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Identification and Fine Mapping of a White Husk Gene in Barley (Hordeum vulgare L.)

机译:大麦(Hordeum vulgare L.)白壳基因的鉴定和精细定位

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摘要

Barley is the only crop in the Poaceae family with adhering husks at maturity. The color of husk at barely development stage could influence the agronomic traits and malting qualities of grains. A barley mutant with a white husk was discovered from the malting barley cultivar Supi 3 and designated wh (white husk). Morphological changes and the genetics of white husk barley were investigated. Husks of the mutant were white at the heading and flowering stages but yellowed at maturity. The diastatic power and α-amino nitrogen contents also significantly increased in wh mutant. Transmission electron microscopy examination showed abnormal chloroplast development in the mutant. Genetic analysis of F2 and BC1F1 populations developed from a cross of wh and Yangnongpi 5 (green husk) showed that the white husk was controlled by a single recessive gene (wh). The wh gene was initially mapped between 49.64 and 51.77 cM on chromosome 3H, which is syntenic with rice chromosome 1 where a white husk gene wlp1 has been isolated. The barley orthologous gene of wlp1 was sequenced from both parents and a 688 bp deletion identified in the wh mutant. We further fine-mapped the wh gene between SSR markers Bmac0067 and Bmag0508a with distances of 0.36 cM and 0.27 cM in an F2 population with 1115 individuals of white husk. However, the wlp1 orthologous gene was mapped outside the interval. New candidate genes were identified based on the barley genome sequence.
机译:大麦是禾本科家族中唯一具有成熟果壳的农作物。勉强发育阶段的稻壳颜色可能影响谷物的农艺性状和麦芽品质。从麦芽大麦品种Supi 3中发现了一个带有白色外壳的大麦突变体,并命名为wh(白色外壳)。研究了白大麦的形态变化和遗传。突变体的果壳在抽穗和开花期为白色,但在成熟时发黄。在白色突变体中,抗凝能力和α-氨基氮含量也显着增加。透射电子显微镜检查显示该突变体中叶绿体发育异常。由Wh和Yangnongpi 5(绿色果壳)杂交形成的F2和BC1F1种群的遗传分析表明,白色果壳由单个隐性基因(wh)控制。 wh基因最初位于3H染色体上49.64至51.77 cM之间,与水稻1号染色体同义,其中已分离出白色稻壳基因wlp1。从两个亲本对wlp1的大麦直系同源基因进行测序,并在wh突变体中鉴定出一个688 bp的缺失。我们进一步在1115个白色稻壳个体的F2群体中,将SSR标记Bmac0067和Bmag0508a之间的wh基因精细映射为0.36 cM和0.27 cM。但是,wlp1直系同源基因被映射到该间隔之外。根据大麦基因组序列确定了新的候选基因。

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