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Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size

Pod size is one of the important factors affecting peanut yield. However, the metabolites relating to pod size and their biosynthesis regulatory mechanisms are still unclear. In the present study, two peanut varieties (Tif and Lps) with contrasting pod sizes were used for a comparative metabolome an...

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Autores principales: Lv, Zhenghao, Zhou, Dongying, Shi, Xiaolong, Ren, Jingyao, Zhang, He, Zhong, Chao, Kang, Shuli, Zhao, Xinhua, Yu, Haiqiu, Wang, Chuantang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658497/
https://www.ncbi.nlm.nih.gov/pubmed/36362327
http://dx.doi.org/10.3390/ijms232113533
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author Lv, Zhenghao
Zhou, Dongying
Shi, Xiaolong
Ren, Jingyao
Zhang, He
Zhong, Chao
Kang, Shuli
Zhao, Xinhua
Yu, Haiqiu
Wang, Chuantang
author_facet Lv, Zhenghao
Zhou, Dongying
Shi, Xiaolong
Ren, Jingyao
Zhang, He
Zhong, Chao
Kang, Shuli
Zhao, Xinhua
Yu, Haiqiu
Wang, Chuantang
author_sort Lv, Zhenghao
collection PubMed
description Pod size is one of the important factors affecting peanut yield. However, the metabolites relating to pod size and their biosynthesis regulatory mechanisms are still unclear. In the present study, two peanut varieties (Tif and Lps) with contrasting pod sizes were used for a comparative metabolome and transcriptome analysis. Developing peanut pods were sampled at 10, 20 and 30 days after pegging (DAP). A total of 720 metabolites were detected, most of which were lipids (20.3%), followed by phenolic acids (17.8%). There were 43, 64 and 99 metabolites identified as differentially accumulated metabolites (DAMs) at 10, 20 and 30 DAP, respectively, and flavonoids were the major DAMs between Tif and Lps at all three growth stages. Multi-omics analysis revealed that DAMs and DEGs (differentially expressed genes) were significantly enriched in the phenylpropanoid biosynthesis (ko00940) pathway, the main pathway of lignin biosynthesis, in each comparison group. The comparisons of the metabolites in the phenylpropanoid biosynthesis pathway accumulating in Tif and Lps at different growth stages revealed that the accumulation of p-coumaryl alcohol (H-monolignol) in Tif was significantly greater than that in Lps at 30 DAP. The differential expression of gene-LOC112771695, which is highly correlated with p-coumaryl alcohol and involved in the biosynthesis of monolignols, between Tif and Lps might explain the differential accumulation of p-coumaryl alcohol. The content of H-lignin in genetically diverse peanut varieties demonstrated that H-lignin content affected peanut pod size. Our findings would provide insights into the metabolic factors influencing peanut pod size and guidance for the genetic improvement of the peanut.
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spelling pubmed-96584972022-11-15 Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size Lv, Zhenghao Zhou, Dongying Shi, Xiaolong Ren, Jingyao Zhang, He Zhong, Chao Kang, Shuli Zhao, Xinhua Yu, Haiqiu Wang, Chuantang Int J Mol Sci Article Pod size is one of the important factors affecting peanut yield. However, the metabolites relating to pod size and their biosynthesis regulatory mechanisms are still unclear. In the present study, two peanut varieties (Tif and Lps) with contrasting pod sizes were used for a comparative metabolome and transcriptome analysis. Developing peanut pods were sampled at 10, 20 and 30 days after pegging (DAP). A total of 720 metabolites were detected, most of which were lipids (20.3%), followed by phenolic acids (17.8%). There were 43, 64 and 99 metabolites identified as differentially accumulated metabolites (DAMs) at 10, 20 and 30 DAP, respectively, and flavonoids were the major DAMs between Tif and Lps at all three growth stages. Multi-omics analysis revealed that DAMs and DEGs (differentially expressed genes) were significantly enriched in the phenylpropanoid biosynthesis (ko00940) pathway, the main pathway of lignin biosynthesis, in each comparison group. The comparisons of the metabolites in the phenylpropanoid biosynthesis pathway accumulating in Tif and Lps at different growth stages revealed that the accumulation of p-coumaryl alcohol (H-monolignol) in Tif was significantly greater than that in Lps at 30 DAP. The differential expression of gene-LOC112771695, which is highly correlated with p-coumaryl alcohol and involved in the biosynthesis of monolignols, between Tif and Lps might explain the differential accumulation of p-coumaryl alcohol. The content of H-lignin in genetically diverse peanut varieties demonstrated that H-lignin content affected peanut pod size. Our findings would provide insights into the metabolic factors influencing peanut pod size and guidance for the genetic improvement of the peanut. MDPI 2022-11-04 /pmc/articles/PMC9658497/ /pubmed/36362327 http://dx.doi.org/10.3390/ijms232113533 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
Lv, Zhenghao
Zhou, Dongying
Shi, Xiaolong
Ren, Jingyao
Zhang, He
Zhong, Chao
Kang, Shuli
Zhao, Xinhua
Yu, Haiqiu
Wang, Chuantang
Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title_full Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title_fullStr Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title_full_unstemmed Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title_short Comparative Multi-Omics Analysis Reveals Lignin Accumulation Affects Peanut Pod Size
title_sort comparative multi-omics analysis reveals lignin accumulation affects peanut pod size
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658497/
https://www.ncbi.nlm.nih.gov/pubmed/36362327
http://dx.doi.org/10.3390/ijms232113533
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