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Silica fertilization and nano-MnO2 amendment on bacterial community composition in high arsenic paddy soils

机译:硅肥和纳米二氧化锰对高砷水稻土细菌群落组成的影响

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摘要

Silica fertilization and nano-MnO2 amendment are reported as useful approaches in lowering the accumulation of arsenic in rice grains, but the effects of silica fertilization or nano-MnO2 amendment on microbial community in the paddy soils containing high concentration of arsenic are still unknown. In order to elucidate this question, the structures and composition of microbial community in the paddy soils, in response to silica fertilization and nano-MnO2 amendment, were investigated using pyrosequencing technique. The results indicated that Proteobacteria, Chloroflexi, and Acidobacteria were the main dominating phyla in these paddy soils. A decrease in the relative abundance of Chloroflexi and Cyanobacteria, but an increase in the relative abundance of Acidobacteria was observed after silica fertilization and nano-MnO2 amendment. The changes of Acidobacteria, Chloroflexi, and Cyanobacteria were strongly correlated with pH and the concentration of bioavailable arsenic in the paddy soils. The a-diversity of bacteria in the paddy soils increased in response to silica fertilization at low amendment level, but decreased under silica or nano-MnO2 amendment at high amendment level. Results of beta-diversity analysis indicated that the microbial communities in the control treatment shared more similarity with that of those received low level of nano-MnO2 amendment, and the two silica fertilization treatments also shared more similarity with each other.
机译:二氧化硅施肥和纳米MnO2改良剂是降低水稻籽粒中砷积累的有用方法,但对于砷含量高的水稻土,二氧化硅施肥或纳米MnO2改良剂对微生物群落的影响尚不清楚。为了阐明这个问题,使用焦磷酸测序技术研究了稻田土壤中微生物群落的结构和组成,以响应于二氧化硅施肥和纳米MnO2改性。结果表明,在这些稻田土壤中,变形杆菌,绿弯曲菌和酸性细菌是主要的菌群。二氧化硅施肥和纳米MnO2修饰后,绿藻弯曲菌和蓝细菌的相对丰度降低,而酸细菌的相对丰度提高。稻田土壤中酸性细菌,绿弯曲菌和蓝细菌的变化与pH值和生物利用砷的浓度密切相关。在低修正水平下,稻田土壤中细菌的a多样性随二氧化硅的施肥而增加,而在高修正水平下,在二氧化硅或纳米MnO2修正下,土壤中细菌的a多样性增加。 β多样性分析的结果表明,对照处理中的微生物群落与那些接受低水平的MnO2修饰的微生物群落具有更多的相似性,并且两种二氧化硅施肥处理也彼此具有更多的相似性。

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