首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of a single gene for seed coat impermeability in soybean PI 594619
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Identification of a single gene for seed coat impermeability in soybean PI 594619

机译:大豆PI 594619的种皮不渗透性单一基因的鉴定

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Inheritance studies and molecular mapping identified a single dominant gene that conditions seed coat impermeability in soybean PI 594619. High temperatures during seed fill increase the occurrence of soybeans with impermeable seed coat, which is associated with non-uniform and delayed germination and emergence. This can be an issue in soybean production areas with excessively high-temperature environments. The objectives of the present study were to investigate the inheritance of impermeable seed coat under a high-temperature environment in the midsouthern United States and to map the gene(s) that affect this trait in a germplasm line with impermeable seed coat (PI 594619). Crosses were made between PI 594619 and an accession with permeable seed coat at Stoneville, MS in 2008. The parental lines and the segregating populations from reciprocal crosses were grown in Stoneville in 2009. Ninety-nine F-2:3 families and parents were also grown at Stoneville, MS in 2011. Seeds were assayed for percent impermeable seed coat using the standard germination test. Genetic analysis of the F-2 populations and F-2:3 families indicated that seed coat impermeability in PI 594619 is controlled by a single major gene, with impermeable seed coat being dominant to permeable seed coat. Molecular mapping positioned this gene on CHR 2 between markers Sat_202 and Satt459. The designation of Isc (impermeable seed coat) for this single gene has been approved by the Soybean Genetics Committee. Selection of the recessive form (isc) may be important in developing cultivars with permeable seed coat for high-heat production environments. The single-gene nature of impermeable seed coat may also have potential for being utilized in reducing seed damage caused by weathering and mold
机译:遗传研究和分子作图确定了一个单一的显性基因,该基因可调节大豆PI 594619中种皮的不渗透性。种子灌浆期间的高温增加了种皮不透性的大豆的发生,这与发芽不均匀和延迟有关。在温度过高的大豆产区,这可能是一个问题。本研究的目的是调查美国中南部高温环境下不透水种皮的遗传,并在不透水种皮的种质系中绘制影响该性状的基因图谱(PI 594619) 。在PI 594619和MS于2008年在MS的Stoneville进行杂交后,于2009年在Stoneville种植了亲本系和对等杂交的亲缘种群。99个F-2:3家庭和父母也于2011年在美国马里兰州的斯托克维尔(Stoneville)种植。使用标准萌发测试法分析种子的不渗透种皮百分比。对F-2种群和F-2:3家族的遗传分析表明,PI 594619中的种皮不透性受单个主要基因控制,不可渗透的种皮主要是可渗透的种皮。分子作图将该基因定位在标记Sat_202和Satt459之间的CHR 2上。大豆遗传委员会已批准为该单一基因指定Isc(不渗透种皮)。隐性形式(isc)的选择对于开发具有高热量生产环境的可渗透种皮的品种可能很重要。不可渗透种皮的单基因性质也可能具有减少风化和霉菌引起的种子损害的潜力。

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