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Decline in Topsoil Microbial Quotient, Fungal Abundance and C Utilization Efficiency of Rice Paddies under Heavy Metal Pollution across South China

机译:中国南方重金属污染下稻田表层微生物商数,真菌丰度和利用效率的下降

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摘要

Agricultural soils have been increasingly subject to heavy metal pollution worldwide. However, the impacts on soil microbial community structure and activity of field soils have been not yet well characterized. Topsoil samples were collected from heavy metal polluted (PS) and their background (BGS) fields of rice paddies in four sites across South China in 2009. Changes with metal pollution relative to the BGS in the size and community structure of soil microorganisms were examined with multiple microbiological assays of biomass carbon (MBC) and nitrogen (MBN) measurement, plate counting of culturable colonies and phospholipids fatty acids (PLFAs) analysis along with denaturing gradient gel electrophoresis (DGGE) profile of 16S rRNA and 18S rRNA gene and real-time PCR assay. In addition, a 7-day lab incubation under constantly 25°C was conducted to further track the changes in metabolic activity. While the decrease under metal pollution in MBC and MBN, as well as in culturable population size, total PLFA contents and DGGE band numbers of bacteria were not significantly and consistently seen, a significant reduction was indeed observed under metal pollution in microbial quotient, in culturable fungal population size and in ratio of fungal to bacterial PLFAs consistently across the sites by an extent ranging from 6% to 74%. Moreover, a consistently significant increase in metabolic quotient was observed by up to 68% under pollution across the sites. These observations supported a shift of microbial community with decline in its abundance, decrease in fungal proportion and thus in C utilization efficiency under pollution in the soils. In addition, ratios of microbial quotient, of fungal to bacterial and qCO2 are proved better indicative of heavy metal impacts on microbial community structure and activity. The potential effects of these changes on C cycling and CO2 production in the polluted rice paddies deserve further field studies.
机译:在世界范围内,农业土壤日益受到重金属污染。然而,对土壤微生物群落结构和田间土壤活性的影响尚未得到很好的表征。 2009年从中国南方四个地点的水稻田的重金属污染(PS)及其背景(BGS)田中收集了表土样品。通过土壤微生物的大小和群落结构,研究了金属污染相对于BGS的变化。生物量碳(MBC)和氮(MBN)测量的多种微生物测定,可培养菌落和磷脂脂肪酸(PLFAs)分析的平板计数以及16S rRNA和18S rRNA基因的变性梯度凝胶电泳(DGGE)谱以及实时PCR测定。此外,在恒定的25°C下进行了7天的实验室温育,以进一步追踪代谢活性的变化。尽管MBC和MBN的金属污染以及可培养种群的减少没有显着一致地观察到细菌总PLFA含量和DGGE谱带数量的减少,但在金属污染下,微生物商比中的确可观察到显着的减少。真菌种群的大小以及各部位的真菌与细菌PLFA的比例一致,范围为6%至74%。此外,在整个站点的污染下,代谢商的代谢显着提高了68%。这些观察结果支持了微生物群落的转变,其丰度下降,真菌比例下降,从而降低了土壤污染下的碳利用效率。此外,事实证明,微生物商,真菌与细菌以及qCO2的比率更好地表明了重金属对微生物群落结构和活性的影响。这些变化对受污染稻田中碳循环和CO2产生的潜在影响值得进一步实地研究。

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