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首页> 外文期刊>Environmental Science and Pollution Research >Available forms of nutrients and heavy metals control the distribution of microbial phospholipid fatty acids in sediments of the Three Gorges Reservoir, China
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Available forms of nutrients and heavy metals control the distribution of microbial phospholipid fatty acids in sediments of the Three Gorges Reservoir, China

机译:可用形式的营养素和重金属控制三峡库区沉积物中微生物磷脂脂肪酸的分布

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摘要

AbstractThe construction of the Three Gorges Reservoir (TGR) as well as the development of local industry and agriculture not only had tremendous impacts on the environment but also affected human health. Although water, soil, and air in the TGR have been well studied for environmental risk assessment, very little information is available on benthic sediments and microorganisms. In this study, sedimentary samples were collected along the main stream of the TGR to examine microbial phospholipid fatty acids (PLFA) and relevant variables (e.g., nutrients and heavy metals) after the full operation of the TGR. The results showed that there were prominent trends (increase or decrease) of sedimentary PLFAs and properties from downstream to upstream. Bacteria-specific PLFA decreased toward the dam, while fungi-specific PLFA did not show any significant trend. The PLFA ratio of fungi to bacteria (F/B) increased along the mainstream. The total PLFA concentration, which represents the microbial biomass, decreased significantly toward the dam. Upstream and downstream sampling points were clearly distinguished by PLFA ordination in the redundancy analysis (RDA). That finding showed microbial PLFAs to have an obvious distribution pattern (increase or decrease) in the TGR. The PLFA distribution was markedly controlled by nutrients and heavy metals, but nutrients were more important. Moreover, among nutrients, Bio-P, NH4+-N, NO3?-N, and DOC were more important than TP, TN, TOC, and pH in controlling PLFA distribution. For heavy metals, Tl, V, Mo, and Ni were more important than Zn, Cu, Cd, and Pb. These findings suggested that Tl, V, Mo, and Ni should not be ignored to guard against their pollution in the TGR, and we should pay attention to them and make them our first priority. This study highlighted that the construction of the TGR changed riverine environments and altered microbial communities in sediments by affecting sedimentary properties. It is a reminder that the microbial ecology of sediment as an indicator should be considered in assessing the eco-risk of the TGR.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>三峡库(Tgr)的构建为随着当地行业和农业的发展不仅对环境产生了巨大影响,而且影响了人类健康。虽然TGR中的水,土壤和空气对环境风险评估进行了很好的研究,但在底栖沉积物和微生物上提供了很少的信息。在该研究中,沿TGR的主流收集沉积样品,以在TGR的全部操作后检查微生物磷脂脂肪酸(PLFA)和相关变量(例如,营养物质和重金属)。结果表明,从下游到上游的沉积PLFA和性质存在突出趋势(增加或减少)。特定细菌的PLFA朝向大坝下降,而真菌特异性PLFA没有显示出任何重大趋势。真菌与细菌(F / B)的PLFA比沿着主流增加。代表微生物生物量的总PLFA浓度显着降低了大坝。在冗余分析(RDA)中,PLFA秩序清楚地区分和下游采样点清楚地区出来。发现在TGR中显示微生物PLFA具有明显的分布模式(增加或减少)。 PLFA分布明显受营养和重金属的控制,但营养素更为重要。此外,在营养素中,Bio-P,NH <下标> 4 <上标> -N,否<下标> 3 -n, DOC比TP,TN,TOC和PH值更重要,控制PLFA分布。对于重金属,TL,V,Mo和Ni比Zn,Cu,Cd和Pb更重要。这些研究结果表明,TL,V,Mo和Ni不应被忽视,以防止TGR污染,我们应该注意他们并使他们成为我们的第一优先事项。该研究强调,TGR的建设改变了河流环境,通过影响沉积特性改变了沉积物中的微生物社区。提醒人们应该考虑评估TGR的生态风险时沉积物的微生物生态。 ]]>

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  • 作者单位

    Alpine Ecosystem Observation and Experiment Station of Gongga Mountain The Key Laboratory of Mountain Surface Processes and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences;

    Alpine Ecosystem Observation and Experiment Station of Gongga Mountain The Key Laboratory of Mountain Surface Processes and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences;

    Alpine Ecosystem Observation and Experiment Station of Gongga Mountain The Key Laboratory of Mountain Surface Processes and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences;

    Alpine Ecosystem Observation and Experiment Station of Gongga Mountain The Key Laboratory of Mountain Surface Processes and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences;

    Alpine Ecosystem Observation and Experiment Station of Gongga Mountain The Key Laboratory of Mountain Surface Processes and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学、安全科学;
  • 关键词

    Bottom sediments; Microbial community; Phospholipid fatty acids; Nutrients; Heavy metal;

    机译:底部沉积物;微生物群;磷脂脂肪酸;营养成分;重金属;

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