4.5 Article

Amazon forest-to-agriculture conversion alters rhizosphere microbiome composition while functions are kept

期刊

FEMS MICROBIOLOGY ECOLOGY
卷 95, 期 3, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/femsec/fiz009

关键词

Amazon biodiversity; homogenization; metagenomics; plant microbiome; soybean rhizosphere

资金

  1. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP/CNPq) [2008/58114-3]
  2. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP/NSF) [2014/50320-4]
  3. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (DS-CAPES PPGIEA/USP, PDSE-CAPES) [99999.003968/2014-06]
  4. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (PRONEX-CNPq) [140317/2014-7]
  5. CNPq [CNPq-PQ 311008/2016-0]

向作者/读者索取更多资源

The conversion of native forest to agriculture is the main cause of microbial biodiversity loss in Amazon soils. In order to better understand this effect, we used metagenomics to investigate microbial patterns and functions in bulk soil and rhizosphere of soybean, in a long-term forest-to-agriculture conversion. Long-term forest-to-agriculture led to microbial homogenization and loss of diversity in both bulk soil and rhizosphere, mainly driven by decreasing aluminum concentration and increased cations saturation in soil, due to liming and fertilization in long-term no-till cropping. Data revealed that long-term no-till cropping culminated in a decrease in Acidobacteria, Actinobacteria and Proteobacteria abundances. However, alpha- and beta-Proteobacteria abundances were higher in the rhizosphere than in bulk soil, regardless of the time after forest-to-agriculture conversion. Changes in functional potential occurred predominantly in bulk soil, with decreases in functions related to potassium metabolism and virulence, disease and defense, while functions related to nucleic acids metabolism increased. Functions in the soybean rhizosphere remained stable, except for those related to potassium metabolism, which decreased after 20-year no-till cropping. Together, our results show that the soybean root system selects microbial taxa via trade-offs, to maintain functional resilience in the rhizosphere microbiome over time.

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