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Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse

With the constant surge of strawberry cultivation and human demand, widespread concern has been expressed about the severe soil and plant health problems caused by continuous strawberry cropping, particularly monocropping in greenhouses. Effective microorganisms (EM) and Bacillus subtilis (BS) have...

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Autores principales: Liu, Senlin, Khan, Muzammil Hassan, Yuan, Zhongyuan, Hussain, Sarfraz, Cao, Hui, Liu, Yabo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480769/
https://www.ncbi.nlm.nih.gov/pubmed/34587178
http://dx.doi.org/10.1371/journal.pone.0245180
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author Liu, Senlin
Khan, Muzammil Hassan
Yuan, Zhongyuan
Hussain, Sarfraz
Cao, Hui
Liu, Yabo
author_facet Liu, Senlin
Khan, Muzammil Hassan
Yuan, Zhongyuan
Hussain, Sarfraz
Cao, Hui
Liu, Yabo
author_sort Liu, Senlin
collection PubMed
description With the constant surge of strawberry cultivation and human demand, widespread concern has been expressed about the severe soil and plant health problems caused by continuous strawberry cropping, particularly monocropping in greenhouses. Effective microorganisms (EM) and Bacillus subtilis (BS) have been extensively commercialized as biological control agents (BCAs) to promote plant growth and yield enhancement. However, their effects on soil microbes are obscure. To regulate the microbial community in continuous cropping strawberry soils, we developed four soil amendments based on these two BCAs by adding low and high contents of compost. The amplicon sequencing of bacterial and fungal ribosomal markers was applied to study the response of the soil microbiome structure. We noticed a sharp increase in bacterial diversity after adding EM-treated high compost and BS-treated low compost, while there was no significant change in fungal diversity among treatments. Through taxonomic classification and FUNGuild analysis, we found that the application of soil amendments resulted in a significant decline in the relative abundance of fungal plant pathogens (Rhizopus, Penicillium and Fusarium) in the soils; accordingly, the metabolic functions of a range of detrimental fungi were inhibited. Correlation analysis indicated that soil microbial community was indirectly driven by soil physicochemical properties. Co-occurrence networks revealed that soil amendments contributed to the connectivity of bacterial network, and EM-treated with high compost was the most complex and balanced. Collectively, EM-treated high compost and BS-treated low compost can well regulate the microbial community structure and thus maintain soil health.
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spelling pubmed-84807692021-09-30 Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse Liu, Senlin Khan, Muzammil Hassan Yuan, Zhongyuan Hussain, Sarfraz Cao, Hui Liu, Yabo PLoS One Research Article With the constant surge of strawberry cultivation and human demand, widespread concern has been expressed about the severe soil and plant health problems caused by continuous strawberry cropping, particularly monocropping in greenhouses. Effective microorganisms (EM) and Bacillus subtilis (BS) have been extensively commercialized as biological control agents (BCAs) to promote plant growth and yield enhancement. However, their effects on soil microbes are obscure. To regulate the microbial community in continuous cropping strawberry soils, we developed four soil amendments based on these two BCAs by adding low and high contents of compost. The amplicon sequencing of bacterial and fungal ribosomal markers was applied to study the response of the soil microbiome structure. We noticed a sharp increase in bacterial diversity after adding EM-treated high compost and BS-treated low compost, while there was no significant change in fungal diversity among treatments. Through taxonomic classification and FUNGuild analysis, we found that the application of soil amendments resulted in a significant decline in the relative abundance of fungal plant pathogens (Rhizopus, Penicillium and Fusarium) in the soils; accordingly, the metabolic functions of a range of detrimental fungi were inhibited. Correlation analysis indicated that soil microbial community was indirectly driven by soil physicochemical properties. Co-occurrence networks revealed that soil amendments contributed to the connectivity of bacterial network, and EM-treated with high compost was the most complex and balanced. Collectively, EM-treated high compost and BS-treated low compost can well regulate the microbial community structure and thus maintain soil health. Public Library of Science 2021-09-29 /pmc/articles/PMC8480769/ /pubmed/34587178 http://dx.doi.org/10.1371/journal.pone.0245180 Text en © 2021 Liu et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Liu, Senlin
Khan, Muzammil Hassan
Yuan, Zhongyuan
Hussain, Sarfraz
Cao, Hui
Liu, Yabo
Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title_full Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title_fullStr Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title_full_unstemmed Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title_short Response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
title_sort response of soil microbiome structure and its network profiles to four soil amendments in monocropping strawberry greenhouse
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480769/
https://www.ncbi.nlm.nih.gov/pubmed/34587178
http://dx.doi.org/10.1371/journal.pone.0245180
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