Land use driven change in soil pH affects microbial carbon cycling processes

Land use intensification could modify microbial activity and thus ecosystem function. Here, Malik et al. sample microbes and carbon-related functions across a land use gradient, demonstrating that microbial biomass and carbon use efficiency are reduced in human-impacted near-neutral pH soils.

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Autores principales: Ashish A. Malik, Jeremy Puissant, Kate M. Buckeridge, Tim Goodall, Nico Jehmlich, Somak Chowdhury, Hyun Soon Gweon, Jodey M. Peyton, Kelly E. Mason, Maaike van Agtmaal, Aimeric Blaud, Ian M. Clark, Jeanette Whitaker, Richard F. Pywell, Nick Ostle, Gerd Gleixner, Robert I. Griffiths
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/094c68ef0c6d4720ae1ee2472e5d0d23
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spelling oai:doaj.org-article:094c68ef0c6d4720ae1ee2472e5d0d232021-12-02T15:34:39ZLand use driven change in soil pH affects microbial carbon cycling processes10.1038/s41467-018-05980-12041-1723https://doaj.org/article/094c68ef0c6d4720ae1ee2472e5d0d232018-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05980-1https://doaj.org/toc/2041-1723Land use intensification could modify microbial activity and thus ecosystem function. Here, Malik et al. sample microbes and carbon-related functions across a land use gradient, demonstrating that microbial biomass and carbon use efficiency are reduced in human-impacted near-neutral pH soils.Ashish A. MalikJeremy PuissantKate M. BuckeridgeTim GoodallNico JehmlichSomak ChowdhuryHyun Soon GweonJodey M. PeytonKelly E. MasonMaaike van AgtmaalAimeric BlaudIan M. ClarkJeanette WhitakerRichard F. PywellNick OstleGerd GleixnerRobert I. GriffithsNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-10 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ashish A. Malik
Jeremy Puissant
Kate M. Buckeridge
Tim Goodall
Nico Jehmlich
Somak Chowdhury
Hyun Soon Gweon
Jodey M. Peyton
Kelly E. Mason
Maaike van Agtmaal
Aimeric Blaud
Ian M. Clark
Jeanette Whitaker
Richard F. Pywell
Nick Ostle
Gerd Gleixner
Robert I. Griffiths
Land use driven change in soil pH affects microbial carbon cycling processes
description Land use intensification could modify microbial activity and thus ecosystem function. Here, Malik et al. sample microbes and carbon-related functions across a land use gradient, demonstrating that microbial biomass and carbon use efficiency are reduced in human-impacted near-neutral pH soils.
format article
author Ashish A. Malik
Jeremy Puissant
Kate M. Buckeridge
Tim Goodall
Nico Jehmlich
Somak Chowdhury
Hyun Soon Gweon
Jodey M. Peyton
Kelly E. Mason
Maaike van Agtmaal
Aimeric Blaud
Ian M. Clark
Jeanette Whitaker
Richard F. Pywell
Nick Ostle
Gerd Gleixner
Robert I. Griffiths
author_facet Ashish A. Malik
Jeremy Puissant
Kate M. Buckeridge
Tim Goodall
Nico Jehmlich
Somak Chowdhury
Hyun Soon Gweon
Jodey M. Peyton
Kelly E. Mason
Maaike van Agtmaal
Aimeric Blaud
Ian M. Clark
Jeanette Whitaker
Richard F. Pywell
Nick Ostle
Gerd Gleixner
Robert I. Griffiths
author_sort Ashish A. Malik
title Land use driven change in soil pH affects microbial carbon cycling processes
title_short Land use driven change in soil pH affects microbial carbon cycling processes
title_full Land use driven change in soil pH affects microbial carbon cycling processes
title_fullStr Land use driven change in soil pH affects microbial carbon cycling processes
title_full_unstemmed Land use driven change in soil pH affects microbial carbon cycling processes
title_sort land use driven change in soil ph affects microbial carbon cycling processes
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/094c68ef0c6d4720ae1ee2472e5d0d23
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