IAPS distribution are relatively poor in Nepal.Here,we surveyed two road types(main roads and feeder road)in the Middle Mountain region of central Nepal in order to investigate how different road types are driving the dispersal of IAPS along road verges and the adjacent natural habitats.Systematic sampling was conducted at ca 2.5 km intervals along the roads.At each sampling site,paired plots(25 m×4 m)were sampled:one adjacent to and along the road,and another 20 m away and parallel to it in the interior habitat.Our results revealed that the main road verges had a higher cover(33%)and a larger number of IAPS(14 species)than the feeder road(25%;10 species).The IAPS cover and richness were significantly higher along verges than in the adjacent interior habitats for both road types,indicating that roads are contributing as corridors for the dispersal of IAPS in the Middle Mountain areas of central Nepal.Further,elevation,tree canopy,and disturbances(grazing/mowing/trampling)were found to be the key factors that determine spatial distribution of IAPS along road verges.We emphasize that regular monitoring of vegetation along the road verges can help with the early detection and control of potential IAPS in the region before they become problematic. 展开更多
关键词 Biological invasions Dispersal corridor Invasive alien plants Transport infrastructure Himalayan mountains
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Fluctuating resources,disturbance and plant strategies:diverse mechanisms underlying plant invasions 被引量:2
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作者 Ian J RADFORD 《Journal of Arid Land》 SCIE CSCD 2013年第3期284-297,共14页
This paper examines the hypothesis that non-native plant invasions are related to fluctuating resource availability as proposed by Davis et al. (2000). I measured relative functional responses of both invasive and n... This paper examines the hypothesis that non-native plant invasions are related to fluctuating resource availability as proposed by Davis et al. (2000). I measured relative functional responses of both invasive and native plants to changed resource availability due to nutrient enrichment and rainfall, and to increased disturbance. Data are presented from studies in two contrasting ecosystems. First is a series of glasshouse and field experiments on the invader Hieracium lepidulum and associated invasive and native species in subalpine temperate New Zealand. Second is a field study of invasive and native plant responses to altered disturbance regimes and rainfall from tropical savannas of north eastern Australia. Invaders responded differently from native species to changes in resource availability in both subalpine and tropical studies. However, invaders differed among themselves showing that different species exploit different functional niches to invade their respective habitats. These findings contribute to the contention that the fluctuating resource hypothesis does not provide a universal explanation for plant invasions. The diverse functional responses to increased resource availability among invaders in this and previous studies suggest that the cause of invasion depends on unique combinations of habitat and functional attributes of invaders and native assemblages. Such findings imply that universal predictions of what will happen under climate change scenarios across the globe will be difficult to make. 展开更多
关键词 plant invasion plant strategies C-S-R triangle fluctuating resources DISTURBANCE
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A fine-scale assessment of the ecosystem service-disservice dichotomy in the context of urban ecosystems affected by alien plant invasions 被引量:1
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作者 Luke J.Potgieter Mirijam Gaertner +1 位作者 Patrick J.O’Farrell David M.Richardson 《Forest Ecosystems》 SCIE CSCD 2019年第4期323-338,共16页
Background: Natural resources within and around urban landscapes are under increasing pressure from ongoing urbanisation, and management efforts aimed at ensuring the sustainable provision of ecosystem services(ES) ar... Background: Natural resources within and around urban landscapes are under increasing pressure from ongoing urbanisation, and management efforts aimed at ensuring the sustainable provision of ecosystem services(ES) are an important response. Given the limited resources available for assessing urban ES in many cities, practical approaches for integrating ES in decision-making process are needed.Methods: We apply remote sensing techniques(integrating LiDAR data with high-resolution multispectral imagery)and combined these with supplementary spatial data to develop a replicable approach for assessing the role of urban vegetation(including invasive alien plants) in providing ES and ecosystem disservices(EDS). We identify areas denoting potential management trade-offs based on the spatial distribution of ES and EDS using a local-scale case study in the city of Cape Town, South Africa. Situated within a global biodiversity hotspot, Cape Town must contend with widespread invasions of alien plants(especially trees and shrubs) along with complex socio-political challenges. This represents a useful system to examine the challenges in managing ES and EDS in the context of urban plant invasions.Results: Areas of high ES provision(for example carbon sequestration, shade and visual amenity) are characterized by the presence of large trees. However, many of these areas also result in numerous EDS due to invasions of alien trees and shrubs – particularly along rivers, in wetlands and along the urban edge where tall alien trees have established and spread into the natural vegetation(for example increased water consumption, increased fire risk and reduced soil quality). This suggests significant trade-offs regarding the management of species and the ES and EDS they provide.Conclusions: The approach applied here can be used to provide recommendations and to guide city planners and managers to fine-tune management interventions at local scales to maximise the provision of ES. 展开更多
关键词 BIODIVERSITY Biological invasions Ecosystem disservices Ecosystem services Remote sensing Trade-offs Tree invasions Urban plant invasions
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A Systematic Review of Terrestrial Plant Invasion Mechanisms Mediated by Microbes and Restoration Implications
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作者 K. Dawkins J. Mendonca +1 位作者 O. Sutherland N. Esiobu 《American Journal of Plant Sciences》 2022年第2期205-222,共18页
Terrestrial invasive plant species continue to wreak havoc on a global economic and ecological scale. With the advent of climate change and pending future catastrophes, the spread of resilient invasive plants will onl... Terrestrial invasive plant species continue to wreak havoc on a global economic and ecological scale. With the advent of climate change and pending future catastrophes, the spread of resilient invasive plants will only increase exponentially. Here, the search continues for a better understanding of the below-ground microbially driven mechanisms involved in plant invasion where other above-ground mechanisms have been exhausted. Microbes govern the world around us and interact with every living and non-living facet of the world. To reinforce the important underpinnings of the role of microorganisms in plant invasion, a systematic review of recently published articles was undertaken. Using the ScienceDirect database, five (5) search queries were used to generate 1221 research articles. After a two-step reduction was made based on relevance of the articles, a final total of 59 articles were retrieved. An additional 18 relevant articles were also assessed through the PubMed database for analysis to account for other invasive plants. Thirty-seven (37) invasive species were investigated where soil physiochemical and microbial community structure changes were most prevalent (32% & 39% respectively) while enhanced mutualism, allelopathy and pathogen accumulation were reported less (16%, 10% & 3% respectively). In all invasive species assessed, the impact on plant invasion and inability of the native plants to compete was due to specific microbial associations of the invasive plant or disruption of the soil microbial community. This microbial community shift coincided with changes in physiochemical properties of the soil and the subsequent negative soil feedback for native plants. There is still an expanding potential for the use of biocontrol agents to aid restoration once the underpinnings of biotic resistance and enemy release are understood in a microbial and physiochemical context. The active and functional microbial community structure of the invasive plant rhizosphere and adjacent soil in its native and non-native region can offer a better inference of how they can be controlled using novel-below ground biocontrol methods. 展开更多
关键词 Invasive plant Biotic Resistance Biocontrol Agents Enemy Release RESTORATION
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Effects of plant invasion and land use change on soil labile organic carbon in southern China’s coastal wetla
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作者 Lihua Wang Wenjing Liu +8 位作者 Xueya Zhou Shenglei Fu Ping Yang Chuan Tong Hong Yang Dongyao Sun Linhai Zhang Wanyi Zhu Kam W.Tang 《Soil Ecology Letters》 2025年第1期133-143,共11页
Labile organic carbon(LOC)plays a pivotal role in soil biogeochemistry and ecological functions.China’s coastal wetlands have been profoundly impacted due to plant invasion and land use change,but the effects on soil... Labile organic carbon(LOC)plays a pivotal role in soil biogeochemistry and ecological functions.China’s coastal wetlands have been profoundly impacted due to plant invasion and land use change,but the effects on soil LOC quantity and composition are unclear.This study analyzed the soil LOC components—namely,dissolved organic carbon(DOC),easily oxidizable carbon(EOC),and microbial biomass carbon(MBC)—across twenty-one coastal wetlands in southeastern China.These wetlands underwent a uniform land cover transition from native mudflats(MFs)to Spartina alterniflora marshes(SAs),and eventually to aquaculture ponds(APs).The results indicated that EOC was the dominant component of soil organic carbon(SOC)(57.5%–61.6%),followed by MBC(3.5%–4.5%)and DOC(<0.5%).The transition from MFs to SAs led to a rise in mean EOC and DOC by 18.6%and 41.4%,respectively.Subsequent conversion of SAs to APs resulted in a reduction in mean EOC and DOC by 5.9%and 20.3%,respectively.MBC did not differ significantly among habitat types.Total nitrogen availability was the main driver of changes in LOC across both land cover change scenarios.The mineralization rate of SOC were more strongly correlated with DOC than EOC and MBC.Microbial turnover of EOC was temperature dependent across the geographical range.These finds highlighted that plant invasion and land use change affected LOC fractions and subsequent SOC stability and carbon emissions in coastal wetlands. 展开更多
关键词 labile organic carbon(LOC) dissolved organic carbon(DOC) microbial biomass carbon(MBC) carbon stock plant invasion aquaculture reclamation
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Plant invasions facilitated by suppression of root nutrient acquisition rather than by disruption of mycorrhizal association in the native plant
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作者 Jing Chen Hai-Yan Zhang +2 位作者 Ming-Chao Liu Mei-Xu Han De-Liang Kong 《Plant Diversity》 SCIE CAS CSCD 2022年第5期499-504,共6页
Invasive species have profound negative impacts on native ranges.Unraveling the mechanisms employed by invasive plant species is crucial to controlling invasions.One important approach that invasive plants use to outc... Invasive species have profound negative impacts on native ranges.Unraveling the mechanisms employed by invasive plant species is crucial to controlling invasions.One important approach that invasive plants use to outcompete native plants is to disrupt mutualistic interactions between native roots and mycorrhizal fungi.However,it remains unclear how differences in the competitive ability of invasive plants affect native plant associations with mycorrhizae.Here,we examined how a native plant,Xanthium strumarium,responds to invasive plants that differed in competitive abilities(i.e.,as represented by aboveground plant biomass)by measuring changes in root nitrogen concentration(root nutrient acquisition)and mycorrhizal colonization rate.We found that both root nitrogen concentration and mycorrhizal colonization rate in the native plant were reduced by invasive plants.The change in mycorrhizal colonization rate of the native plant was negatively correlated with both aboveground plant biomass of the invasive plants and the change in aboveground plant biomass of the native plant in monocultures relative to mixed plantings.In contrast,the change in root nitrogen concentration of the native plant was positively correlated with aboveground plant biomass of the invasive plants and the change in aboveground plant biomass of the native plant.When we compared the changes in mycorrhizal colonization rate and root nitrogen concentration in the native plant grown in monocultures with those of native plants grown with invasive plants,we observed a significant tradeoff.Our study shows that invasive plants can suppress native plants by reducing root nutrient acquisition rather than by disrupting symbiotic mycorrhizal associations,a novel finding likely attributable to a low dependence of the native plant on mycorrhizal fungi. 展开更多
关键词 plant invasion Root strategy Mycorrhizal strategy Tradeoff
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Effect of Convergence Plant Selection of Wildflower Mixtures in China on the Plant Invasion
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作者 Wenhao Hu Yangchao Huang +6 位作者 Yun Duan Lan He Wei Wu Yimiao Kong Lu Huang Haijiang Zhang Wenhui Xu 《Ecosystem Health and Sustainability》 2024年第2期37-48,共12页
The rapid development of urbanization and urban land-use intensification have substantially reduced biodiversity and ecosystem services.Wildflower mixtures can improve regional biodiversity and habitat heterogeneity b... The rapid development of urbanization and urban land-use intensification have substantially reduced biodiversity and ecosystem services.Wildflower mixtures can improve regional biodiversity and habitat heterogeneity by establishing flower-rich habitats and providing multiple ecosystem services,which were considered one of the most favorable landscape ecological restoration technologies approaches.How to design wildflower mixtures to achieve optimal eco-efficiency is currently unclear.In China,wildflower mixture is one of landscape architecture's most popular methods for establishing herbaceous vegetation.Currently,there is a notable lack of systematic research regarding species selection,and concerns have been raised about the design approach that introduces convergent species,which may potentially become invasive.This research integrated a wildflower mixture design database currently published in China and discovered community composition and construction methods.Based on this,we compared the species composition of wildflower mixtures in China and assessed the potential invasive species.Additionally,we attempted to explore the distribution over time and space,their potential invasion risk,and the main factors influencing species selection through modeling approaches.The results highlighted that species selection of mixture converged with different spatiotemporal attributes and design intentions,despite designed wildflower mixtures in China having gradually increased in recent years.A large number of species from North America and Europe have been causing an increase in potential invasion annually.Furthermore,the research confirmed that the convergence contributes to the homogenization of urban landscape vegetation communities,which leads to biological invasion from the design level,and revealed the possibility that ineffective ecological restoration techniques may cause adverse environmental impacts. 展开更多
关键词 species selection landscape ecological restoration urbanization biodiversity ecosystem services wildflower mixtures landscape ecological restoration technologies plant invasion
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Nitrogen/Phosphorus Ratio Affected the Growth of an Invasive Plant Alternanthera philoxeroides under Cadmium Stress
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作者 Rui Zhang Le Ren +6 位作者 Zhihang Liu Xinyue Gu Shanshan Du Xiao Chen Bingran Xi Bingnan Zhao Chao Si 《Phyton-International Journal of Experimental Botany》 2025年第3期709-721,共13页
Plant invasion poses a serious environmental challenge to freshwater ecosystems. Heavy metal pollution and nutrient enrichment, particularly nitrogen (N) and phosphorus (P), are two additional critical environmental i... Plant invasion poses a serious environmental challenge to freshwater ecosystems. Heavy metal pollution and nutrient enrichment, particularly nitrogen (N) and phosphorus (P), are two additional critical environmental issues known to influence the growth of invasive plants. Notably, the N/P ratio in the environments is often inconstant;however, whether these variations can cause differential responses in invasive plants remains underexplored, despite its crucial importance for understanding plant invasiveness. In this study, we examined the effects of different N/P ratios (4:1, 16:1, 32:1, 64:1) on the growth of a widespread invasive plant Alternanthera philoxeroides in cadmium (Cd) polluted water, while maintaining either a constant N concentration (2 mmol L^(−1)) or a constant P concentration (0.5 mmol L^(−1)). Two control treatments were also included: one without Cd, N, or P, and another with Cd but without N or P. The addition of N and P did not mitigate the inhibitory effects of Cd on A. philoxeroides growth nor did it enhance its tolerance. However, under conditions of constant N concentration, the N/P ratio of 4:1 significantly increased both the main stem length and the number of nodes in A. philoxeroides under Cd stress, potentially enhancing its expansion and clonal growth. Our results suggest that A. philoxeroides exhibits greater sensitivity to variations in the N/P ratio when N concentration is held constant, compared to when P concentration is constant in Cd polluted water. This study investigated the effects of varying N/P ratios on invasive plants under Cd pollution, which has been underexplored in previous research. The findings provide an experimental basis for controlling and preventing the spread of invasive plants in freshwater systems polluted with Cd and experiencing eutrophication. 展开更多
关键词 Alternanthera philoxeroides cadmium pollution invasive plant nitrogen/phosphorus ratio NUTRIENTS
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Germination niche of campo rupestre plants:effects of increased temperature and darkness
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作者 Walisson KENEDY-SIQUEIRA Ramiro AGUILAR +2 位作者 Fabian BORGHETTI Bruno MOREIRA Geraldo Wilson FERNANDES 《Journal of Mountain Science》 2025年第7期2541-2554,共14页
Anthropogenic disturbances are causing significant impacts on plant distribution worldwide,and many of these effects are driven by changes in the recruitment patterns of plant species.Global warming and land-use chang... Anthropogenic disturbances are causing significant impacts on plant distribution worldwide,and many of these effects are driven by changes in the recruitment patterns of plant species.Global warming and land-use change are two major disturbances leading to changes in germination strategies by changing both soil temperature regimes and light quality reaching the seeds due to soil disturbance.Investigating the range,overlap,and redundancy of niche germination of co-occurring plant species allows us to understand whether endemic species are threatened either by native non-endemic or by alien species,especially in an ecosystem of restricted distribution such as the campo rupestre.Employing a systematic review,this study aimed to evaluate the effect of temperature increase and seed burial on the germination of endemic and non-endemic species in the campo rupestre in Brazil.We performed a metaanalysis using increased temperature and darkness as proxies for the impact of disturbance on germination patterns.In this context,we hypothesized that:increased temperature and darkness negatively influence the germination of native species and positively influence the germination of alien species in the campo rupestre.Specifically,we expect the negative effect to be more pronounced in endemic species than in native non-endemic species.Moreover,we intend to describe the role of seed size in the germination of native and alien species from campo rupestre in the context of increased temperature and darkness.Our analysis showed that increased temperature influenced the germination of alien species by ca.55%,while it did not influence the germination of endemic or native non-endemic species.Furthermore,the germination of alien species under higher temperatures was promoted by increasing seed size.Darkness negatively influenced seed germination of native species,independent of their distribution.Moreover,under darkness conditions,the germination of endemic seeds decreased with seed size.Through their direct effects on germination strategies,we conclude that warming temperatures and land-use change can lead to a long-term displacement of endemic species by native non-endemic and alien species in campo rupestre,thus compromising ecosystem services and conservation of these fragile physiognomies in the near future. 展开更多
关键词 Campo rupestre Global warming Invasive plants Land use change Meta-analysis Regeneration niche Seed size
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Global invasive alien plant management lists:Assessing current practices and adapting to new demands
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作者 Fei-Fei Li Qiang Hao +3 位作者 Xia Cui Ruo-Zhu Lin Bin-Sheng Luo Jin-Shuang Ma 《Plant Diversity》 2025年第4期666-680,共15页
Invasive alien species(IAS)significantly threaten global biodiversity and ecosystem stability.Despite increasing management efforts,a critical knowledge gap existed in understanding commonalities and disparities among... Invasive alien species(IAS)significantly threaten global biodiversity and ecosystem stability.Despite increasing management efforts,a critical knowledge gap existed in understanding commonalities and disparities among national strategies.We analyzed several IAS management lists from 23 countries and the European Union,focusing specifically on vascular plant species within these lists.List composition,characteristics,and associated management measures were analyzed.Key patterns in species prioritization across national lists and intercontinental exchange of invasive alien plants(IAPs)were identified.Pistia stratiotes,Pontederia crassipes,Salvinia molesta,Cabomba caroliniana,Ulex europaeus were identified as globally recognized threats,being listed by at least 33.3%of analyzed countries and invading five or more continents.Aquatic plants were found to be more frequently included in management lists.A significant directional invasion pattern between the Eastern and Western Hemispheres was identified.Species native to Asia were observed to dominate as significant donors of IAPs across continents.The analysis of list management strategies highlighted substantial gaps in achieving Target 6 of the Kunming-Montreal Global Biodiversity Framework,particularly in species prioritization and inclusion of potential IAPs.In response to these challenges,a tiered classification system for invasive alien species list was proposed,encompassing High-Priority,Watchlist,Potential,and Priority Site categories,which aimed at enhancing management effectiveness by tailoring strategies to different invasion stages and ecological contexts.This study could contribute to understanding global IAPs management strategies and serve as a reference for policymakers and conservation managers to identify priority IAPs and refine management approaches. 展开更多
关键词 Invasive alien plants Kunming-Montreal global biodiversity FRAMEWORK Global management strategies Tiered classification system Biodiversity conservation
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Environmental drivers and future distribution of invasive alien plant species in the Gaoligong Mountains,southwestern China
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作者 Yu Xiao Xuecan Wu +6 位作者 Hexiang Duan Zhengtao Ren Zhicheng Jiang Tingfa Dong Yuran Li Jinming Hu Yupeng Geng 《Plant Diversity》 2025年第5期814-823,共10页
Invasive alien plant species(IAPS)pose severe threats to global biodiversity conservation.Effective management of IAPS requires mapping their distribution and identifying the environmental factors that drive their spr... Invasive alien plant species(IAPS)pose severe threats to global biodiversity conservation.Effective management of IAPS requires mapping their distribution and identifying the environmental factors that drive their spread.The Gaoligong Mountains,a renowned biodiversity hotspot in southwestern China,currently face the dual challenges of IAPS invasion and climate change.However,we know little about the distribution patterns,key environmental drivers,and sensitivity of IAPS to future climate change in this region.In this study,we mapped IAPS richness distribution and identified invasion hotspots throughout the Gaoligong Mountains.In addition,we assessed the relative importance of environmental variables in shaping the spatial distribution of IAPS richness and projected potential shifts in IAPS richness under various climate change scenarios.We identified 161 IAPS,primarily concentrated in the low-elevation tropical and subtropical regions along river valleys,forming belt-like invasion hotspots.The key factors shaping IAPS richness included disturbance complexity,elevation,seasonal precipitation,and vegetation types.Notably,IAPS richness significantly declined with increasing elevation and latitude but increased with higher disturbance complexity.Moreover,IAPS were more prevalent in grasslands and shrublands than in forested areas.Ensemble modeling of future climate scenarios predicted that the distribution of IAPS richness would shift to progressively higher elevations.These findings provide valuable insights for managing IAPS in mountainous regions that play a crucial role in global biodiversity conservation. 展开更多
关键词 Climate change Distribution pattern Environmental driver Gaoligong mountains Invasive alien plant species invasion hotspot
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The effects of the invasive plants on soil nematodes vary with the duration of elevated CO_(2) treatment
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作者 Xiu-Rong Lu Ming-Chao Liu +3 位作者 Wei-Wei Feng Bo Qu Jing-Kuan Wang Yu-Long Feng 《Plant Diversity》 2025年第4期681-689,共9页
Exotic plant invasions and increased atmospheric carbon dioxide(CO_(2))concentration have been determined to independently affect soil nematodes,a key component of soil biota.However,little is known about the long-ter... Exotic plant invasions and increased atmospheric carbon dioxide(CO_(2))concentration have been determined to independently affect soil nematodes,a key component of soil biota.However,little is known about the long-term effects of these two global change factors and their interactive effects.Over three consecutive years,we cultivated invasive alien plant Xanthium strumarium and its two phylogenetically related natives under both ambient(aCO_(2))and elevated(eCO_(2))atmospheric CO_(2)concentrations,and determined the effects of the invader and natives on soil nematodes under different CO_(2)concentrations and the relevant mechanism.The abundance of total soil nematodes and that of the dominant trophic group(herbivores)were significantly affected by plant species and CO_(2)concentration,and these effects were dependent on the experimental duration,however,the Shannon-diversity of nematodes was not affected by these factors.Under aCO_(2),both invasive and native species significantly increased the total nematode abundance and that of the dominant trophic group with increasing experimental duration,and the amplitude of the increase was greater under the invader relative to the natives.The eCO_(2)increased total nematode abundance(second year)and that of the dominant trophic group(third year)under the invader,but not under the natives(or even decreased)with increasing experimental duration.Root litter had greater effects on soil nematode abundance than leaf litter and root exudates did.This study indicates that eCO_(2)would aggravate effects of invasive plants on soil nematodes by increasing abundance,and these effects would vary with the duration. 展开更多
关键词 CO_(2)concentration Invasive alien plant Leaf and root litters Root exudates Soil nematode community Experimental duration
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Changes in Soil Organic Carbon Dynamics in a Native C4 Plant-Dominated Tidal Marsh Following Spartina alterniflora Invasion 被引量:10
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作者 jin baoshi lai derrick yuk fo +2 位作者 gao dengzhou tong chuan zeng congsheng 《Pedosphere》 SCIE CAS CSCD 2017年第5期856-867,共12页
Invasion of an exotic C4 plant Spartina alterniflora has been shown to increase soil organic carbon (SOC) concentrations in native C3 plant-dominated coastal wetlands of China. However, little is known about the eff... Invasion of an exotic C4 plant Spartina alterniflora has been shown to increase soil organic carbon (SOC) concentrations in native C3 plant-dominated coastal wetlands of China. However, little is known about the effects of S. alterniflora invasion on SOC concentrations and fractions in tidal marshes dominated by native C4 plants. In this study, a field experiment was conducted in a tidal marsh dominated by the native C4 plant Cyperus malaccensis in the Minjiang River estuary, China. Concentrations of SOC and liable SOC fractions, dissolved organic carbon (DOG), microbial biomass carbon (MBC), and easily oxidizable carbon (EOC), were measured in the top 50-cm soils of the C. malaccensis community, as well as those of three S. alterniflova communities with an invasion duration of 0-4 years (SA-4), 4-8 years (SA-8), and 8-12 years (SA-12), respectively. Results showed that both SOC stocks in the 50-cm soils and mean SOC concentrations in the surface soils (0-10 cm) of the C. malaccensis community increased with the duration of S. alterniflora invasion, whereas SOC concentrations in the 10-50-cm soils decreased slightly during the initial period of S. alterniflora invasion, before increasing again. The pattern of changes in labile SOC fractions (DOC, MBC, and EOC) with invasion duration was generally similar to that of SOC, while the ratios of labile SOC fractions to total SOC (DOC:SOC, MBC:SOC, and EOC:SOC) decreased significantly with the duration of S. alterniflora invasion. The findings of this study suggest that invasion of the exotic C4 plant S. alternifora into a marsh dominated by the native C4 plant C. malaecensis would enhance SOC sequestration owing to the greater amount of biomass and lower proportion of labile SOC fractions present in the S. alterniflora communities. 展开更多
关键词 carbon sequestration carbon stock coastal wetland labile organic carbon fractions plant invasion redundancy analyses river estuary
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Alien woody plant invasions in natural forests across China 被引量:3
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作者 Yupin Wang Songlin Fei +5 位作者 Zhiyao Tang Yuanfeng Sun Guoping Chen Xiangping Wang Shaopeng Wang Jingyun Fang 《Journal of Plant Ecology》 SCIE CSCD 2021年第5期749-756,共8页
Aims Alien plant invasion has become a major global environmental issue,causing severe economic and ecological damages.Severe invasions have been reported in some regions of China.However,most studies have been conduc... Aims Alien plant invasion has become a major global environmental issue,causing severe economic and ecological damages.Severe invasions have been reported in some regions of China.However,most studies have been conducted at local and provincial levels,and the overall degree of invasion in natural forests across China remains unclear.Here,we explored the biogeographic patterns and their environmental and socioeconomic controls of the invaded alien woody plants in natural forests across the country.Methods We compiled the data of 3573 natural forest plots across the China's Mainland and mapped spatial distribution of alien woody plant invasion.We also used logistic regression models to identify the key socioeconomic and environmental factors that were associated with the observed invasion patterns.Important Findings We found that only 271 plots among 3573 natural forest plots were invaded by alien woody plants,accounting for 7.58%of all plots.Among all 2825 woody plant species across all plots surveyed,only 5 alien species(0.177%)were found.Both human activities and climate factors were related to the observed invasion patterns.Since China’s natural forests are mostly located in remote mountainous areas with limited human disturbance,alien woody plant invasions are less than those reported in North America and Europe.However,with the development of transportation and increased economic activities in mountainous areas,more invasions by alien plants may be expected in the future.Therefore,proactive management and policy making are desired to prevent or slow down the invasion processes. 展开更多
关键词 alien woody plant invasion China's natural forest field data human disturbance invasion patterns
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Invasion Risk Assessment of Exotic Plant Praxelis clematidea in Zhengzhou
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作者 Li Wenzeng Wang Zhihong 《Plant Diseases and Pests》 CAS 2017年第2期43-46,共4页
To reduce the harms of plant invasion,the risk assessment for biological invasion of exotic species( including intentionally introduced species and accidentally introduced species) is particularly important. Through... To reduce the harms of plant invasion,the risk assessment for biological invasion of exotic species( including intentionally introduced species and accidentally introduced species) is particularly important. Through data review,investigation research and expert consultation,risk assessment system and standard for exotic species invasion in Zhengzhou region was established. Risk of Praxelis clematidea was assessed,in order to provide a reference for possible biological invasion of exotic plants in Zhengzhou. 展开更多
关键词 plant invasion Risk assessment Praxelis clematidea Zhengzhou
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Current plant diversity but not its soil legacy influences exotic plant invasion 被引量:4
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作者 Wei Xue Si-Mei Yao +3 位作者 Lin Huang Sergio RRoiloa Bao-Ming Ji Fei-Hai Yu 《Journal of Plant Ecology》 SCIE CSCD 2022年第3期639-649,共11页
Current plant diversity can influence exotic plant invasion,but it is unclear whether there is a legacy effect of plant diversity on exotic plant invasion.As plant diversity can affect soil microbial communities and p... Current plant diversity can influence exotic plant invasion,but it is unclear whether there is a legacy effect of plant diversity on exotic plant invasion.As plant diversity can affect soil microbial communities and physio-chemical properties,which may cascade to impact subsequent exotic plant growth,we hypothesize that the soil legacy effect of plant diversity can influence exotic plant invasion.We conducted a plant–soil feedback experiment.In the conditioning phase,we trained soils by monocultures of 12 plant species from three functional groups(4 grasses,3 legumes and 5 forbs)and mixtures of 8 randomly selected species with all three functional groups from this 12-species pool.In the test phase,we grew the invasive plant Bidens pilosa with a co-occurring native grass(Arthraxon hispidus),with a co-occurring native forb(Pterocypsela indica)or with both in each type of the conditioned soils.The performance of B.pilosa relative to its native competitors varied depending on the functional type of both conditioning plant species in the conditioning phase and competing plant species in the test phase.Diversity of the conditioning plants did not influence the growth difference between B.pilosa and its native competitors.However,increasing diversity of the competing plant species reduced the performance of B.pilosa relative to its native competitors.Our results suggest that current plant diversity can reduce exotic plant invasion through increasing growth inequality between invasive and native plants,but the soil legacy effect of plant diversity may have little impact on exotic plant invasion. 展开更多
关键词 Bidens pilosa competitive balance diversity effect invasive plant plant–soil feedback
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Forestry activity is one mechanism of invasion by arboreal plants 被引量:1
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作者 Gulnara SITPAEVA Sergey CHEKALIN 《Journal of Arid Land》 SCIE CSCD 2013年第4期434-438,共5页
For a long time,forestry primarily had industrial goals.Volume of wood production was the main criterion of forestry efficacy,and thus rapid-growing arboreal species were cultivated in natural forests.More recently,na... For a long time,forestry primarily had industrial goals.Volume of wood production was the main criterion of forestry efficacy,and thus rapid-growing arboreal species were cultivated in natural forests.More recently,nature protection has become one of forestry's goals.Unfortunately,some introduced,rapid-growing species became aggressive components of natural ecological systems during the interim.In this paper,we first describe a method that we developed to categorize aggressiveness of invasive arboreal plants in natural forest ecosystems of Kazakhstan.We then apply this new scheme to monitoring data of invasive arboreal plants to provide an insight into the invasion potential of different species in the fruit forests of Southeast Kazakhstan. 展开更多
关键词 forest ecosystems AGGRESSIVENESS invasive arboreal plants
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Prevention and Utilization of Invasive Plants of Agriculture and Forestry in Guangdong Province 被引量:4
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作者 黄泽文 练惠通 +4 位作者 王禾军 张波 罗映鹏 邓建基 向安强 《Agricultural Science & Technology》 CAS 2014年第5期846-849,共4页
Guangdong has become a major"window" for invasive plants, and the largest zone, where cross-border and intercontinental migration frequencies reach the peak. The invasive plants in Guangdong are dominated by Mikania... Guangdong has become a major"window" for invasive plants, and the largest zone, where cross-border and intercontinental migration frequencies reach the peak. The invasive plants in Guangdong are dominated by Mikania micrantha, Eichhornia crassipes, Alternanthera philoxeroides, Eupatorium odoratum, and Wedelia trilobata. It is an important way for treating the invasive plants by exploring the prevention methods and making ful use of the characteristics of the invasive plants, and it is of great significance to prevent and utilize alien species in a scientific and effective way in order to control the invasive plants with minimal cost. 展开更多
关键词 Invasive plants GUANGDONG Prevention and utilization Agriculture and forestry
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Investigation and Risk Assessment of Alien Invasive Plants in Riparian Zone of Dongjiang River 被引量:2
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作者 付岚 赵鸣飞 +1 位作者 龚玲 刘全儒 《Agricultural Science & Technology》 CAS 2011年第12期1897-1904,共8页
[Objective] The aim was to conduct investigation and risk assessment of the alien invasive plants in riparian zone of Dongjiang River.[Method] The field survey was carried out by the combination methods of sampling pl... [Objective] The aim was to conduct investigation and risk assessment of the alien invasive plants in riparian zone of Dongjiang River.[Method] The field survey was carried out by the combination methods of sampling plots investigation and route survey,and the whole Dongjiang River was covered.52 sampling points were set in the main streams,and 87 sampling points in tributaries streams,624 quadrats were set in total;multi-index comprehensive evaluation method was adopted for the risk assessment with 6 first-level indexes and 25 second-level indexes.[Result] Through the investigation on the riparian zone of Dongjiang River for 2 years,51 species of alien invasive plants were found,belonging to 17 families and 38 genera.The risk level assessment results of these 51 species showed that 18 species,such as Ageratum conyzoides,belonged to high-level risk with over 60 points;26 species,such as Chenopodium ambrosioides,were between 30 and 60 points which belonged to middle-level risk;7 species,such as Paspalum dilatatum,with less than 30 points belonged to low-level risk.[Conclusion] Basic data on the protection,water environmental management and functional zoning of riparian zone of Dongjiang River were provided. 展开更多
关键词 Alien invasive plants Dongjiang River Risk assessment Multi-index comprehensive evaluation
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An Invasive Succulent Plant (Kalanchoe daigremontiana) Influences Soil Carbon and Nitrogen Mineralization in a Neotropical Semiarid Zone 被引量:2
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作者 Ileana HERRERA Jose R. FERRER-PARIS +3 位作者 Diana BENZO Saul FLORES Belkis GARCIA Jafet M. NASSAR 《Pedosphere》 SCIE CAS CSCD 2018年第4期632-643,共12页
It has long been recognized that plant invasions may alter carbon (C) and nitrogen (N) cycles, but the direction and magnitude of such alterations have been rarely quantified. In this study, we quantified the effe... It has long been recognized that plant invasions may alter carbon (C) and nitrogen (N) cycles, but the direction and magnitude of such alterations have been rarely quantified. In this study, we quantified the effects caused by the invasion of a noxious exotic plant, Kalanchoe daigrernontiana (Crassulaceae), on C and N mineralization and enzymatic and microbial activities in the soil of a semiarid locality in Venezuela. We compared soil parameters associated with these processes (C and N mineralization time and the cumulative values, fluorescein diacetate hydrolytic activity, and activities of dehydrogenase, β-glucosidase, glucosaminidase, and urease) between invaded and adjacent non-invaded sites. In addition, correlations among these parameters and the soil physical-chemical properties were also examined to determine if a positive feedback exists between nutrient availability and K. daigremontiana invasion. Overall, our results showed that C mineralization and transformation of organic compounds to NH4^+ were favored at sites colonized by K. daigrernontiana. With this species, we found the highest cumulative amounts of NH4^+-N and C and the lowest mineralization time. These results could be explained by higher activities of urease and glueosaminidase in soils under the influence of K. daigremontiana. In addition, higher amounts of organic matter and moisture content in invaded soils might favor C and N mineralization. In conclusion, invasion of Neotropical semiarid zones by K. daigrernontiana may influence the chemical and biological properties of the soils covered by this species, increasing nutrient bioavailability, which, in time, can facilitate the invasion process. 展开更多
关键词 Akaike Information Criterion C and N pools enzymatic activity NH4^+-N NO3^--N nutrient availability plant invasion
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