Genome-wide association with transcriptomics reveals a shade-tolerance gene network in soybean
文献类型: 外文期刊
作者: Su, Yanzhu 1 ; Hao, Xiaoshuai 1 ; Zeng, Weiying 2 ; Lai, Zhenguang 2 ; Pan, Yongpeng 1 ; Wang, Can 1 ; Guo, Pengfei 1 ; Zhang, Zhipeng 1 ; He, Jianbo 1 ; Xing, Guangnan 1 ; Wang, Wubin 1 ; Zhang, Jiaoping 1 ; Sun, Zudong 2 ; Gai, Junyi 1 ;
作者机构: 1.Nanjing Agr Univ, Soybean Res Inst, Jiangsu Collaborat Innovat Ctr Modern Crop Prod, MARA Natl Ctr Soybean Improvement,MARA Key Lab Bio, Nanjing 210095, Jiangsu, Peoples R China
2.Guangxi Acad Agr Sci, Nanning 530007, Guangxi, Peoples R China
关键词: Soybean(Glycine max (L.) Merr.); Shade-tolerance; Restricted two-stage multi-locus genome-wide association study based on gene/allele sequence markers (GASM-RTM-GWAS); Shade-tolerance index (STI); Relative cell length (RCL); Transcriptome
期刊名称:CROP JOURNAL ( 影响因子:6.6; 五年影响因子:6.5 )
ISSN: 2095-5421
年卷期: 2024 年 12 卷 1 期
页码:
收录情况: SCI
摘要: Shade tolerance is essential for soybeans in inter/relay cropping systems. A genome-wide association study (GWAS) integrated with transcriptome sequencing was performed to identify genes and construct a genetic network governing the trait in a set of recombinant inbred lines derived from two soybean parents with contrasting shade tolerance. An improved GWAS procedure, restricted two-stage multi-locus genome-wide association study based on gene/allele sequence markers (GASM-RTM-GWAS), identified 140 genes and their alleles associated with shade-tolerance index (STI), 146 with relative pith cell length (RCL), and nine with both. Annotation of these genes by biological categories allowed the construction of a protein-protein interaction network by 187 genes, of which half were differentially expressed under shading and non-shading conditions as well as at different growth stages. From the identified genes, three ones jointly identified for both traits by both GWAS and transcriptome and two genes with maximum links were chosen as beginners for entrance into the network. Altogether, both STI and RCL gene systems worked for shade-tolerance with genes interacted each other, this confirmed that shadetolerance is regulated by more than single group of interacted genes, involving multiple biological functions as a gene network. (c) 2023 Crop Science Society of China and Institute of Crop Science, CAAS. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. This is an open access article under the CC BY-NCND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
- 相关文献
作者其他论文 更多>>
-
Characterization of shade tolerance gene network in soybean revealed by forward integrated reverse genetic studies
作者:Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Su, Yanzhu;Pan, Yongpeng;Guo, Pengfei;Hao, Xiaoshuai;Gu, Shengyu;Zhang, Zhipeng;Sun, Lei;Li, Ning;He, Jianbo;Wang, Wubin;Xing, Guangnan;Zhang, Jiaoping;Gai, Junyi;Zeng, Weiying;Lai, Zhenguang;Sun, Zudong
关键词:
-
Genome-Wide Dissection of Shade Tolerance in Soybean at Seedling Stage
作者:Hu, Linfang;Wei, Yazhi;Zhang, Jiaoping;Hu, Linfang;Arshad, Kamran;Zheng, Meiying;Ou, Ran;Song, Yinmeng;Xie, Mengyan;Ling, Luyi;Zhang, Jiaoping;Zeng, Weiying
关键词:soybean; shade tolerance; seedling stage; RTM-GWAS; QTLs
-
Characterization of fatty acid desaturase gene family in Glycine max and their expression patterns in seeds after Fusarium fujikuroi infection
作者:Li, Xinyuan;Munir, Maira;Chang, Xiaoli;Yang, Wenyu;Li, Xinyuan;Munir, Maira;Chang, Xiaoli;Yang, Wenyu;Zeng, Weiying;Sun, Zudong
关键词:
Glycine max ; fatty acid desaturases; phylogenetic analysis; gene expression;Fusarium fujikuroi ; seed decay -
Rapid Identification of Soybean SC15 Resistance Locus to Soybean Mosaic Virus by BSA-seq
作者:Tang, Xiangmin;Chen, Huaizhu;Cai, Zhaoyan;Lai, Zhenguang;Wei, Qingyuan;Tan, Yurong;Chen, Dongliang;Zeng, Weiying;Yang, Shouzhen;Jin, Gang;Li, Kai;Zhi, Haijian
关键词:Soybean mosaic virus (SMV); Strain SC15; Bulked segregant analysis sequencing (BSA-seq); Euclidean distance (ED); SNP index
-
Cyclic Electron Flow Alleviates the Stress of Light Fluctuation on Soybean Photosynthesis
作者:Lei, Yi;Gao, Jing;Wang, Qi;Diwakar, Dhungana;Zhang, Yaodan;Tan, Xianming;Yang, Feng;Yang, Wenyu;Lei, Yi;Gao, Jing;Wang, Qi;Diwakar, Dhungana;Zhang, Yaodan;Tan, Xianming;Yang, Feng;Yang, Wenyu;Zeng, Weiying;Sun, Zudong
关键词:soybean; light fluctuation; chlorophyll; fluorescence; cyclic electron flow
-
Gene-allele system of shade tolerance in southern China soybean germplasm revealed by genome-wide association study using gene-allele sequence as markers
作者:Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Su, Yanzhu;Zhang, Zhipeng;He, Jianbo;Pan, Yongpeng;Hao, Xiaoshuai;Xing, Guangnan;Wang, Wubin;Zhang, Jiaoping;Li, Yan;Gai, Junyi;Zeng, Weiying;Cai, Zhaoyan;Lai, Zhenguang;Sun, Zudong
关键词:
-
Evolutionary Variation of Accumulative Day Length and Accumulative Active Temperature Required for Growth Periods in Global Soybeans
作者:Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Wang, Can;Liu, Xueqin;Hao, Xiaoshuai;Pan, Yongpeng;Wang, Wubin;Xing, Guangnan;He, Jianbo;Gai, Junyi;Zong, Chunmei;Zeng, Weiying
关键词:soybean (Glycine max (L.) Merr.); days from sowing to flowering (DSF); days from flowering to maturity (DFM); accumulative day length (ADL); accumulative active temperature (AAT); multiple regression; genetic clustering



