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RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice

Spikelet number per panicle (SNP) is one of the most important yield components in rice. Rice ENHANCING BIOMASS AND SPIKELET NUMBER (OsEBS), a gene involved in improved SNP and yield, has been cloned from an accession of Dongxiang wild rice. However, the mechanism of OsEBS increasing rice SNP is poo...

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Autores principales: Niu, Fuan, Liu, Mingyu, Dong, Shiqing, Dong, Xianxin, Wang, Ying, Cheng, Can, Chu, Huangwei, Hu, Zejun, Ma, Fuying, Yan, Peiwen, Lan, Dengyong, Zhang, Jianming, Zhou, Jihua, Sun, Bin, Zhang, Anpeng, Hu, Jian, Zhang, Xinwei, He, Shicong, Cui, Jinhao, Yuan, Xinyu, Yang, Jinshui, Cao, Liming, Luo, Xiaojin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10299296/
https://www.ncbi.nlm.nih.gov/pubmed/37373450
http://dx.doi.org/10.3390/ijms241210303
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author Niu, Fuan
Liu, Mingyu
Dong, Shiqing
Dong, Xianxin
Wang, Ying
Cheng, Can
Chu, Huangwei
Hu, Zejun
Ma, Fuying
Yan, Peiwen
Lan, Dengyong
Zhang, Jianming
Zhou, Jihua
Sun, Bin
Zhang, Anpeng
Hu, Jian
Zhang, Xinwei
He, Shicong
Cui, Jinhao
Yuan, Xinyu
Yang, Jinshui
Cao, Liming
Luo, Xiaojin
author_facet Niu, Fuan
Liu, Mingyu
Dong, Shiqing
Dong, Xianxin
Wang, Ying
Cheng, Can
Chu, Huangwei
Hu, Zejun
Ma, Fuying
Yan, Peiwen
Lan, Dengyong
Zhang, Jianming
Zhou, Jihua
Sun, Bin
Zhang, Anpeng
Hu, Jian
Zhang, Xinwei
He, Shicong
Cui, Jinhao
Yuan, Xinyu
Yang, Jinshui
Cao, Liming
Luo, Xiaojin
author_sort Niu, Fuan
collection PubMed
description Spikelet number per panicle (SNP) is one of the most important yield components in rice. Rice ENHANCING BIOMASS AND SPIKELET NUMBER (OsEBS), a gene involved in improved SNP and yield, has been cloned from an accession of Dongxiang wild rice. However, the mechanism of OsEBS increasing rice SNP is poorly understood. In this study, the RNA-Seq technology was used to analyze the transcriptome of wildtype Guichao 2 and OsEBS over-expression line B102 at the heading stage, and analysis of the evolution of OsEBS was also conducted. A total of 5369 differentially expressed genes (DEGs) were identified between Guichao2 and B102, most of which were down-regulated in B102. Analysis of the expression of endogenous hormone-related genes revealed that 63 auxin-related genes were significantly down-regulated in B102. Gene Ontogeny (GO) enrichment analysis showed that the 63 DEGs were mainly enriched in eight GO terms, including auxin-activated signaling pathway, auxin polar transport, auxin transport, basipetal auxin transport, and amino acid transmembrane transport, most of which were directly or indirectly related to polar auxin transport. Kyoto Encyclopedia of Genes and Genomes (KEGG) metabolic pathway analysis further verified that the down-regulated genes related to polar auxin transport had important effects on increased SNP. Analysis of the evolution of OsEBS found that OsEBS was involved in the differentiation of indica and japonica, and the differentiation of OsEBS supported the multi-origin model of rice domestication. Indica (XI) subspecies harbored higher nucleotide diversity than japonica (GJ) subspecies in the OsEBS region, and XI experienced strong balancing selection during evolution, while selection in GJ was neutral. The degree of genetic differentiation between GJ and Bas subspecies was the smallest, while it was the highest between GJ and Aus. Phylogenetic analysis of the Hsp70 family in O. sativa, Brachypodium distachyon, and Arabidopsis thaliana indicated that changes in the sequences of OsEBS were accelerated during evolution. Accelerated evolution and domain loss in OsEBS resulted in neofunctionalization. The results obtained from this study provide an important theoretical basis for high-yield rice breeding.
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spelling pubmed-102992962023-06-28 RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice Niu, Fuan Liu, Mingyu Dong, Shiqing Dong, Xianxin Wang, Ying Cheng, Can Chu, Huangwei Hu, Zejun Ma, Fuying Yan, Peiwen Lan, Dengyong Zhang, Jianming Zhou, Jihua Sun, Bin Zhang, Anpeng Hu, Jian Zhang, Xinwei He, Shicong Cui, Jinhao Yuan, Xinyu Yang, Jinshui Cao, Liming Luo, Xiaojin Int J Mol Sci Article Spikelet number per panicle (SNP) is one of the most important yield components in rice. Rice ENHANCING BIOMASS AND SPIKELET NUMBER (OsEBS), a gene involved in improved SNP and yield, has been cloned from an accession of Dongxiang wild rice. However, the mechanism of OsEBS increasing rice SNP is poorly understood. In this study, the RNA-Seq technology was used to analyze the transcriptome of wildtype Guichao 2 and OsEBS over-expression line B102 at the heading stage, and analysis of the evolution of OsEBS was also conducted. A total of 5369 differentially expressed genes (DEGs) were identified between Guichao2 and B102, most of which were down-regulated in B102. Analysis of the expression of endogenous hormone-related genes revealed that 63 auxin-related genes were significantly down-regulated in B102. Gene Ontogeny (GO) enrichment analysis showed that the 63 DEGs were mainly enriched in eight GO terms, including auxin-activated signaling pathway, auxin polar transport, auxin transport, basipetal auxin transport, and amino acid transmembrane transport, most of which were directly or indirectly related to polar auxin transport. Kyoto Encyclopedia of Genes and Genomes (KEGG) metabolic pathway analysis further verified that the down-regulated genes related to polar auxin transport had important effects on increased SNP. Analysis of the evolution of OsEBS found that OsEBS was involved in the differentiation of indica and japonica, and the differentiation of OsEBS supported the multi-origin model of rice domestication. Indica (XI) subspecies harbored higher nucleotide diversity than japonica (GJ) subspecies in the OsEBS region, and XI experienced strong balancing selection during evolution, while selection in GJ was neutral. The degree of genetic differentiation between GJ and Bas subspecies was the smallest, while it was the highest between GJ and Aus. Phylogenetic analysis of the Hsp70 family in O. sativa, Brachypodium distachyon, and Arabidopsis thaliana indicated that changes in the sequences of OsEBS were accelerated during evolution. Accelerated evolution and domain loss in OsEBS resulted in neofunctionalization. The results obtained from this study provide an important theoretical basis for high-yield rice breeding. MDPI 2023-06-18 /pmc/articles/PMC10299296/ /pubmed/37373450 http://dx.doi.org/10.3390/ijms241210303 Text en © 2023 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
Niu, Fuan
Liu, Mingyu
Dong, Shiqing
Dong, Xianxin
Wang, Ying
Cheng, Can
Chu, Huangwei
Hu, Zejun
Ma, Fuying
Yan, Peiwen
Lan, Dengyong
Zhang, Jianming
Zhou, Jihua
Sun, Bin
Zhang, Anpeng
Hu, Jian
Zhang, Xinwei
He, Shicong
Cui, Jinhao
Yuan, Xinyu
Yang, Jinshui
Cao, Liming
Luo, Xiaojin
RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title_full RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title_fullStr RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title_full_unstemmed RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title_short RNA-Seq Transcriptome Analysis and Evolution of OsEBS, a Gene Involved in Enhanced Spikelet Number per Panicle in Rice
title_sort rna-seq transcriptome analysis and evolution of osebs, a gene involved in enhanced spikelet number per panicle in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10299296/
https://www.ncbi.nlm.nih.gov/pubmed/37373450
http://dx.doi.org/10.3390/ijms241210303
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