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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >TeoNAM: A Nested Association Mapping Population for Domestication and Agronomic Trait Analysis in Maize
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TeoNAM: A Nested Association Mapping Population for Domestication and Agronomic Trait Analysis in Maize

机译:泰诺姆:玉米驯化和农艺特征分析的嵌套关联映射群体

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摘要

Recombinant inbred lines (RILs) are an important resource for mapping genes controlling complex traits in many species. While RIL populations have been developed for maize, a maize RIL population with multiple teosinte inbred lines as parents has been lacking. Here, we report a teosinte nested association mapping (TeoNAM) population, derived from crossing five teosinte inbreds to the maize inbred line W22. The resulting 1257 BC1S4 RILs were genotyped with 51,544 SNPs, providing a high-density genetic map with a length of 1540 cM. On average, each RIL is 15% homozygous teosinte and 8% heterozygous. We performed joint linkage mapping (JLM) and a genome-wide association study (GWAS) for 22 domestication and agronomic traits. A total of 255 QTL from JLM were identified, with many of these mapping near known genes or novel candidate genes. TeoNAM is a useful resource for QTL mapping for the discovery of novel allelic variation from teosinte. TeoNAM provides the first report that PROSTRATE GROWTH1, a rice domestication gene, is also a QTL associated with tillering in teosinte and maize. We detected multiple QTL for flowering time and other traits for which the teosinte allele contributes to a more maize-like phenotype. Such QTL could be valuable in maize improvement.
机译:重组近交系(RILS)是用于在许多物种中控制复杂性状的基因的重要资源。虽然已经为玉米制定了RIL人口,但玉米RIL人口与父母缺乏多种TeoSinte自交系。在这里,我们举报了Teosinte嵌套关联映射(Teonam)人口,从横穿五个Teosinte对玉米自交系W22的跨交。得到的1257bc1s4 rils与51,544个SNP进行基因分型,提供长度为1540厘米的高密度遗传图。平均而言,每个Ril是15%纯合的Teosinte和8%杂合。我们对22个驯化和农艺性状进行了联合联系地图(JLM)和基因组关联研究(GWAS)。鉴定了总共255例QTL,其中许多映射在已知的基因或新颖的候选基因附近。 Teonam是QTL映射的有用资源,用于发现Teosinte的新型等位基因变异。 Teonam提供了第一份令人沮丧的报告,其增长1,水稻驯化基因,也是与Teosinte和玉米分蘖相关的QTL。我们检测到用于开花时间的多个QTL和Teosinte等位基因的其他特征有助于更具玉米状表型。这种QTL可能在玉米改善方面有价值。

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