Cargando…

Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton

Upland cotton is an important allotetraploid crop that provides both natural fiber for the textile industry and edible vegetable oil for the food or feed industry. To better understand the genetic mechanism that regulates the biosynthesis of storage oil in cottonseed, we identified the genes harbore...

Descripción completa

Detalles Bibliográficos
Autores principales: Gong, Juwu, Peng, Yan, Yu, Jiwen, Pei, Wenfeng, Zhang, Zhen, Fan, Daoran, Liu, Linjie, Xiao, Xianghui, Liu, Ruixian, Lu, Quanwei, Li, Pengtao, Shang, Haihong, Shi, Yuzhen, Li, Junwen, Ge, Qun, Liu, Aiying, Deng, Xiaoying, Fan, Senmiao, Pan, Jingtao, Chen, Quanjia, Yuan, Youlu, Gong, Wankui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046884/
https://www.ncbi.nlm.nih.gov/pubmed/35521543
http://dx.doi.org/10.1016/j.csbj.2022.04.012
_version_ 1784695612631941120
author Gong, Juwu
Peng, Yan
Yu, Jiwen
Pei, Wenfeng
Zhang, Zhen
Fan, Daoran
Liu, Linjie
Xiao, Xianghui
Liu, Ruixian
Lu, Quanwei
Li, Pengtao
Shang, Haihong
Shi, Yuzhen
Li, Junwen
Ge, Qun
Liu, Aiying
Deng, Xiaoying
Fan, Senmiao
Pan, Jingtao
Chen, Quanjia
Yuan, Youlu
Gong, Wankui
author_facet Gong, Juwu
Peng, Yan
Yu, Jiwen
Pei, Wenfeng
Zhang, Zhen
Fan, Daoran
Liu, Linjie
Xiao, Xianghui
Liu, Ruixian
Lu, Quanwei
Li, Pengtao
Shang, Haihong
Shi, Yuzhen
Li, Junwen
Ge, Qun
Liu, Aiying
Deng, Xiaoying
Fan, Senmiao
Pan, Jingtao
Chen, Quanjia
Yuan, Youlu
Gong, Wankui
author_sort Gong, Juwu
collection PubMed
description Upland cotton is an important allotetraploid crop that provides both natural fiber for the textile industry and edible vegetable oil for the food or feed industry. To better understand the genetic mechanism that regulates the biosynthesis of storage oil in cottonseed, we identified the genes harbored in the major quantitative trait loci/nucleotides (QTLs/QTNs) of kernel oil content (KOC) in cottonseed via both multiple linkage analyses and genome-wide association studies (GWAS). In ‘CCRI70′ RILs, six stable QTLs were simultaneously identified by linkage analysis of CHIP and SLAF-seq strategies. In ‘0-153′ RILs, eight stable QTLs were detected by consensus linkage analysis integrating multiple strategies. In the natural panel, thirteen and eight loci were associated across multiple environments with two algorithms of GWAS. Within the confidence interval of a major common QTL on chromosome 3, six genes were identified as participating in the interaction network highly correlated with cottonseed KOC. Further observations of gene differential expression showed that four of the genes, LtnD, PGK, LPLAT1, and PAH2, formed hub genes and two of them, FER and RAV1, formed the key genes in the interaction network. Sequence variations in the coding regions of LtnD, FER, PGK, LPLAT1, and PAH2 genes may support their regulatory effects on oil accumulation in mature cottonseed. Taken together, clustering of the hub genes in the lipid biosynthesis interaction network provides new insights to understanding the mechanism of fatty acid biosynthesis and TAG assembly and to further genetic improvement projects for the KOC in cottonseeds.
format Online
Article
Text
id pubmed-9046884
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Research Network of Computational and Structural Biotechnology
record_format MEDLINE/PubMed
spelling pubmed-90468842022-05-04 Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton Gong, Juwu Peng, Yan Yu, Jiwen Pei, Wenfeng Zhang, Zhen Fan, Daoran Liu, Linjie Xiao, Xianghui Liu, Ruixian Lu, Quanwei Li, Pengtao Shang, Haihong Shi, Yuzhen Li, Junwen Ge, Qun Liu, Aiying Deng, Xiaoying Fan, Senmiao Pan, Jingtao Chen, Quanjia Yuan, Youlu Gong, Wankui Comput Struct Biotechnol J Research Article Upland cotton is an important allotetraploid crop that provides both natural fiber for the textile industry and edible vegetable oil for the food or feed industry. To better understand the genetic mechanism that regulates the biosynthesis of storage oil in cottonseed, we identified the genes harbored in the major quantitative trait loci/nucleotides (QTLs/QTNs) of kernel oil content (KOC) in cottonseed via both multiple linkage analyses and genome-wide association studies (GWAS). In ‘CCRI70′ RILs, six stable QTLs were simultaneously identified by linkage analysis of CHIP and SLAF-seq strategies. In ‘0-153′ RILs, eight stable QTLs were detected by consensus linkage analysis integrating multiple strategies. In the natural panel, thirteen and eight loci were associated across multiple environments with two algorithms of GWAS. Within the confidence interval of a major common QTL on chromosome 3, six genes were identified as participating in the interaction network highly correlated with cottonseed KOC. Further observations of gene differential expression showed that four of the genes, LtnD, PGK, LPLAT1, and PAH2, formed hub genes and two of them, FER and RAV1, formed the key genes in the interaction network. Sequence variations in the coding regions of LtnD, FER, PGK, LPLAT1, and PAH2 genes may support their regulatory effects on oil accumulation in mature cottonseed. Taken together, clustering of the hub genes in the lipid biosynthesis interaction network provides new insights to understanding the mechanism of fatty acid biosynthesis and TAG assembly and to further genetic improvement projects for the KOC in cottonseeds. Research Network of Computational and Structural Biotechnology 2022-04-15 /pmc/articles/PMC9046884/ /pubmed/35521543 http://dx.doi.org/10.1016/j.csbj.2022.04.012 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Gong, Juwu
Peng, Yan
Yu, Jiwen
Pei, Wenfeng
Zhang, Zhen
Fan, Daoran
Liu, Linjie
Xiao, Xianghui
Liu, Ruixian
Lu, Quanwei
Li, Pengtao
Shang, Haihong
Shi, Yuzhen
Li, Junwen
Ge, Qun
Liu, Aiying
Deng, Xiaoying
Fan, Senmiao
Pan, Jingtao
Chen, Quanjia
Yuan, Youlu
Gong, Wankui
Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title_full Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title_fullStr Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title_full_unstemmed Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title_short Linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
title_sort linkage and association analyses reveal that hub genes in energy-flow and lipid biosynthesis pathways form a cluster in upland cotton
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046884/
https://www.ncbi.nlm.nih.gov/pubmed/35521543
http://dx.doi.org/10.1016/j.csbj.2022.04.012
work_keys_str_mv AT gongjuwu linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT pengyan linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT yujiwen linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT peiwenfeng linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT zhangzhen linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT fandaoran linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT liulinjie linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT xiaoxianghui linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT liuruixian linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT luquanwei linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT lipengtao linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT shanghaihong linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT shiyuzhen linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT lijunwen linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT gequn linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT liuaiying linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT dengxiaoying linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT fansenmiao linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT panjingtao linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT chenquanjia linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT yuanyoulu linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton
AT gongwankui linkageandassociationanalysesrevealthathubgenesinenergyflowandlipidbiosynthesispathwaysformaclusterinuplandcotton