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Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism

Bioorganic fertilizers can alleviate (a) biotic stresses and sustainably increase crop yields. The effect of bioorganic fertilizers on the rhizosphere bacterial community of Panax notoginseng and soil metabolism remains unknown. Here, we tracked the changes in the soil physicochemical properties, ba...

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Autores principales: Shi, Rui, Wang, Shu, Xiong, Bingjie, Gu, Haiyan, Wang, Huiling, Ji, Chao, Jia, Weijia, Horowitz, Abraham Rami, Zhen, Wenjie, Asher, Jiftah Ben, He, Xiahong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879206/
https://www.ncbi.nlm.nih.gov/pubmed/35208730
http://dx.doi.org/10.3390/microorganisms10020275
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author Shi, Rui
Wang, Shu
Xiong, Bingjie
Gu, Haiyan
Wang, Huiling
Ji, Chao
Jia, Weijia
Horowitz, Abraham Rami
Zhen, Wenjie
Asher, Jiftah Ben
He, Xiahong
author_facet Shi, Rui
Wang, Shu
Xiong, Bingjie
Gu, Haiyan
Wang, Huiling
Ji, Chao
Jia, Weijia
Horowitz, Abraham Rami
Zhen, Wenjie
Asher, Jiftah Ben
He, Xiahong
author_sort Shi, Rui
collection PubMed
description Bioorganic fertilizers can alleviate (a) biotic stresses and sustainably increase crop yields. The effect of bioorganic fertilizers on the rhizosphere bacterial community of Panax notoginseng and soil metabolism remains unknown. Here, we tracked the changes in the soil physicochemical properties, bacterial microbiota responses, and soil metabolic functions after the addition of a bioorganic fertilizer in a P. notoginseng field. The application of a bioorganic fertilizer reduced the soil acidification, improved the organic matter, and increased the contents of the total/available soil nutrients. Soil amendment with a bioorganic fertilizer significantly affected the structure of the rhizosphere bacterial community, leading to the enrichment of specific bacterial consortia such as Rhodanobacter, Arthrobacter, Sphingomonas, Devosia, Pseudolabrys, Luteimonas, Lysobacter, Nitrosospira, and Nakamurella. Previously, many of these genera have been associated with nutrient cycling, plant productivity, and disease suppression. Metabolome analysis further highlighted that the bioorganic fertilizer treatment significantly reduced phenolic acids and flavonoids and enhanced organic acids, saccharides and alcohols, and amino acids. This result indicates a high survival of bacterial microbiota in the rhizosphere and an availability of nutrients for P. notoginseng growth. This work showed that the application of bioorganic fertilizers significantly improves soil health status, alters soil metabolic functions, and stimulates a specific subset of rhizosphere microbiota for nutrient cycling and disease protection in P. notoginseng.
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spelling pubmed-88792062022-02-26 Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism Shi, Rui Wang, Shu Xiong, Bingjie Gu, Haiyan Wang, Huiling Ji, Chao Jia, Weijia Horowitz, Abraham Rami Zhen, Wenjie Asher, Jiftah Ben He, Xiahong Microorganisms Article Bioorganic fertilizers can alleviate (a) biotic stresses and sustainably increase crop yields. The effect of bioorganic fertilizers on the rhizosphere bacterial community of Panax notoginseng and soil metabolism remains unknown. Here, we tracked the changes in the soil physicochemical properties, bacterial microbiota responses, and soil metabolic functions after the addition of a bioorganic fertilizer in a P. notoginseng field. The application of a bioorganic fertilizer reduced the soil acidification, improved the organic matter, and increased the contents of the total/available soil nutrients. Soil amendment with a bioorganic fertilizer significantly affected the structure of the rhizosphere bacterial community, leading to the enrichment of specific bacterial consortia such as Rhodanobacter, Arthrobacter, Sphingomonas, Devosia, Pseudolabrys, Luteimonas, Lysobacter, Nitrosospira, and Nakamurella. Previously, many of these genera have been associated with nutrient cycling, plant productivity, and disease suppression. Metabolome analysis further highlighted that the bioorganic fertilizer treatment significantly reduced phenolic acids and flavonoids and enhanced organic acids, saccharides and alcohols, and amino acids. This result indicates a high survival of bacterial microbiota in the rhizosphere and an availability of nutrients for P. notoginseng growth. This work showed that the application of bioorganic fertilizers significantly improves soil health status, alters soil metabolic functions, and stimulates a specific subset of rhizosphere microbiota for nutrient cycling and disease protection in P. notoginseng. MDPI 2022-01-25 /pmc/articles/PMC8879206/ /pubmed/35208730 http://dx.doi.org/10.3390/microorganisms10020275 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shi, Rui
Wang, Shu
Xiong, Bingjie
Gu, Haiyan
Wang, Huiling
Ji, Chao
Jia, Weijia
Horowitz, Abraham Rami
Zhen, Wenjie
Asher, Jiftah Ben
He, Xiahong
Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title_full Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title_fullStr Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title_full_unstemmed Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title_short Application of Bioorganic Fertilizer on Panax notoginseng Improves Plant Growth by Altering the Rhizosphere Microbiome Structure and Metabolism
title_sort application of bioorganic fertilizer on panax notoginseng improves plant growth by altering the rhizosphere microbiome structure and metabolism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879206/
https://www.ncbi.nlm.nih.gov/pubmed/35208730
http://dx.doi.org/10.3390/microorganisms10020275
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