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两个优良自交系间玉米杂交种杂种优势的经典遗传与数量性状位点分析。

Classical genetic and quantitative trait loci analyses of heterosis in a maize hybrid between two elite inbred lines.

作者信息

Frascaroli Elisabetta, Canè Maria Angela, Landi Pierangelo, Pea Giorgio, Gianfranceschi Luca, Villa Marzio, Morgante Michele, Pè Mario Enrico

机构信息

Department of Agroenvironmental Sciences and Technologies, University of Bologna, 40127 Bologna, Italy.

出版信息

Genetics. 2007 May;176(1):625-44. doi: 10.1534/genetics.106.064493. Epub 2007 Mar 4.

Abstract

The exploitation of heterosis is one of the most outstanding advancements in plant breeding, although its genetic basis is not well understood yet. This research was conducted on the materials arising from the maize single cross B73 x H99 to study heterosis by procedures of classical genetic and quantitative trait loci (QTL) analyses. Materials were the basic generations, the derived 142 recombinant inbred lines (RILs), and the three testcross populations obtained by crossing the 142 RILs to each parent and their F(1). For seedling weight (SW), number of kernels per plant (NK), and grain yield (GY), heterosis was >100% and the average degree of dominance was >1. Epistasis was significant for SW and NK but not for GY. Several QTL were identified and in most cases they were in the additive-dominance range for traits with low heterosis and mostly in the dominance-overdominance range for plant height (PH), SW, NK, and GY. Only a few QTL with digenic epistasis were identified. The importance of dominance effects was confirmed by highly significant correlations between heterozygosity level and phenotypic performance, especially for GY. Some chromosome regions presented overlaps of overdominant QTL for SW, PH, NK, and GY, suggesting pleiotropic effects on overall plant vigor.

摘要

杂种优势的利用是植物育种领域最显著的进展之一,尽管其遗传基础尚未完全明晰。本研究以玉米单交种B73×H99的衍生材料为对象,通过经典遗传学和数量性状基因座(QTL)分析方法来研究杂种优势。材料包括基础世代、衍生的142个重组自交系(RIL),以及通过将142个RIL与每个亲本及其F1杂交获得的三个测交群体。对于幼苗重量(SW)、单株籽粒数(NK)和籽粒产量(GY),杂种优势大于100%,平均显性度大于1。上位性对SW和NK有显著影响,但对GY无显著影响。鉴定出了几个QTL,在大多数情况下,对于杂种优势较低的性状,它们处于加性-显性范围内,而对于株高(PH)、SW、NK和GY,大多处于显性-超显性范围内。仅鉴定出少数具有双基因上位性的QTL。杂合性水平与表型表现之间的高度显著相关性证实了显性效应的重要性,尤其是对于GY。一些染色体区域在SW、PH、NK和GY的超显性QTL上存在重叠,表明对整体植株活力有 pleiotropic 效应。 (注:“pleiotropic”未找到准确中文对应,保留英文)

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