美国陆地棉(Gossypium hirsutum L.)纤维质量性状的全基因组关联研究。

IF 4.4 1区 农林科学 Q1 AGRONOMY Theoretical and Applied Genetics Pub Date : 2024-09-03 DOI:10.1007/s00122-024-04717-7
S Anjan Gowda, Hui Fang, Priyanka Tyagi, Fred Bourland, Jane Dever, Benjamin Todd Campbell, Jinfa Zhang, Abdelraheem Abdelraheem, Shilpa Sood, Don C Jones, Vasu Kuraparthy
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摘要

关键信息:在一个精英多样性小组中进行的全球基因组研究对 10 种环境进行了评估,确定了调控六种纤维质量性状的基因组区域,从而促进了基因组学辅助育种和陆地棉基因的发现。本研究在美国棉花带的 10 个环境中评估了由 348 个陆地棉品种组成的精英多样性面板,并使用 cottonSNP63K 阵列对其进行了基因分型,从而对六个纤维品质性状进行了全基因组关联研究。所有纤维质量性状,包括上半部平均长度(UHML:mm)、纤维强度(FS:g tex-1)、纤维均匀度(FU:%)、纤维伸长率(FE:%)、微米值(MIC)和短纤维含量(SFC:%),都显示出较高的广义遗传率(> 60%)。除 FE 外,所有性状都表现出较高的基因组遗传率。UHML、FS和FU之间均呈正相关,而与FE、MIC和SFC呈负相关。这六个性状的 GWAS 发现了 380 个显著的标记-性状关联(MTAs),包括 30 个基因组区域上的 143 个 MTAs。这 30 个基因组区域包括至少在三个环境中发现的 MTAs,其中 23 个是新的关联。这30个基因组区域中的MTA所解释的表型变异从6.68%到11.42%不等。大多数纤维质量相关基因组区域都绘制在D亚基因组中。此外,这项研究还证实了染色体 D11(UHML、FS 和 FU)上的多效应区,并在 D04(FU、SFC)、D05(UHML、FU 和 D06 UHML、FU)上发现了新的共定位区。标记单倍型分析确定了具有高性状值的纤维质量相关基因组区域的优良组合(UHML = 32.34 mm;FS = 32.73 g tex-1;FE = 6.75%)。本研究中描述的性状、单体型组合和候选基因信息的基因组分析有助于利用遗传多样性对棉花纤维品质性状进行有针对性的遗传改良和基因发掘。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Genome-wide association study of fiber quality traits in US upland cotton (Gossypium hirsutum L.).

Key message: A GWAS in an elite diversity panel, evaluated across 10 environments, identified genomic regions regulating six fiber quality traits, facilitating genomics-assisted breeding and gene discovery in upland cotton. In this study, an elite diversity panel of 348 upland cotton accessions was evaluated in 10 environments across the US Cotton Belt and genotyped with the cottonSNP63K array, for a genome-wide association study of six fiber quality traits. All fiber quality traits, upper half mean length (UHML: mm), fiber strength (FS: g tex-1), fiber uniformity (FU: %), fiber elongation (FE: %), micronaire (MIC) and short fiber content (SFC: %), showed high broad-sense heritability (> 60%). All traits except FE showed high genomic heritability. UHML, FS and FU were all positively correlated with each other and negatively correlated with FE, MIC and SFC. GWAS of these six traits identified 380 significant marker-trait associations (MTAs) including 143 MTAs on 30 genomic regions. These 30 genomic regions included MTAs identified in at least three environments, and 23 of them were novel associations. Phenotypic variation explained for the MTAs in these 30 genomic regions ranged from 6.68 to 11.42%. Most of the fiber quality-associated genomic regions were mapped in the D-subgenome. Further, this study confirmed the pleiotropic region on chromosome D11 (UHML, FS and FU) and identified novel co-localized regions on D04 (FU, SFC), D05 (UHML, FU, and D06 UHML, FU). Marker haplotype analysis identified superior combinations of fiber quality-associated genomic regions with high trait values (UHML = 32.34 mm; FS = 32.73 g tex-1; FE = 6.75%). Genomic analyses of traits, haplotype combinations and candidate gene information described in the current study could help leverage genetic diversity for targeted genetic improvement and gene discovery for fiber quality traits in cotton.

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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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