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首页> 外文期刊>Breeding science >Uzu, a barley semi-dwarf gene, suppresses plant regeneration in calli derived from immature embryos.
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Uzu, a barley semi-dwarf gene, suppresses plant regeneration in calli derived from immature embryos.

机译:大麦半矮基因Uzu抑制未成熟胚衍生的愈伤组织中的植物再生。

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摘要

Barley includes semi-dwarf varieties, called uzu, which are localized in parts of southwestern Japan, the southern Korea peninsula, and coastal areas of China. The uzu phenotype possesses dark green leaves and short coleoptiles, awns, and panicles. It is controlled by a single recessive gene: uzu. Uzu results from a mutation in the brassinosteroid receptor kinase gene (HvBRI1). Brassinosteroid synergistically acts with auxin on plant morphology, which is an important plant hormone for tissue culture. For this study, tissue culture traits, including callus growth and shoot regeneration capability, were examined in F2 populations derived from crosses between normal and uzu lines, and in isogenic lines for the uzu gene. The uzu genotype shows a lower percentage of shoot regeneration than the normal genotype in F2 populations and isogenic lines. The uzu gene negatively affects shoot regeneration. No significant differences were found in callus growth capability between uzu and normal genotypes. Uzu isogenic lines show higher sensitivity to exogenous auxin for callus initiation than normal lines, when immature embryos were incubated on media supplemented with several concentrations of 2,4-D under culture at higher temperature (25.C). Tissue culture traits of uzu might be regulated through cross-talk between brassinosteroid and auxin.
机译:大麦包括称为uzu的半矮变种,它们位于日本西南部,朝鲜半岛南部和中国沿海地区。 uzu表型具有深绿色的叶子和短的胚芽鞘,芒和穗状花序。它由单个隐性基因:uzu控制。 Uzu是由油菜素类固醇受体激酶基因(HvBRI1)的突变引起的。油菜素类固醇与生长素协同作用于植物形态,植物形态是组织培养的重要植物激素。在这项研究中,检查了正常和乌祖线之间杂交产生的F2群体以及乌祖基因的同基因系中的组织培养特性,包括愈伤组织的生长和枝条的再生能力。在F2群体和同基因系中,乌苏族基因型的芽再生百分比低于正常基因型。 uzu基因负面影响芽再生。在正常基因型和正常基因之间,愈伤组织的生长能力没有显着差异。当未成熟的胚胎在补充了数种浓度的2,4-D的培养基中于更高温度(25°C)下培养时,与正常品系相比,Uzu等基因品系对愈伤组织引发的外源生长素的敏感性更高。芸苔的组织培养特性可能是通过油菜素内酯与植物生长素之间的相互作用来调节的。

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