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Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system

Intercropping systems have been studied as a sustainable agricultural planting pattern to increase soil quality and crop yields. However, the relationships between metabolites and soil physicochemical properties remain poorly understood under sugarcane/peanut intercropping system. Thus, we determine...

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Autores principales: Tang, Xiumei, He, Yonglin, Zhang, Zheng, Wu, Haining, He, Liangqiong, Jiang, Jing, Meng, Weiwei, Huang, Zhipeng, Xiong, Faqian, Liu, Jing, Zhong, Ruichun, Han, Zhuqiang, Wan, Shubo, Tang, Ronghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9757493/
https://www.ncbi.nlm.nih.gov/pubmed/36531399
http://dx.doi.org/10.3389/fpls.2022.1018727
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author Tang, Xiumei
He, Yonglin
Zhang, Zheng
Wu, Haining
He, Liangqiong
Jiang, Jing
Meng, Weiwei
Huang, Zhipeng
Xiong, Faqian
Liu, Jing
Zhong, Ruichun
Han, Zhuqiang
Wan, Shubo
Tang, Ronghua
author_facet Tang, Xiumei
He, Yonglin
Zhang, Zheng
Wu, Haining
He, Liangqiong
Jiang, Jing
Meng, Weiwei
Huang, Zhipeng
Xiong, Faqian
Liu, Jing
Zhong, Ruichun
Han, Zhuqiang
Wan, Shubo
Tang, Ronghua
author_sort Tang, Xiumei
collection PubMed
description Intercropping systems have been studied as a sustainable agricultural planting pattern to increase soil quality and crop yields. However, the relationships between metabolites and soil physicochemical properties remain poorly understood under sugarcane/peanut intercropping system. Thus, we determined the rhizosphere soil physicochemical properties, and analyzed rhizosphere soil metabolites and root metabolites by metabolomics method under monoculture and intercropping patterns of sugarcane and peanut. The results showed that pH, the contents of total phosphorus (P), total potassium (K), available nitrogen (N), available phosphorus (P), and available potassium (K) were higher in rhizosphere soil of intercropping peanut than monoculture peanut, and the content of total P was higher in rhizosphere soil of intercropping sugarcane than monoculture sugarcane. Sugarcane/peanut intercropping also significantly increased the activities of acid phosphatase and urease in rhizosphere soil. The metabolomics results showed that 32 metabolites, mainly organic acids and their derivatives (25.00%), nucleotides and their metabolites (18.75%), were detected in root and rhizosphere soil samples. In the MP-S (rhizosphere soil of monoculture peanut) vs. IP-S (rhizosphere soil of intercropping peanut) comparison, 47 differential metabolites (42 upregulated) were screened, including glycerolipids (19.15%), organic acids and their derivatives (17.89%), and amino acids and their metabolites (12.77%). In the MS-S (rhizosphere soil of monoculture sugarcane) vs. IS-S (rhizosphere soil of intercropping sugarcane) comparison, 51 differential metabolites (26 upregulated) were screened, including heterocyclic compounds (15.69%), glycerolipids (11.76%), and organic acids and their derivatives (9.80%). The metabolite species from MP-S, MS-S, IP-S, and IS-S were similar, but some metabolite contents were significantly different, such as adenine, adenosine, maltotriose, thermozeaxanthin-13 and PE-NMe (20:0/24:0). Adenine and adenosine were detected in root and rhizosphere soils, and their levels were increased in the intercropping treatment, which were mainly related to enhanced purine metabolism in root and rhizosphere soils under the sugarcane/peanut intercropping system. Importantly, adenine and adenosine were significantly positively correlated with total P and total K contents, acid phosphatase and urease activities, and pH. This study clarified that the sugarcane/peanut intercropping system could improve soil nutrients and enzymes and was related to purine metabolism.
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spelling pubmed-97574932022-12-17 Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system Tang, Xiumei He, Yonglin Zhang, Zheng Wu, Haining He, Liangqiong Jiang, Jing Meng, Weiwei Huang, Zhipeng Xiong, Faqian Liu, Jing Zhong, Ruichun Han, Zhuqiang Wan, Shubo Tang, Ronghua Front Plant Sci Plant Science Intercropping systems have been studied as a sustainable agricultural planting pattern to increase soil quality and crop yields. However, the relationships between metabolites and soil physicochemical properties remain poorly understood under sugarcane/peanut intercropping system. Thus, we determined the rhizosphere soil physicochemical properties, and analyzed rhizosphere soil metabolites and root metabolites by metabolomics method under monoculture and intercropping patterns of sugarcane and peanut. The results showed that pH, the contents of total phosphorus (P), total potassium (K), available nitrogen (N), available phosphorus (P), and available potassium (K) were higher in rhizosphere soil of intercropping peanut than monoculture peanut, and the content of total P was higher in rhizosphere soil of intercropping sugarcane than monoculture sugarcane. Sugarcane/peanut intercropping also significantly increased the activities of acid phosphatase and urease in rhizosphere soil. The metabolomics results showed that 32 metabolites, mainly organic acids and their derivatives (25.00%), nucleotides and their metabolites (18.75%), were detected in root and rhizosphere soil samples. In the MP-S (rhizosphere soil of monoculture peanut) vs. IP-S (rhizosphere soil of intercropping peanut) comparison, 47 differential metabolites (42 upregulated) were screened, including glycerolipids (19.15%), organic acids and their derivatives (17.89%), and amino acids and their metabolites (12.77%). In the MS-S (rhizosphere soil of monoculture sugarcane) vs. IS-S (rhizosphere soil of intercropping sugarcane) comparison, 51 differential metabolites (26 upregulated) were screened, including heterocyclic compounds (15.69%), glycerolipids (11.76%), and organic acids and their derivatives (9.80%). The metabolite species from MP-S, MS-S, IP-S, and IS-S were similar, but some metabolite contents were significantly different, such as adenine, adenosine, maltotriose, thermozeaxanthin-13 and PE-NMe (20:0/24:0). Adenine and adenosine were detected in root and rhizosphere soils, and their levels were increased in the intercropping treatment, which were mainly related to enhanced purine metabolism in root and rhizosphere soils under the sugarcane/peanut intercropping system. Importantly, adenine and adenosine were significantly positively correlated with total P and total K contents, acid phosphatase and urease activities, and pH. This study clarified that the sugarcane/peanut intercropping system could improve soil nutrients and enzymes and was related to purine metabolism. Frontiers Media S.A. 2022-12-02 /pmc/articles/PMC9757493/ /pubmed/36531399 http://dx.doi.org/10.3389/fpls.2022.1018727 Text en Copyright © 2022 Tang, He, Zhang, Wu, He, Jiang, Meng, Huang, Xiong, Liu, Zhong, Han, Wan and Tang 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 Plant Science
Tang, Xiumei
He, Yonglin
Zhang, Zheng
Wu, Haining
He, Liangqiong
Jiang, Jing
Meng, Weiwei
Huang, Zhipeng
Xiong, Faqian
Liu, Jing
Zhong, Ruichun
Han, Zhuqiang
Wan, Shubo
Tang, Ronghua
Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title_full Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title_fullStr Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title_full_unstemmed Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title_short Beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
title_sort beneficial shift of rhizosphere soil nutrients and metabolites under a sugarcane/peanut intercropping system
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9757493/
https://www.ncbi.nlm.nih.gov/pubmed/36531399
http://dx.doi.org/10.3389/fpls.2022.1018727
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