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硝化杆菌选择微生物组与污水污泥或草原土壤异养生物的随机组装。

The Stochastic Assembly of Nitrobacter winogradskyi-Selected Microbiomes with Heterotrophs from Sewage Sludge or Grassland Soil.

机构信息

Microbial Ecology Department, Netherlands Institute of Ecology (NIOO), Wageningen, The Netherlands.

Ecology and Biodiversity, Institute of Environmental Biology, Utrecht University, Utrecht, The Netherlands.

出版信息

Appl Environ Microbiol. 2022 Sep 13;88(17):e0078322. doi: 10.1128/aem.00783-22. Epub 2022 Aug 9.

Abstract

Chemolitho-autotrophic microorganisms like the nitrite-oxidizing Nitrobacter winogradskyi create an environment for heterotrophic microorganisms that profit from the production of organic compounds. It was hypothesized that the assembly of a community of heterotrophic microorganisms around N. winogradskyi depends on the ecosystem from which the heterotrophs are picked. To test this hypothesis, pure cultures of N. winogradskyi were grown in continuously nitrite-fed bioreactors in a mineral medium free of added organic carbon that had been inoculated with diluted sewage sludge or with a suspension from a grassland soil. Samples for chemical and 16S rRNA gene amplicon analyses were taken after each volume change in the bioreactor. At the end of the enrichment runs, samples for shotgun metagenomics were also collected. Already after two volume changes, the transformations in community structure became less dynamic. The enrichment of heterotrophs from both sewage and soil was highly stochastic and yielded different dominant genera in most of the enrichment runs that were independent of the origin of the inoculum. Hence, the hypothesis had to be refuted. Notwithstanding the large variation in taxonomic community structure among the enrichments, the functional compositions of the communities were statistically not different between soil- and sludge-based enrichments. In the process of aerobic nitrification, nitrite-oxidizing bacteria together with ammonia-oxidizing microorganisms convert mineral nitrogen from its most reduced appearance, i.e., ammonium, into its most oxidized form, i.e., nitrate. Because the form of mineral nitrogen has large environmental implications, nitrite-oxidizing bacteria such as Nitrobacter winogradskyi play a central role in the global biogeochemical nitrogen cycle. In addition to this central role, the autotrophic nitrite-oxidizing bacteria also play a fundamental role in the global carbon cycle. They form the basis of heterotrophic food webs, in which the assimilated carbon is recycled. Little is known about the heterotrophic microorganisms that participate in these food webs, let alone their assembly in different ecosystems. This study showed that the assembly of microbial food webs by N. winogradskyi was a highly stochastic process and independent of the origin of the heterotrophic microorganisms, but the functional characteristics of the different food webs were similar.

摘要

化能自养微生物,如亚硝酸盐氧化菌 Nitrobacter winogradskyi,为从有机化合物中获益的异养微生物创造了环境。有人假设,围绕 Nitrobacter winogradskyi 的异养微生物群落的组装取决于从中挑选异养微生物的生态系统。为了检验这一假设,将纯培养的 Nitrobacter winogradskyi 在连续亚硝酸盐喂养的生物反应器中进行培养,该生物反应器使用不含添加有机碳的矿物培养基,接种有稀释的污水污泥或草地土壤悬浮液。在生物反应器每次体积变化后,都会采集用于化学和 16S rRNA 基因扩增子分析的样本。在富集运行结束时,还收集了用于鸟枪法宏基因组学的样本。在生物反应器中进行两次体积变化后,群落结构的转变变得不那么动态了。从污水和土壤中富集异养微生物的过程是高度随机的,并且在大多数富集运行中产生了不同的优势属,与接种物的来源无关。因此,该假设必须被推翻。尽管在富集过程中分类社区结构存在很大差异,但基于土壤和污泥的富集的群落功能组成在统计学上没有差异。在有氧硝化过程中,亚硝酸盐氧化菌与氨氧化微生物一起将从其最还原的形式(即铵)转化为最氧化的形式(即硝酸盐)的矿化氮。由于矿化氮的形式对环境有很大的影响,因此亚硝酸盐氧化菌如 Nitrobacter winogradskyi 在全球生物地球化学氮循环中起着核心作用。除了这一核心作用外,自养亚硝酸盐氧化菌在全球碳循环中也起着重要作用。它们构成了异养食物网的基础,在这个食物网中,同化的碳被回收。对于参与这些食物网的异养微生物,人们知之甚少,更不用说它们在不同生态系统中的组装了。这项研究表明,Nitrobacter winogradskyi 组成微生物食物网的过程是一个高度随机的过程,与异养微生物的起源无关,但不同食物网的功能特征相似。

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