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黑沙蒿(Artemisia ordosica)对羊柴(Hedysarum laeve)及柠条(Caragana intermedia)的化感作用 被引量:8
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作者 高姗 廖超英 +3 位作者 刘瑞顺 高智辉 多杰吉 徐松 《中国沙漠》 CSCD 北大核心 2015年第3期645-651,共7页
采用生物测定方法,研究了黑沙蒿(Artemisia ordosica)叶水浸液对生态相关种羊柴(Hedysarum laeve)与柠条(Caragana intermedia)种子萌发与幼苗生长的化感作用。结果表明:黑沙蒿叶水浸液可抑制羊柴种子萌发与幼苗生长,抑制作用随浓度的... 采用生物测定方法,研究了黑沙蒿(Artemisia ordosica)叶水浸液对生态相关种羊柴(Hedysarum laeve)与柠条(Caragana intermedia)种子萌发与幼苗生长的化感作用。结果表明:黑沙蒿叶水浸液可抑制羊柴种子萌发与幼苗生长,抑制作用随浓度的升高逐渐加强;幼苗形态指标对叶水浸液作用较为敏感,敏感程度为苗干重>苗鲜重>根鲜重>根长>苗高>根干重;丙二醛含量综合化感效应指数值明显大于其他指标,相对电导率也表现出较敏感的抑制效应。黑沙蒿叶水浸液对柠条种子萌发存在低促高抑作用;对幼苗形态指标综合化感效应表现为促进,促进作用随浓度的升高逐渐减弱,根鲜重、根长与苗干重为较敏感指标;对生理指标化感综合效应表现为抑制,抑制作用随浓度升高而增强,相对电导率是最敏感的指标,丙二醛含量指标也较敏感。由此推断,对膜系统的伤害可能是黑沙蒿化感物质多种效应的生物起点。 展开更多
关键词 黑沙蒿(Artemisia ordosica) 羊柴(Hedysarum laeve) 柠条(Caragana intermedia) 化感作用
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Effects of Sand Burial on the Survival, Growth, and Biomass Allocation in Semi-shrub Hedysarum laeve Seedlings 被引量:14
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作者 张称意 于飞海 董鸣 《Acta Botanica Sinica》 CSCD 2002年第3期337-343,共7页
Hedysarum laeve Maxim. (Leguminosae) is one of the major species used frequently in revegetation of dune_field in the sandlands of the northern part of China by means of aerial sowing. Seedlings of the species after e... Hedysarum laeve Maxim. (Leguminosae) is one of the major species used frequently in revegetation of dune_field in the sandlands of the northern part of China by means of aerial sowing. Seedlings of the species after emergence above the sand surface may be buried in sand to various depths during its establishment in late spring and early summer. A study was made to examine the effects of sand burial at different levels of 0 (control), 33%, 67%, 100% and 133% of their shoot height, on the survivorship, growth, and biomass allocation pattern of H. laeve seedlings (one and two weeks old after emergence). When burial depth was up to 100% of their shoot height, about 70% seedlings died; and the burial at depth of 133% of their shoot height led to death of all seedlings. When seedlings was buried at depth of 33% and 67% of their shoot height, respectively, after six_week growth, their biomass of whole plant, blade, and root and relative growth rate were higher than the unburied counterparts. The seedlings in both 33% and 67% sand burial treatments did not significantly change their biomass allocation pattern comparing with the unburied ones. Furthermore, the number of leaves and shoot height of the seedlings in both 33% and 67% sand burial treatments were not significantly different from those of unburied individuals, respectively. The newly born leaves of the surviving seedlings, in 33%, 67%, and 100% burial treatments, during the period of experiment, were significantly more than those in control. 展开更多
关键词 Hedysarum laeve sandland sand burial SEEDLING GROWTH SURVIVAL biomass allocation relative growth rate
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Responses of Hedysarum Laeve,a guerrilla clonal semi-shrub in the Mu Us Sandland,to local sand burial
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作者 LIU Fenghong YE Xuehua +1 位作者 YU Feihai DONG Ming 《Frontiers in Biology》 CSCD 2007年第4期431-436,共6页
In arid and semi-arid inland deserts,one of the environmental stresses for plants is recurrent sand burial,which can influence the physical and biotic microenviron-ments of the plants and soil.Previous studies have sh... In arid and semi-arid inland deserts,one of the environmental stresses for plants is recurrent sand burial,which can influence the physical and biotic microenviron-ments of the plants and soil.Previous studies have shown that different levels of sand burial have different effects on plants.Slight sand burial could increase the height increment,leaf biomass and the number of new ramets of the plants while heavy sand burial could impair the growth of the plants and even decrease their chances of survival.In other words,below a certain threshold level of burial,the growth of plants is stimulated probably because of multiple factors.However,as the level of burial increases,the positive response starts to decline until it becomes a negative value.Arid and semi-arid inland deserts are frequently colonized and stabilized by many rhizomatous clonal plants.Clonal physiological integration often helps clonal plants buffer local environmen-tal stress encountered by ramets.A rhizomatous clonal semi-shrub,Hedysarum laeve(H.laeve),is the dominant plant species and important for vegetation restoration in the Mu Us sandland.To investigate whether clonal integration can increase the threshold of sand burial and help rhizomatous H.laeve tolerate heavy sand burial,we conducted a field experiment.The results showed that slight sand burial could accelerate ramet growth and enhance leaf biomass,stem bio-mass and shoot biomass,while heavy sand burial reducesed the biomass of the plant and impairs survival and growth of the ramets.Clonal integration increased the threshold of sand burial.Under heavy sand burial,ramets connected to other ramets not buried in sand were more in terms of height increment,stem biomass,leaf biomass and shoot biomass compared to the ramets encountering sand burial but disconnected from other ramets.It suggested that clonal physiological integration could help H.laeve ramets tolerate relatively heavy sand burial.We also discussed that clonal integration plays a role in H.laeve presence in the Mu Us sandland. 展开更多
关键词 Clonal integration Hedysarum laeve Mu Su sandland Sand burial
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塔落岩黄芪主要传粉蜂的传粉效率研究 被引量:18
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作者 蒙艳华 徐环李 +1 位作者 陈轩 蔡青年 《生物多样性》 CAS CSCD 北大核心 2007年第6期633-638,共6页
塔落岩黄芪(Hedysarum laeve)是毛乌素沙地重要豆科植物,在我国西部生态系统恢复与重建中起着重要作用,但其自交率非常低,必须依靠传粉昆虫授粉才能结实。野生传粉蜂是其主要传粉者。为了明确塔落岩黄芪的主要传粉蜂组成及优势传粉蜂的... 塔落岩黄芪(Hedysarum laeve)是毛乌素沙地重要豆科植物,在我国西部生态系统恢复与重建中起着重要作用,但其自交率非常低,必须依靠传粉昆虫授粉才能结实。野生传粉蜂是其主要传粉者。为了明确塔落岩黄芪的主要传粉蜂组成及优势传粉蜂的传粉效率,2004-2006年,我们设置了4个2m×2m样方观测访花昆虫的组成并对主要传粉蜂的访花频率、花粉移出率和柱头花粉沉降数目及单花停留时间进行了观测。结果表明白脸条蜂(Anthophora albifronella)、海切叶蜂(Megachile maritima)和散熊蜂(Bombus sporsdicus)是塔落岩黄芪的主要传粉蜂,其中白脸条蜂在数量和访花频率上占有明显优势,但其花粉移出率比海切叶蜂和散熊蜂的低,3种蜂的柱头花粉沉降数目没有显著区别。通过对这3种蜂的花粉移出率、柱头花粉沉降数目和访花频率综合分析后,我们认为白脸条蜂是塔落岩黄芪最有效的传粉蜂。 展开更多
关键词 HEDYSARUM laeve 毛乌素沙地 传粉效率 访花频率 花粉移出率 柱头花粉沉降
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Relation of Wind-induced Sand Displacement to Plant Biomass and Plant Sand-binding Capacity 被引量:20
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作者 董鸣 Bas ROELS +1 位作者 Sebastiaan DONDERS Marinus J.A.W ERGER 《Acta Botanica Sinica》 CSCD 2001年第9期979-982,共4页
Desertification is a process in which vegetation cover degrades followed by increased wind and water erosion. Plants adapted to moving sand conditions are able to reverse this process. They can stabilize die substrate... Desertification is a process in which vegetation cover degrades followed by increased wind and water erosion. Plants adapted to moving sand conditions are able to reverse this process. They can stabilize die substrate. Not much data is available on the soil stabilization capacity of plants. This study was conducted to investigate the wind-induced sand displacement around plants in relation to their biomass. Sand displacement is examined in relation to the biomass allocation pattern of three different plant species. A new method was developed to experimentally investigate plant sand-binding capacity. The relationship between sand displacement and plant biomass was not linear. Apart from the amount of biomass, species-specific plant characters like the biomass allocation pattern and plant structure may be very important in determining the sand-binding capacity. 展开更多
关键词 Calamagrostis epigejos Hedysarum laeve Psammochloa villosa DESERTIFICATION EROSION plant biomass plant sand-binding capacity sand displacement
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