Cargando…

Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM

Germination of soybean seed is the imminent vital process after sowing. The status of plumular axis and radicle determine whether soybean seed can emerge normally. Epicotyl, an organ between cotyledons and first functional leaves, is essential for soybean seed germination, seedling growth and early...

Descripción completa

Detalles Bibliográficos
Autores principales: Hong, Huilong, Li, Mei, Chen, Yijie, Wang, Haorang, Wang, Jun, Guo, Bingfu, Gao, Huawei, Ren, Honglei, Yuan, Ming, Han, Yingpeng, Qiu, Lijuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9704727/
https://www.ncbi.nlm.nih.gov/pubmed/36452100
http://dx.doi.org/10.3389/fpls.2022.1033120
_version_ 1784840117733556224
author Hong, Huilong
Li, Mei
Chen, Yijie
Wang, Haorang
Wang, Jun
Guo, Bingfu
Gao, Huawei
Ren, Honglei
Yuan, Ming
Han, Yingpeng
Qiu, Lijuan
author_facet Hong, Huilong
Li, Mei
Chen, Yijie
Wang, Haorang
Wang, Jun
Guo, Bingfu
Gao, Huawei
Ren, Honglei
Yuan, Ming
Han, Yingpeng
Qiu, Lijuan
author_sort Hong, Huilong
collection PubMed
description Germination of soybean seed is the imminent vital process after sowing. The status of plumular axis and radicle determine whether soybean seed can emerge normally. Epicotyl, an organ between cotyledons and first functional leaves, is essential for soybean seed germination, seedling growth and early morphogenesis. Epicotyl length (EL) is a quantitative trait controlled by multiple genes/QTLs. Here, the present study analyzes the phenotypic diversity and genetic basis of EL using 951 soybean improved cultivars and landraces from Asia, America, Europe and Africa. 3VmrMLM was used to analyze the associations between EL in 2016 and 2020 and 1,639,846 SNPs for the identification of QTNs and QTN-by-environment interactions (QEIs)”.A total of 180 QTNs and QEIs associated with EL were detected. Among them, 74 QTNs (ELS_Q) and 16 QEIs (ELS_QE) were identified to be associated with ELS (epicotyl length of single plant emergence), and 60 QTNs (ELT_Q) and 30 QEIs (ELT_QE) were identified to be associated with ELT (epicotyl length of three seedlings). Based on transcript abundance analysis, GO (Gene Ontology) enrichment and haplotype analysis, ten candidate genes were predicted within nine genic SNPs located in introns, upstream or downstream, which were supposed to be directly or indirectly involved in the process of seed germination and seedling development., Of 10 candidate genes, two of them (Glyma.04G122400 and Glyma.18G183600) could possibly affect epicotyl length elongation. These results indicate the genetic basis of EL and provides a valuable basis for specific functional studies of epicotyl traits.
format Online
Article
Text
id pubmed-9704727
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-97047272022-11-29 Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM Hong, Huilong Li, Mei Chen, Yijie Wang, Haorang Wang, Jun Guo, Bingfu Gao, Huawei Ren, Honglei Yuan, Ming Han, Yingpeng Qiu, Lijuan Front Plant Sci Plant Science Germination of soybean seed is the imminent vital process after sowing. The status of plumular axis and radicle determine whether soybean seed can emerge normally. Epicotyl, an organ between cotyledons and first functional leaves, is essential for soybean seed germination, seedling growth and early morphogenesis. Epicotyl length (EL) is a quantitative trait controlled by multiple genes/QTLs. Here, the present study analyzes the phenotypic diversity and genetic basis of EL using 951 soybean improved cultivars and landraces from Asia, America, Europe and Africa. 3VmrMLM was used to analyze the associations between EL in 2016 and 2020 and 1,639,846 SNPs for the identification of QTNs and QTN-by-environment interactions (QEIs)”.A total of 180 QTNs and QEIs associated with EL were detected. Among them, 74 QTNs (ELS_Q) and 16 QEIs (ELS_QE) were identified to be associated with ELS (epicotyl length of single plant emergence), and 60 QTNs (ELT_Q) and 30 QEIs (ELT_QE) were identified to be associated with ELT (epicotyl length of three seedlings). Based on transcript abundance analysis, GO (Gene Ontology) enrichment and haplotype analysis, ten candidate genes were predicted within nine genic SNPs located in introns, upstream or downstream, which were supposed to be directly or indirectly involved in the process of seed germination and seedling development., Of 10 candidate genes, two of them (Glyma.04G122400 and Glyma.18G183600) could possibly affect epicotyl length elongation. These results indicate the genetic basis of EL and provides a valuable basis for specific functional studies of epicotyl traits. Frontiers Media S.A. 2022-11-14 /pmc/articles/PMC9704727/ /pubmed/36452100 http://dx.doi.org/10.3389/fpls.2022.1033120 Text en Copyright © 2022 Hong, Li, Chen, Wang, Wang, Guo, Gao, Ren, Yuan, Han and Qiu 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
Hong, Huilong
Li, Mei
Chen, Yijie
Wang, Haorang
Wang, Jun
Guo, Bingfu
Gao, Huawei
Ren, Honglei
Yuan, Ming
Han, Yingpeng
Qiu, Lijuan
Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title_full Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title_fullStr Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title_full_unstemmed Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title_short Genome-wide association studies for soybean epicotyl length in two environments using 3VmrMLM
title_sort genome-wide association studies for soybean epicotyl length in two environments using 3vmrmlm
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9704727/
https://www.ncbi.nlm.nih.gov/pubmed/36452100
http://dx.doi.org/10.3389/fpls.2022.1033120
work_keys_str_mv AT honghuilong genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT limei genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT chenyijie genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT wanghaorang genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT wangjun genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT guobingfu genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT gaohuawei genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT renhonglei genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT yuanming genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT hanyingpeng genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm
AT qiulijuan genomewideassociationstudiesforsoybeanepicotyllengthintwoenvironmentsusing3vmrmlm