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欧洲优质冬小麦花药外露的遗传与物理图谱分析

Genetic and physical mapping of anther extrusion in elite European winter wheat.

作者信息

Muqaddasi Quddoos H, Pillen Klaus, Plieske Jörg, Ganal Martin W, Röder Marion S

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Stadt Seeland OT Gatersleben, Germany.

Institute of Agricultural and Nutritional Sciences, Martin-Luther-University Halle-Wittenberg, Halle, Germany.

出版信息

PLoS One. 2017 Nov 9;12(11):e0187744. doi: 10.1371/journal.pone.0187744. eCollection 2017.

Abstract

The production and cultivation of hybrid wheat is a possible strategy to close the yield gap in wheat. Efficient hybrid wheat seed production largely depends on high rates of cross-pollination which can be ensured through high anther extrusion (AE) by male parental lines. Here, we report the AE capacity and elucidate its genetics in 514 elite European winter wheat varieties via genome-wide association studies (GWAS). We observed a wide range of variation among genotypes and a high heritability (0.80) for AE. The whole panel was genotyped with the 35k Affymetrix and 90k iSELECT single nucleotide polymorphism (SNP) arrays plus Ppd-D1, Rht-B1 and Rht-D1 candidate markers. GWAS revealed 51 marker-trait associations (MTAs) on chromosomes 1A, 1B, 2A, 4D and 5B, with Rht-D1 (4D) being the most significant marker. Division of whole panel according to the Rht-D1 genotype resulted in 212 and 294 varieties harboring Rht-D1a and Rht-D1b allele, respectively. The presence of Rht-D1a compared to Rht-D1b (mutant) allele had a large phenotypic influence on AE resulting in its ~17% increase. GWAS performed on the sub-panels detected novel MTAs on chromosomes 2D, 3B and 6A with increased phenotypic variance imparted by individual markers. Our study shows that AE is a highly quantitative trait and wild type Rht-D1a allele greatly improves AE. Moreover, demarcating the quantitative trait loci regions based on intra-chromosomal linkage disequilibrium revealed AE's candidate genes/genomic regions. Understanding the genetics of AE in elite European wheat and utilizing the linked markers in breeding programs can help to enhance cross-pollination for better exploitation of heterosis.

摘要

杂交小麦的生产与培育是缩小小麦产量差距的一种可行策略。高效的杂交小麦种子生产很大程度上依赖于高异花授粉率,而这可以通过雄性亲本系的高花药伸出率(AE)来确保。在此,我们通过全基因组关联研究(GWAS)报告了514个欧洲冬小麦优良品种的AE能力并阐明了其遗传特性。我们观察到基因型间存在广泛变异,且AE具有较高的遗传力(0.80)。使用35k Affymetrix和90k iSELECT单核苷酸多态性(SNP)阵列以及Ppd - D1、Rht - B1和Rht - D1候选标记对整个群体进行基因分型。GWAS揭示了在1A、1B、2A、4D和5B染色体上有51个标记 - 性状关联(MTA),其中Rht - D1(4D)是最显著的标记。根据Rht - D1基因型对整个群体进行划分,分别有212个和294个品种携带Rht - D1a和Rht - D1b等位基因。与Rht - D1b(突变)等位基因相比,Rht - D1a的存在对AE有很大的表型影响,导致其增加约17%。在子群体上进行的GWAS在2D、3B和6A染色体上检测到新的MTA,单个标记赋予了增加的表型变异。我们的研究表明,AE是一个高度多基因控制的性状,野生型Rht - D1a等位基因极大地提高了AE。此外,基于染色体内连锁不平衡划分数量性状位点区域揭示了AE的候选基因/基因组区域。了解欧洲优良小麦中AE的遗传特性并在育种计划中利用相关标记有助于提高异花授粉,从而更好地利用杂种优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b40b/5679578/8b4a0a271180/pone.0187744.g001.jpg

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