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Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups

Microbial communities and functions play an important role in soil carbon and nitrogen transformations, and, in recent decades, the abandonment of terraces is prevalant in the hilly areas of China. However, it is unclear how soil carbon and nitrogen contents and prokaryotic communities changed as a...

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Autores principales: Li, Wenqing, Li, Zhongwu, Liu, Yaojun, Nie, Xiaodong, Deng, Chuxiong, Zhang, Guangye, Wang, Shuyuan, Xiao, Tao, Zheng, Han
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9754093/
https://www.ncbi.nlm.nih.gov/pubmed/36532439
http://dx.doi.org/10.3389/fmicb.2022.1007237
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author Li, Wenqing
Li, Zhongwu
Liu, Yaojun
Nie, Xiaodong
Deng, Chuxiong
Zhang, Guangye
Wang, Shuyuan
Xiao, Tao
Zheng, Han
author_facet Li, Wenqing
Li, Zhongwu
Liu, Yaojun
Nie, Xiaodong
Deng, Chuxiong
Zhang, Guangye
Wang, Shuyuan
Xiao, Tao
Zheng, Han
author_sort Li, Wenqing
collection PubMed
description Microbial communities and functions play an important role in soil carbon and nitrogen transformations, and, in recent decades, the abandonment of terraces is prevalant in the hilly areas of China. However, it is unclear how soil carbon and nitrogen contents and prokaryotic communities changed as a result of the abandonment of ancient rice terraces. Soil profiles ranging from 0 to 120 cm were excavated on drylands, forestlands (both converted due to the abandonment of ancient rice terraces), and ancient rice terraces. The FAPROTAX database was used to predict soil prokaryotic functional groups. The results showed that soil organic carbon (SOC) and total nitrogen (TN) contents of abandoned ancient rice terraces in drylands (51.09 and 33.20%) and forestlands (31.76 and 16.59%) were significantly reduced. Soil prokaryotic diversity and community composition changed dramatically after the abandonment of terraces and were mainly affected by soil pH and ammoniacal nitrogen ([Formula: see text]-N). Community composition was more similar in drylands and forestlands. Moreover, the abundance of transformation functional genes of carbon (57.01 and 50.80%) and nitrogen (15.25 and 22.36%) in bacterial communities was significantly reduced, and of carbon in the archaeal communities decreased sharply (28.10 and 46.50%), in drylands and forestlands. These findings indicate that short-term abandonment of ancient rice terraces reduces soil carbon and nitrogen contents, which may be closely related to the decline of prokaryotic functional groups. The prevalence of short-term abandonment of rice terraces in the hilly areas of China may pose adverse ecological risks.
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spelling pubmed-97540932022-12-16 Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups Li, Wenqing Li, Zhongwu Liu, Yaojun Nie, Xiaodong Deng, Chuxiong Zhang, Guangye Wang, Shuyuan Xiao, Tao Zheng, Han Front Microbiol Microbiology Microbial communities and functions play an important role in soil carbon and nitrogen transformations, and, in recent decades, the abandonment of terraces is prevalant in the hilly areas of China. However, it is unclear how soil carbon and nitrogen contents and prokaryotic communities changed as a result of the abandonment of ancient rice terraces. Soil profiles ranging from 0 to 120 cm were excavated on drylands, forestlands (both converted due to the abandonment of ancient rice terraces), and ancient rice terraces. The FAPROTAX database was used to predict soil prokaryotic functional groups. The results showed that soil organic carbon (SOC) and total nitrogen (TN) contents of abandoned ancient rice terraces in drylands (51.09 and 33.20%) and forestlands (31.76 and 16.59%) were significantly reduced. Soil prokaryotic diversity and community composition changed dramatically after the abandonment of terraces and were mainly affected by soil pH and ammoniacal nitrogen ([Formula: see text]-N). Community composition was more similar in drylands and forestlands. Moreover, the abundance of transformation functional genes of carbon (57.01 and 50.80%) and nitrogen (15.25 and 22.36%) in bacterial communities was significantly reduced, and of carbon in the archaeal communities decreased sharply (28.10 and 46.50%), in drylands and forestlands. These findings indicate that short-term abandonment of ancient rice terraces reduces soil carbon and nitrogen contents, which may be closely related to the decline of prokaryotic functional groups. The prevalence of short-term abandonment of rice terraces in the hilly areas of China may pose adverse ecological risks. Frontiers Media S.A. 2022-12-01 /pmc/articles/PMC9754093/ /pubmed/36532439 http://dx.doi.org/10.3389/fmicb.2022.1007237 Text en Copyright © 2022 Li, Li, Liu, Nie, Deng, Zhang, Wang, Xiao and Zheng. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Li, Wenqing
Li, Zhongwu
Liu, Yaojun
Nie, Xiaodong
Deng, Chuxiong
Zhang, Guangye
Wang, Shuyuan
Xiao, Tao
Zheng, Han
Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title_full Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title_fullStr Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title_full_unstemmed Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title_short Reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: The role of both short-term abandonment and prokaryotic functional groups
title_sort reshaping of soil carbon and nitrogen contents in quincentenary ancient rice terraces: the role of both short-term abandonment and prokaryotic functional groups
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9754093/
https://www.ncbi.nlm.nih.gov/pubmed/36532439
http://dx.doi.org/10.3389/fmicb.2022.1007237
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