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土壤微生物组:将多样性与功能联系起来。

Soil-borne microbiome: linking diversity to function.

作者信息

Mendes Lucas W, Tsai Siu M, Navarrete Acácio A, de Hollander Mattias, van Veen Johannes A, Kuramae Eiko E

机构信息

Cell and Molecular Biology Laboratory, Center for Nuclear Energy in Agriculture, CENA, University of Sao Paulo USP, Piracicaba, SP, Brazil.

出版信息

Microb Ecol. 2015 Jul;70(1):255-65. doi: 10.1007/s00248-014-0559-2. Epub 2015 Jan 14.

Abstract

Soil microorganisms are sensitive to environment disturbances, and such alterations have consequences on microbial diversity and functions. Our hypothesis is that alpha diversity of microbial communities and functional diversity decrease from undisturbed to disturbed soils, with consequences for functional redundancy in the soil ecosystem. To test this hypothesis, we used soil DNA shotgun metagenomics approach to assess the soil microbiome in a chronosequence of land-use from a native tropical forest, followed by deforestation and cultivation of soybean croplands and pasture in different seasons. Agriculture and pasture soils were among the most diverse and presented higher functional redundancy, which is important to maintain the ecosystem functioning after the forest conversion. On the other hand, the ecosystem equilibrium in forest is maintained based on a lower alpha diversity but higher abundance of microorganisms. Our results indicate that land-use change alters the structure and composition of microbial communities; however, ecosystem functionality is overcome by different strategies based on the abundance and diversity of the communities.

摘要

土壤微生物对环境干扰敏感,这种变化会对微生物多样性和功能产生影响。我们的假设是,微生物群落的α多样性和功能多样性从未受干扰的土壤到受干扰的土壤会降低,这会对土壤生态系统中的功能冗余产生影响。为了验证这一假设,我们采用土壤DNA鸟枪法宏基因组学方法,在一个土地利用时间序列中评估土壤微生物群落,该时间序列始于原生热带森林,随后经历森林砍伐以及不同季节的大豆农田和牧场的耕种。农业土壤和牧场土壤具有最多样化的微生物群落,并呈现出更高的功能冗余,这对于森林转变后维持生态系统功能很重要。另一方面,森林中的生态系统平衡是基于较低的α多样性但较高的微生物丰度来维持的。我们的结果表明,土地利用变化会改变微生物群落的结构和组成;然而,生态系统功能通过基于群落丰度和多样性的不同策略得以维持。

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