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Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods

Photosynthetic bacteria are beneficial to plants, but knowledge of photosynthetic bacterial community dynamics in field crops during different growth stages is scarce. The factors controlling the changes in the photosynthetic bacterial community during plant growth require further investigation. In...

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Autores principales: Cheng, Ju-E, Su, Pin, Zhang, Zhan-Hong, Zheng, Li-Min, Wang, Zhong-Yong, Hamid, Muhammad Rizwan, Dai, Jian-Ping, Du, Xiao-Hua, Chen, Li-Jie, Zhai, Zhong-Ying, Kong, Xiao-Ting, Liu, Yong, Zhang, De-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282544/
https://www.ncbi.nlm.nih.gov/pubmed/35834536
http://dx.doi.org/10.1371/journal.pone.0262517
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author Cheng, Ju-E
Su, Pin
Zhang, Zhan-Hong
Zheng, Li-Min
Wang, Zhong-Yong
Hamid, Muhammad Rizwan
Dai, Jian-Ping
Du, Xiao-Hua
Chen, Li-Jie
Zhai, Zhong-Ying
Kong, Xiao-Ting
Liu, Yong
Zhang, De-Yong
author_facet Cheng, Ju-E
Su, Pin
Zhang, Zhan-Hong
Zheng, Li-Min
Wang, Zhong-Yong
Hamid, Muhammad Rizwan
Dai, Jian-Ping
Du, Xiao-Hua
Chen, Li-Jie
Zhai, Zhong-Ying
Kong, Xiao-Ting
Liu, Yong
Zhang, De-Yong
author_sort Cheng, Ju-E
collection PubMed
description Photosynthetic bacteria are beneficial to plants, but knowledge of photosynthetic bacterial community dynamics in field crops during different growth stages is scarce. The factors controlling the changes in the photosynthetic bacterial community during plant growth require further investigation. In this study, 35 microbial community samples were collected from the seedling, flowering, and mature stages of tomato, cucumber, and soybean plants. 35 microbial community samples were assessed using Illumina sequencing of the photosynthetic reaction center subunit M (pufM) gene. The results revealed significant alpha diversity and community structure differences among the three crops at the different growth stages. Proteobacteria was the dominant bacterial phylum, and Methylobacterium, Roseateles, and Thiorhodococcus were the dominant genera at all growth stages. PCoA revealed clear differences in the structure of the microbial populations isolated from leaf samples collected from different crops at different growth stages. In addition, a dissimilarity test revealed significant differences in the photosynthetic bacterial community among crops and growth stages (P<0.05). The photosynthetic bacterial communities changed during crop growth. OTUs assigned to Methylobacterium were present in varying abundances among different sample types, which we speculated was related to the function of different Methylobacterium species in promoting plant growth development and enhancing plant photosynthetic efficiency. In conclusion, the dynamics observed in this study provide new research ideas for the detailed assessments of the relationship between photosynthetic bacteria and different growth stages of plants.
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spelling pubmed-92825442022-07-15 Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods Cheng, Ju-E Su, Pin Zhang, Zhan-Hong Zheng, Li-Min Wang, Zhong-Yong Hamid, Muhammad Rizwan Dai, Jian-Ping Du, Xiao-Hua Chen, Li-Jie Zhai, Zhong-Ying Kong, Xiao-Ting Liu, Yong Zhang, De-Yong PLoS One Research Article Photosynthetic bacteria are beneficial to plants, but knowledge of photosynthetic bacterial community dynamics in field crops during different growth stages is scarce. The factors controlling the changes in the photosynthetic bacterial community during plant growth require further investigation. In this study, 35 microbial community samples were collected from the seedling, flowering, and mature stages of tomato, cucumber, and soybean plants. 35 microbial community samples were assessed using Illumina sequencing of the photosynthetic reaction center subunit M (pufM) gene. The results revealed significant alpha diversity and community structure differences among the three crops at the different growth stages. Proteobacteria was the dominant bacterial phylum, and Methylobacterium, Roseateles, and Thiorhodococcus were the dominant genera at all growth stages. PCoA revealed clear differences in the structure of the microbial populations isolated from leaf samples collected from different crops at different growth stages. In addition, a dissimilarity test revealed significant differences in the photosynthetic bacterial community among crops and growth stages (P<0.05). The photosynthetic bacterial communities changed during crop growth. OTUs assigned to Methylobacterium were present in varying abundances among different sample types, which we speculated was related to the function of different Methylobacterium species in promoting plant growth development and enhancing plant photosynthetic efficiency. In conclusion, the dynamics observed in this study provide new research ideas for the detailed assessments of the relationship between photosynthetic bacteria and different growth stages of plants. Public Library of Science 2022-07-14 /pmc/articles/PMC9282544/ /pubmed/35834536 http://dx.doi.org/10.1371/journal.pone.0262517 Text en © 2022 Cheng 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
Cheng, Ju-E
Su, Pin
Zhang, Zhan-Hong
Zheng, Li-Min
Wang, Zhong-Yong
Hamid, Muhammad Rizwan
Dai, Jian-Ping
Du, Xiao-Hua
Chen, Li-Jie
Zhai, Zhong-Ying
Kong, Xiao-Ting
Liu, Yong
Zhang, De-Yong
Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title_full Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title_fullStr Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title_full_unstemmed Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title_short Metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
title_sort metagenomic analysis of the dynamical conversion of photosynthetic bacterial communities in different crop fields over different growth periods
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282544/
https://www.ncbi.nlm.nih.gov/pubmed/35834536
http://dx.doi.org/10.1371/journal.pone.0262517
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