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Characterization of QTL for oil content in maize kernel.

机译:玉米籽粒含油量的QTL表征。

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摘要

Kernel oil content in maize is a complex quantitative trait. Phenotypic variation in kernel oil content can be dissected into its component traits such as oil metabolism and physical characteristics of the kernel, including embryo size and embryo-to-endosperm weight ratio (EEWR). To characterize quantitative trait loci (QTL) for kernel oil content, a recombinant inbred population derived from a cross between normal line B73 and high-oil line By804 was genotyped using 228 molecular markers and phenotyped for kernel oil content and its component traits [embryo oil content, embryo oil concentration, EEWR, embryo volume, embryo width, embryo length, and embryo width-to-length ratio (EWLR)]. A total of 58 QTL were identified for kernel oil content and its component traits in 26 genomic regions across all chromosomes. Eight main-effect QTL were identified for kernel oil content, embryo oil content, embryo oil concentration, EEWR, embryo weight, and EWLR, each accounting for over 10% of the phenotypic variation in six genomic regions. Over 90% of QTL identified for kernel oil content co-localized with QTL for component traits, validating their molecular contribution to kernel oil content. On chromosome 1, the QTL that had the largest effect on kernel oil content (qKO1-1) was associated with embryo width; on chromosome 9, the QTL for kernel oil content (qKO9) was related to EEWR (qEEWR9). Embryo oil concentration and embryo width were identified as the most important component traits controlling the second largest QTL for kernel oil content on chromosome 6 (qKO6) and a minor QTL for kernel oil content on chromosome 5 (qKO5-2), respectively. The dissection of kernel oil QTL will facilitate future cloning and/or functional validation of kernel oil content, and help to elucidate the genetic basis of kernel oil content in maize.
机译:玉米仁油含量是一个复杂的定量特征。籽粒含油量的表型变化可以分为其组成特征,例如油类代谢和籽粒的物理特性,包括胚胎大小和胚与胚乳的重量比(EEWR)。为了表征籽粒油含量的数量性状基因座(QTL),使用228个分子标记对来自正常品系B73和高油品系By804杂交的重组近交种群进行基因分型,并对籽粒油含量及其组成性状进行表型分析。含量,胚芽油浓度,EEWR,胚芽体积,胚芽宽度,胚芽长度和胚芽宽长比(EWLR)]。在所有染色体的26个基因组区域中,共确定了58个QTL的籽仁油含量及其组成特征。确定了八个主要影响QTL,用于籽粒油含量,胚芽油含量,胚芽油浓度,EEWR,胚芽重量和EWLR,每个占六个基因组区域表型变异的10%以上。超过90%的QTL鉴定出的籽粒油含量与QTL共同定位于成分性状,从而验证了其对籽粒含油量的分子贡献。在1号染色体上,对籽粒含油量(qKO1-1)影响最大的QTL与胚宽有关。在9号染色体上,籽粒含油量(qKO9)的QTL与EEWR(qEEWR9)有关。胚油浓度和胚宽被确定为控制染色体6上仁油含量第二大QTL(qKO6)和控制染色体5上仁油含量次要QTL(qKO5-2)的最重要成分。籽粒油QTL的解剖将促进未来籽粒油含量的克隆和/或功能验证,并有助于阐明玉米籽粒油含量的遗传基础。

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