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Mapping quantitative trait loci for yield, yield components and morphological traits in an advanced backcross population between Oryza rufipogon and the Oryza sativa cultivar Jefferson

机译:在Oryza rufipogon和Oryza sativa品种Jefferson之间的先进回交种群中绘制数量性状基因座,以了解产量,产量组成和形态性状

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An advanced backcross population between an accession of Oryza rufipogon (IRGC 105491) and the U.S. cultivar Jefferson (Oryza sativa ssp. japonica) was developed to identify quantitative trait loci (QTLs) for yield, yield components and morphological traits. The genetic linkage map generated for this population consisted of 153 SSR and RFLP markers with an average interval size of 10.3 cM. Thirteen traits were examined, nine of which were measured in multiple environments. Seventy-six QTLs above an experiment-wise significance threshold of P < 0.01 (corresponding to an interval mapping LOD > 3.6 or a composite interval mapping LOD > 3.9) were identified. For the traits measured in multiple environments, 47% of the QTLs were detected in at least two environments. The O. rufipogon allele was favorable for 53% of the yield and yield component QTLs, including loci for yield, grains per panicle, panicle length, and grain weight. Morphological traits related to the domestication process and/or weedy characteristics, including plant height, shattering, tiller type and awns, were found clustered on chromosomes 1 and 4. Comparisons to previous studies involving wild × cultivated crosses revealed O. rufipogon alleles with stable effects in multiple genetic backgrounds and environments, several of which have not been detected in studies between Oryza sativa cultivars, indicating potentially novel alleles from O. rufipogon. Some O. rufipogon-derived QTLs, however, were in similar regions as previously reported QTLs from Oryza sativa cultivars, providing evidence for conservation of these QTLs across the Oryza genus. In addition, several QTLs for grain weight, plant height, and flowering time were localized to putative homeologous regions in maize where QTLs for these traits have been previously reported, supporting the hypothesis of functional conservation of QTLs across the grasses.
机译:开发了在Oryza rufipogon(IRGC 105491)与美国品种Jefferson(Oryza sativa ssp.japonica)之间的先进回交种群,以鉴定产量,产量组成和形态性状的数量性状基因座(QTL)。为该种群产生的遗传连锁图谱由153个SSR和RFLP标记组成,平均间隔大小为10.3 cM。检查了13个性状,其中9个是在多种环境中测量的。确定了超过实验意义上的阈值P <0.01(对应于区间映射LOD> 3.6或复合区间映射LOD> 3.9)的76个QTL。对于在多个环境中测得的特征,至少在两个环境中检测到47%的QTL。麦冬等位基因对53%的产量和产量构成QTLs有利,包括产量位点,每穗粒数,穗长和粒重。发现与驯化过程和/或杂草特征有关的形态特征,包括植物高度,破碎,分till类型和芒,都集中在1号和4号染色体上。与先前有关野生×栽培杂交的研究比较表明,红景天等位基因具有稳定的效应。在多种遗传背景和环境中,其中一些在水稻品种之间的研究中尚未发现,这表明潜在的来自O. rufipogon的等位基因。然而,一些源自麦冬的QTL与先前报道的来自稻品种的QTL位于相似的区域,从而提供了在整个Oryza属中保存这些QTL的证据。此外,一些关于粒重,株高和开花时间的QTL位于玉米的假定同源区域,以前已经报道了这些性状的QTL,支持了整个草丛中QTL功能保守的假设。

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