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Identification of quantitative trait loci for yield and yield components in an advanced backcross population derived from the Oryza sativa variety IR64 and the wild relative O. rufipogon

机译:鉴定数量性状基因座的产量和产量组成部分,该品种来自稻品种IR64和野生近缘红麦草(O. rufipogon)

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A BC2F2 population developed from an interspecific cross between Oryza sativa (cv IR64) and O. rufipogon (IRGC 105491) was used in an advanced backcross QTL analysis to identify and introduce agronomically useful genes from this wild relative into the cultivated gene pool. The objectives of this study were: (1) to identify putative yield and yield component QTLs that can be useful to improve the elite cultivar IR64; (2) to compare the QTLs within this study with previously reported QTLs in rice as the basis for identifying QTLs that are stable across different environments and genetic backgrounds; and (3) to compare the identified QTLs with previously reported QTLs from maize to examine the degree of QTL conservation across the grass family. Two hundred eighty-five families were evaluated in two field environments in Indonesia, with two replications each, for 12 agronomic traits. A total of 165 markers consisting of 131 SSRs and 34 RFLPs were used to construct the genetic linkage map. By employing interval mapping and composite interval mapping, 42 QTLs were identified. Despite its inferior performance, 33% of the QTL alleles originating from O. rufipogon had a beneficial effect for yield and yield components in the IR64 background. Twenty-two QTLs (53.4%) were located in similar regions as previously reported rice QTLs, suggesting the existence of stable QTLs across genetic backgrounds and environments. Twenty QTLs (47.6%) were exclusively detected in this study, uncovering potentially novel alleles from the wild, some of which might improve the performance of the tropical indica variety IR64. Additionally, several QTLs for plant height, grain weight, and flowering time detected in this study corresponded to homeologous regions in maize containing previously detected maize QTLs for these traits.
机译:从水稻(cv IR64)和红景天(IRGC 105491)之间的种间杂交产生的BC2 F2 种群用于高级回交QTL分析中,以鉴定和引入该野生植物的农学有用基因相对进入培养的基因库。这项研究的目的是:(1)确定可以用来改善优良品种IR64的推定产量和产量组成QTL; (2)将本研究中的QTL与以前报道的水稻QTL进行比较,以此作为识别在不同环境和遗传背景下稳定的QTL的基础; (3)将已鉴定的QTL与先前报道的玉米QTL进行比较,以检查整个草科的QTL保守程度。在印度尼西亚的两个田间环境中评估了285个家庭,每个家庭有12个农艺性状。总共165个由131个SSR和34个RFLP组成的标记用于构建遗传连锁图谱。通过使用间隔映射和复合间隔映射,确定了42个QTL。尽管其性能较差,但源自鲁菲麦草的QTL等位基因中有33%对IR64背景中的产量和产量成分具有有益的影响。 22个QTL位于与先前报道的稻米QTL相似的区域,这表明在遗传背景和环境中存在稳定的QTL。在这项研究中仅检测了20个QTL(47.6%),发现了野生的潜在新等位基因,其中一些可能会改善热带the稻品种IR64的性能。此外,在这项研究中检测到的几个关于株高,粒重和开花时间的QTL与玉米中的同源区域相对应,这些区域包含先前针对这些性状检测到的玉米QTL。

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