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Effect of Heavy Metals Pollution on Soil Microbial Diversity and Bermudagrass Genetic Variation

机译:重金属污染对土壤微生物多样性和百慕大草遗传变异的影响

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摘要

Heavy metal pollution is a serious global environmental problem as it adversely affects plant growth and genetic variation. It also alters the composition and activity of soil microbial communities. The objectives of this study were to determine the soil microbial diversity, bermudagrass genetic variation in Cd contaminated or uncontaminated soils from Hunan province of China, and to evaluate Cd-tolerance of bermudagrass at different soils. The Biolog method, hydroponic experiments and simple sequence repeat markers were used to assess the functional diversity of microorganisms, Cd-tolerance and the genetic diversity of bermudagrass, respectively. Four of the sampling sites were heavily contaminated with heavy metals. The total bioactivity, richness, and microbial diversity decreased with increasing concentration of heavy metal. The hydroponic experiment revealed that bermudagrass populations collected from polluted sites have evolved, encompassing the feature of a higher resistance to Cd toxicity. Higher genetic diversity was observed to be more in contaminated populations than in uncontaminated populations. Heavy metal pollution can result in adverse effects on plant growth, soil microbial diversity and activity, and apparently has a stronger impact on the genetic structure. The results of this study provide new insights and a background to produce a genetic description of populations in a species that is suitable for use in phytoremediation practices.
机译:重金属污染是严重的全球性环境问题,因为它会对植物的生长和遗传变异产生不利影响。它还会改变土壤微生物群落的组成和活性。本研究的目的是确定中国湖南省受Cd污染或未污染的土壤的微生物多样性,百慕大草的遗传变异,并评估不同土壤中百慕大草对Cd的耐受性。利用Biolog方法,水培试验和简单的序列重复标记分别评估了微生物的功能多样性,对镉的耐受性和百慕大草的遗传多样性。四个采样点被重金属严重污染。随着重金属浓度的增加,总的生物活性,丰富度和微生物多样性降低。水培试验表明,从污染地点收集的百慕大草种群已经进化,包括对镉毒性具有更高抗性的特征。观察到,受污染的人口比未受污染的人口具有更高的遗传多样性。重金属污染可能对植物生长,土壤微生物多样性和活性造成不利影响,并且显然对遗传结构具有更强的影响。这项研究的结果提供了新的见识和背景,可以为适合在植物修复实践中使用的物种提供遗传描述。

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