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首页> 外文期刊>Environmental Monitoring and Assessment >Microbial diversity and functional response to the redox dynamics of pyrite-rich sediment and the impact of preload surcharge
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Microbial diversity and functional response to the redox dynamics of pyrite-rich sediment and the impact of preload surcharge

机译:微生物多样性和功能反应富含黄铁矿沉积物的氧化还原动力学和预加载附加费的影响

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摘要

Microbial diversity and activities play pivotal biogeochemical roles in a redox-sensitive, pyrite-rich sediment's ecosystem. However, very little is known about the microbial community composition and distribution among the redox zones of pyrite-rich sediment and their response to changes caused by the burial of the sediment beneath compacted fill. In the present work, culture-independent, molecular phylogenetic investigations of the prokaryotic population and its diversity in a naturally occurring pyrite-rich sediment were undertaken to determine the microbial community composition, richness, diversity and distributions among the varying redox zones and their functional response to the imposition of surface surcharge, in the form of compacted fill. It was established that the pyrite-rich sediment is a redox-sensitive environment consisting of microhabitats with distinct and discontinuous physico-chemical characteristics, including DO, pH, Eh, temperature, electrical conductivity and salinity. It is a favourable environment for cyclic transformation of inorganic sulphur compounds and a unique environment for the habitation and growth of various microorganisms. Microbes adapted to the microhabitat and lived together in consortia, in response to their physiological and functional requirements. Microbes involved in the sulphur cycle had their populations concentrated in the oxic zone, while those involved in iron and carbon cycles were prevalent in the anoxic zones. As a result, highly diverse microbial populations occurred in isolated peaks within the sediment. The physico-chemical differences within the sediment changed in response to changes in the sediment redox dynamics. Imposition of the surcharge resulted in significant changes in the pH, temperature, Eh, DO, EC and salinity, reflecting marked re-distribution of the microbial population within the ecosystem. The cable bacteria phenomenon was evident in the sediment studied; however, there were doubt regarding their filamentous occurrence.
机译:微生物多样性和活动在氧化氢敏感的黄铁矿沉积物生态系统中起着枢轴生物地球化学作用。然而,关于微生物群落的微生物群落的富含沉积物的微生物群落组成和分布以及对由紧凑的填充下的沉积物埋藏引起的变化的响应很少。在目前的工作中,携带文化的富含黄铁矿沉积物中原核群体及其多样性的培养不相同的分子系统发育研究,以确定不同氧化还原区的微生物群落组成,丰富,多样性和分布及其功能反应以压实填充的形式施加表面附加费。已经确定富含硫铁矿的沉积物是一种氧化还原敏感性环境,包括微藻,具有明显和不连续的物理化学特性,包括DO,pH,EH,温度,导电性和盐度。对于无机硫化合物的循环转化和各种微生物生长的独特环境是一种有利的环境。微生物适应微藻蛋白,并在联盟中居住在一起,以应对其生理和功能性要求。涉及硫循环的微生物在氧基区中浓缩群体,而涉及铁和碳循环的人在缺氧区普遍存在。结果,沉积物内的隔离峰发生了高度多样化的微生物种群。沉积物内的物理化学差异因沉积氧化还原动力学的变化而改变。施加附加费导致pH,温度,eh,DO,EC和盐度的显着变化,反映了生态系统内的微生物种群的标记重新分布。在研究的沉积物中显而易见的电缆细菌现象;但是,对他们的丝状发生有疑问。

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