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Influence pathways of vanadium stress to microbial community in soil-tailings-groundwater systems 被引量:1
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作者 Dan Zhou Yonglian Xia +2 位作者 Chao Li Mingzheng Huang Yi Huang 《Journal of Environmental Sciences》 2025年第8期264-276,共13页
The large-scale exploitation of vanadium(Ⅴ) bearing minerals has led to a massive accumulation of Ⅴ tailings, of which Ⅴ pollution poses severe ecological risks. Although the mechanisms of Ⅴ stress to the microbia... The large-scale exploitation of vanadium(Ⅴ) bearing minerals has led to a massive accumulation of Ⅴ tailings, of which Ⅴ pollution poses severe ecological risks. Although the mechanisms of Ⅴ stress to the microbial community have been reported, the influential pathways in a multi-medium-containing system, for example, the soil-tailings-groundwater system,are unknown. The dynamic redox conditions and substance exchange within the system exhibited complex Ⅴ stress on the local microbial communities. In this study, the influence pathways of Ⅴ stress to the microbial community in the soil-tailings-groundwater system were first investigated. High Ⅴ contents were observed in groundwater(139.2 ± 0.15 μg/L) and soil(98.0–323.8 ± 0.02 mg/kg), respectively. Distinct microbial composition was observed for soil and groundwater, where soil showed the highest level of diversity and richness. Firmicutes, Proteobacteria, Actinobacteria, and Acidobacteria were dominant in soil and groundwater with a sum relative abundance of around 80 %. Based on redundancy analysis and structural equation models, Ⅴ was one of the vital driving factors affecting microbial communities. Groundwater microbial communities were influenced by Ⅴ via Cr, dissolved oxygen, and total nitrogen, while Fe, Mn, and total phosphorus were the key mediators for Ⅴ to affect soil microbial communities. Ⅴ affected the microbial community via metabolic pathways related to carbonaceous matter, which was involved in the establishment of survival strategies for metal stress. This study provides novel insights into the influence pathways of Ⅴ on the microorganisms in tailings reservoir for pollution bioremediation. 展开更多
关键词 Vanadium(V)stress Microbial community Structural equation models influence pathways
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Influence of Wind Vector Structure Variation of Typhoon "Catfish" Circulation on Its Pathway Mutation 被引量:1
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作者 WANG Yuan-chao,LIN Bao-ting Yulin Meteorological Bureau in Guangxi,Yulin 537000,China 《Meteorological and Environmental Research》 CAS 2011年第7期15-18,共4页
[Objective] The research aimed to study the wind vector structure variation of No.1013 strong typhoon 'catfish',and its influence on typhoon pathway mutation.[Method] According to the theory that the asymmetri... [Objective] The research aimed to study the wind vector structure variation of No.1013 strong typhoon 'catfish',and its influence on typhoon pathway mutation.[Method] According to the theory that the asymmetric structure of typhoon vortex had influence on typhoon movement,the center of No.1013 super typhoon 'catfish' was as the coordinate origin,and 850,500 hPa tangential rotation speeds within 300-500 km were decomposed into u and v components.The composite force movement tendency of typhoon was analyzed.The wind vector structure variation of No.1013 strong typhoon 'catfish' and its influence on typhoon pathway mutation were discussed.[Result] At the quick movement stage of No.1013 strong typhoon,the wind vector had obvious asymmetric structure.When the typhoon rotated in situ,the wind vector presented symmetric structure.When ΔU,ΔV and composite wind vector had obvious variations,the composite force of typhoon changed,and the moved direction also would change.The asymmetric structure of wind speed near 300-500 km around 500 and 850 hPa typhoon centers was favorable for tendency of moved pathway.The pointed directions of ΔU,ΔV and composite wind vector could be as the direction of composite force movement of typhoon.[Conclusion] The research provided reference basis for typhoon prevention. 展开更多
关键词 Typhoon 'catfish' Wind vector structure pathway mutation influence analysis China
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Indoor air particles in research vessel from Shanghai to Antarctic: Characteristics, influencing factors, and potential controlling pathway
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作者 Xudong Wu Fange Yue +6 位作者 Jiancheng Wang Xiawei Yu Hongwei Liu Weihua Gu Mingming Han Juan Li Zhouqing Xie 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第4期784-793,共10页
Despite millions of seafarers and passengers staying on ships each year, few studies have been conducted on the indoor air quality inside ship hulls. In this study, we investigated the levels and size distribution of ... Despite millions of seafarers and passengers staying on ships each year, few studies have been conducted on the indoor air quality inside ship hulls. In this study, we investigated the levels and size distribution of indoor particulate matter during two cruises of the research vessel “Xuelong” from Shanghai to Antarctica. The results showed that the particle size less than 2.5 μm(PM_(2.5)), and particle size less than 10 μm(PM_(10)) concentrations in different rooms of the ship widely varied. We observed high particulate matter(PM) levels in some of the rooms. The mass concentration distribution was dominated by 1–4 μm particles, which may have been caused by the hygroscopic growth of fine particles. The dominant factors influencing PM concentrations were indoor temperature, relative humidity, and human activity. We quantified contributions of these factors to the levels of indoor particles using a generalized additive model. In clean rooms, the levels of indoor particles were controlled by temperature and relative humidity, whereas in polluted rooms, the levels of indoor particles were mainly influenced by temperature and human activity, which implied that controlling temperature and human activity would efficiently reduce the levels of indoor particles. 展开更多
关键词 Indoor air SHIP influencing factor Generalized additive model(GAM) Quantification Controlling pathway
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Non-equilibrium and stochasticity influence the activation process of the yeast DNA damage pathway
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作者 ChenZi Jin XiaoDong Yan FangTing Li 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2018年第2期76-79,共4页
Living cells are open systems that exist far away from a state of thermodynamical equilibrium. They utilize the high-grade chemical energy provided by food to produce ATP and re- lease ADP and Pi together with heat di... Living cells are open systems that exist far away from a state of thermodynamical equilibrium. They utilize the high-grade chemical energy provided by food to produce ATP and re- lease ADP and Pi together with heat dissipation. Living cells exist in a non-equilibrium steady state (NESS), they replicate themselves and respond to various environmental changes via signal transduction pathways. Because the majority of cells exist at room temperature, the stochasticity of chemical reac- tions in the cells is unavoidable. Recent research into fluores- cent proteins and microscopy techniques have enabled us to observe the dynamic process of mRNA and proteins in single living bacterial cells [1], and these have resulted in new in- sights into regulation mechanisms in molecular biology, i.e., in cellular signal transduction pathways. 展开更多
关键词 NON-EQUILIBRIUM stochasticity influence DNA damage pathway
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Influence of chronic fluorosis on protein kinase Cβ/ p66shc signal pathway in the brain of rats
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作者 邓成敏 《China Medical Abstracts(Internal Medicine)》 2016年第3期138-,共1页
Objective To investigate the influence of chronic fluorosis on protein kinase Cβ(PKCβ)p66shc signal pathway in the brain of rats,and reveal the molecular mechanism of brain damage.Methods According to body weight by... Objective To investigate the influence of chronic fluorosis on protein kinase Cβ(PKCβ)p66shc signal pathway in the brain of rats,and reveal the molecular mechanism of brain damage.Methods According to body weight by the random number table method thirty SD rats were divided into three groups of 10 each(half females and half males),the normal control group[less than0.5 mg/L of fluorine(prepared with Na F)in 展开更多
关键词 influence of chronic fluorosis on protein kinase C p66shc signal pathway in the brain of rats
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毒素清对肺炎痰热证大鼠肺组织Janus激酶/信号转导和转录激活因子信号通路的影响 被引量:5
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作者 梅雪 李建生 张艳霞 《中国中西医结合急救杂志》 CAS 北大核心 2010年第2期80-82,共3页
目的 观察肺炎痰热证大鼠肺组织Janus激酶/信号转导和转录激活因子(JAK/STAT)转导通路,探讨毒素清治疗肺炎痰热证的作用机制.方法 将Wistar大鼠按随机数字表法分为正常组、肺炎组、肺炎痰热证组、阳性对照组、毒素清组,每组12只.制备细... 目的 观察肺炎痰热证大鼠肺组织Janus激酶/信号转导和转录激活因子(JAK/STAT)转导通路,探讨毒素清治疗肺炎痰热证的作用机制.方法 将Wistar大鼠按随机数字表法分为正常组、肺炎组、肺炎痰热证组、阳性对照组、毒素清组,每组12只.制备细菌性肺炎痰热证大鼠模型,采用免疫组化法测定肺组织p-JAK2、p-STAT1、p-STAT3、细胞信号转导抑制蛋白3(SOCS3)表达,采用逆转录-聚合酶链反应(RT-PCR)测定肺组织SOCS3 mRNA表达.结果 与正常组比较,肺炎组、肺炎痰热证组肺组织p-JAK2、p-STAT1、p-STAT3、SOCS3蛋白及SOCS3 mRNA表达均显著升高(均P【0.01),且肺炎痰热证组较肺炎组升高明显(均P【0.05).与肺炎痰热证组相比,毒素清组、阳性对照组肺组织p-JAK2、p-STAT1、p-STAT3蛋白表达明显减弱(均P【0.01),SOCS3蛋白及mRNA表达明显增强(均P【0.01),其中,毒素清组肺组织p-JAK2、p-STAT1、p-STAT3蛋白表达较阳性对照组减弱尤为明显(均P【0.05).结论 JAK/STAT信号转导通路参与了肺炎痰热证肺组织的病理损伤过程;毒素清治疗肺炎痰热证的作用机制可能与上调SOCS3,阻断JAK/STAT信号通路,继而减少炎症因子的释放有关. 展开更多
关键词 毒素清 细菌性肺炎 痰热证 Wistar大鼠 肺组织 JANUS激酶 信号转导通路 转录激活因子 JAK/STAT信号通路 influence signal transduction pathway SOCS3 P-STAT3 mRNA表达 对照组 作用机制 蛋白表达 阳性 细胞信号转导 聚合酶链反应
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Genetic architecture, epigenetic influence and environment exposure in the pathogenesis of Autism 被引量:11
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作者 YU Li WU YiMing WU Bai-Lin 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第10期958-967,共10页
Autism spectrum disorder(ASD) is a spectral neurodevelopment disorder affecting approximately 1% of the population. ASD is characterized by impairments in reciprocal social interaction, communication deficits and rest... Autism spectrum disorder(ASD) is a spectral neurodevelopment disorder affecting approximately 1% of the population. ASD is characterized by impairments in reciprocal social interaction, communication deficits and restricted patterns of behavior. Multiple factors, including genetic/genomic, epigenetic/epigenomic and environmental, are thought to be necessary for autism development. Recent reviews have provided further insight into the genetic/genomic basis of ASD. It has long been suspected that epigenetic mechanisms, including DNA methylation, chromatin structures and long non-coding RNAs may play important roles in the pathology of ASD. In addition to genetic/genomic alterations and epigenetic/epigenomic influences, environmental exposures have been widely accepted as an important role in autism etiology, among which immune dysregulation and gastrointestinal microbiota are two prominent ones. 展开更多
关键词 autism spectrum disorder genetic architecture genomie disorder gene mutation copy number variants single nucleotide variants genetic pathways epigenetic influence DNA methylation chromatin remodeling long non-coding RNAs environment exposure immune dysregulation gastrointestinal microbiota
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Characterization of N-nitrosodimethylamine formation from the ozonation of ranitidine 被引量:1
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作者 Juan Lv Lin Wang Yongmei Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第8期116-126,共11页
N-nitrosodimethylamine(NDMA) is an emerging disinfection by-product which is formed during water disinfection in the presence of amine-based precursors. Ranitidine, as one kind of amine-based pharmaceuticals, has be... N-nitrosodimethylamine(NDMA) is an emerging disinfection by-product which is formed during water disinfection in the presence of amine-based precursors. Ranitidine, as one kind of amine-based pharmaceuticals, has been identified as NDMA precursor with high NDMA molar conversion during chloramination. This study focused on the characterization of NDMA formation during ozonation of ranitidine. Influences of operational variables(ozone dose, pH value) and water matrix on NDMA generation as well as ranitidine degradation were evaluated. The results indicate high reactivity of ranitidine with ozone.Dimethylamine(DMA) and NDMA were generated due to ranitidine oxidation. High pH value caused more NDMA accumulation. NDMA formation was inhibited under acid conditions(pH ≤ 5) mainly due to the protonation of amines. Water matrix such as HCO-3and humic acid impacted NDMA generation due to UOH scavenging. Compared with UOH,ozone molecules dominated the productions of DMA and NDMA. However, UOH was a critical factor in NDMA degradation. Transformation products of ranitidine during ozonation were identified using gas chromatography–mass spectrometry. Among these products, just DMA and N,N-dimethylformamide could contribute to NDMA formation due to the DMA group in the molecular structures. The NDMA formation pathway from ranitidine ozonation was also proposed. 展开更多
关键词 Ranitidine N-nitrosodimethylamine(NDMA) Ozone influencing factor NDMA formation pathway
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