首页> 外文期刊>The Indian journal of genetics & plant breeding >Quantitative trait loci for mature embryo culturability traits from Yuanjiang common wild rice (Oryza rufipogon Griff.)
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Quantitative trait loci for mature embryo culturability traits from Yuanjiang common wild rice (Oryza rufipogon Griff.)

机译:jiang江普通野生稻(Oryza rufipogon Griff。)成熟胚可培养性状的数量性状基因座

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摘要

Low callus subculture and regeneration ability are the main factors restricting the genetic transformation potential of indica rice varieties. In the present study, an Oryza rufipogon introgression line population in the background of indica cultivar 93-11 was used to evaluate mature embryo culturability after callus induction, two-round of subculture, and differentiation of culture. A total of 25 quantitative trait loci related to tissue culturability were detected that included QTLs for callus browning index after one- and two-round subculture and callus regeneration rate. Among them, QTLs detected at the RM335 locus on chromosome 4 were found to control callus browning index after one- and two-round subculture and accounted for 11 and 15 % of the phenotypic variation. QTLs detected at the RM341 locus on chromosome 2 and at the RM8206 on chromosome 9 were found to control regeneration rate with 10 % contributions to the observed variation, respectively. The alleles of O. rufipogon were found to reduce callus browning and were possibly involved in the improvement of callus differentiation ability. Six introgression lines with excellent culturability characteristics were identified. It is expected that these lines will be useful materials for genetic transformation and fine mapping of culturability-trait.
机译:愈伤组织继代培养和再生能力低是限制of稻品种遗传转化潜力的主要因素。在本研究中,以in稻品种93-11为背景的Oryza rufipogon渗入系种群用于评估愈伤组织诱导,两轮继代培养和培养分化后的成熟胚胎可培养性。总共检测到25个与组织可培养性相关的数量性状基因座,其中包括一轮和两轮继代培养后愈伤组织褐变指数的QTL和愈伤组织的再生速率。其中,在第1和第2轮继代培养后,发现在第4号染色体上的RM335位点检测到的QTL控制愈伤组织褐变指数,分别占表型变异的11%和15%。发现在2号染色体上的RM341位点和9号染色体上的RM8206位点检测到的QTL控制再生速率,对观察到的变异分别贡献10%。发现红景天的等位基因减少了愈伤组织褐变,并可能参与了愈伤组织分化能力的提高。确定了六个具有优良培养特性的渗入系。预期这些品系将对遗传转化和可培养性状的精细定位有用。

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