Global S&T Development Trend Analysis Platform of Resources and Environment
DOI | 10.1073/pnas.2022241118 |
Legume–microbiome interactions unlock mineral nutrients in regrowing tropical forests | |
Dimitar Z. Epihov; Kristin Saltonstall; Sarah A. Batterman; Lars O. Hedin; Jefferson S. Hall; Michiel van Breugel; Jonathan R. Leake; David J. Beerling | |
2021-03-16 | |
发表期刊 | Proceedings of the National Academy of Sciences
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出版年 | 2021 |
英文摘要 | Legume trees form an abundant and functionally important component of tropical forests worldwide with N2-fixing symbioses linked to enhanced growth and recruitment in early secondary succession. However, it remains unclear how N2-fixers meet the high demands for inorganic nutrients imposed by rapid biomass accumulation on nutrient-poor tropical soils. Here, we show that N2-fixing trees in secondary Neotropical forests triggered twofold higher in situ weathering of fresh primary silicates compared to non-N2–fixing trees and induced locally enhanced nutrient cycling by the soil microbiome community. Shotgun metagenomic data from weathered minerals support the role of enhanced nitrogen and carbon cycling in increasing acidity and weathering. Metagenomic and marker gene analyses further revealed increased microbial potential beneath N2-fixers for anaerobic iron reduction, a process regulating the pool of phosphorus bound to iron-bearing soil minerals. We find that the Fe(III)-reducing gene pool in soil is dominated by acidophilic Acidobacteria, including a highly abundant genus of previously undescribed bacteria, Candidatus Acidoferrum, genus novus. The resulting dependence of the Fe-cycling gene pool to pH determines the high iron-reducing potential encoded in the metagenome of the more acidic soils of N2-fixers and their nonfixing neighbors. We infer that by promoting the activities of a specialized local microbiome through changes in soil pH and C:N ratios, N2-fixing trees can influence the wider biogeochemical functioning of tropical forest ecosystems in a manner that enhances their ability to assimilate and store atmospheric carbon. |
领域 | 资源环境 |
URL | 查看原文 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://119.78.100.173/C666/handle/2XK7JSWQ/318649 |
专题 | 资源环境科学 |
推荐引用方式 GB/T 7714 | Dimitar Z. Epihov,Kristin Saltonstall,Sarah A. Batterman,等. Legume–microbiome interactions unlock mineral nutrients in regrowing tropical forests[J]. Proceedings of the National Academy of Sciences,2021. |
APA | Dimitar Z. Epihov.,Kristin Saltonstall.,Sarah A. Batterman.,Lars O. Hedin.,Jefferson S. Hall.,...&David J. Beerling.(2021).Legume–microbiome interactions unlock mineral nutrients in regrowing tropical forests.Proceedings of the National Academy of Sciences. |
MLA | Dimitar Z. Epihov,et al."Legume–microbiome interactions unlock mineral nutrients in regrowing tropical forests".Proceedings of the National Academy of Sciences (2021). |
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