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Deciphering microbiomes dozens of meters under our feet and their edaphoclimatic and spatial drivers

He, Haoran (författare)
Northwest A&F University
Zhou, Jingxiong (författare)
Institute of Earth Environment, Chinese Academy of Sciences
Wang, Yunqiang (författare)
Institute of Earth Environment, Chinese Academy of Sciences,Xi'an Jiaotong University
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Jiao, Shuo (författare)
Northwest A&F University
Qian, Xun (författare)
Northwest A&F University
Liu, Yurong (författare)
Huazhong Agricultural University, Wuhan
Liu, Ji (författare)
Central China Normal University (CCNU)
Chen, Ji (författare)
Institute of Earth Environment, Chinese Academy of Sciences,Aarhus University
Delgado-Baquerizo, Manuel (författare)
Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS)
Brangarí, Albert C. (författare)
Lund University,Lunds universitet,BECC: Biodiversity and Ecosystem services in a Changing Climate,Centrum för miljö- och klimatvetenskap (CEC),Naturvetenskapliga fakulteten,MERGE: ModElling the Regional and Global Earth system,Institutionen för naturgeografi och ekosystemvetenskap,Mikrobiologisk ekologi,Forskargrupper vid Lunds universitet,Mikrobiell biogeokemi i Lund,Centre for Environmental and Climate Science (CEC),Faculty of Science,Dept of Physical Geography and Ecosystem Science,Microbial Ecology,Lund University Research Groups,Microbial Biogeochemistry in Lund
Chen, Li (författare)
Northwest A&F University
Cui, Yongxing (författare)
Peking University
Pan, Haibo (författare)
Northwest A&F University
Tian, Renmao (författare)
Illinois Institute of Technology
Liang, Yuting (författare)
Institute of Soil Sciences Chinese Academy of Sciences
Tan, Wenfeng (författare)
Huazhong Agricultural University, Wuhan
Ochoa-Hueso, Raúl (författare)
University of Cádiz
Fang, Linchuan (författare)
Wuhan University of Technology,Northwest A&F University
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 (creator_code:org_t)
2024
2024
Engelska.
Ingår i: Global Change Biology. - 1354-1013. ; 30:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Microbes inhabiting deep soil layers are known to be different from their counterpart in topsoil yet remain under investigation in terms of their structure, function, and how their diversity is shaped. The microbiome of deep soils (>1 m) is expected to be relatively stable and highly independent from climatic conditions. Much less is known, however, on how these microbial communities vary along climate gradients. Here, we used amplicon sequencing to investigate bacteria, archaea, and fungi along fifteen 18-m depth profiles at 20–50-cm intervals across contrasting aridity conditions in semi-arid forest ecosystems of China's Loess Plateau. Our results showed that bacterial and fungal α diversity and bacterial and archaeal community similarity declined dramatically in topsoil and remained relatively stable in deep soil. Nevertheless, deep soil microbiome still showed the functional potential of N cycling, plant-derived organic matter degradation, resource exchange, and water coordination. The deep soil microbiome had closer taxa–taxa and bacteria–fungi associations and more influence of dispersal limitation than topsoil microbiome. Geographic distance was more influential in deep soil bacteria and archaea than in topsoil. We further showed that aridity was negatively correlated with deep-soil archaeal and fungal richness, archaeal community similarity, relative abundance of plant saprotroph, and bacteria–fungi associations, but increased the relative abundance of aerobic ammonia oxidation, manganese oxidation, and arbuscular mycorrhizal in the deep soils. Root depth, complexity, soil volumetric moisture, and clay play bridging roles in the indirect effects of aridity on microbes in deep soils. Our work indicates that, even microbial communities and nutrient cycling in deep soil are susceptible to changes in water availability, with consequences for understanding the sustainability of dryland ecosystems and the whole-soil in response to aridification. Moreover, we propose that neglecting soil depth may underestimate the role of soil moisture in dryland ecosystems under future climate scenarios.

Ämnesord

LANTBRUKSVETENSKAPER  -- Lantbruksvetenskap, skogsbruk och fiske -- Markvetenskap (hsv//swe)
AGRICULTURAL SCIENCES  -- Agriculture, Forestry and Fisheries -- Soil Science (hsv//eng)

Nyckelord

aridity
biogeography
climate change
deep soil
microbial biodiversity and function
soil depth
water heterogeneity

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