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小麦杂交育种及杂种优势群构建的统一框架

A unified framework for hybrid breeding and the establishment of heterotic groups in wheat.

作者信息

Boeven Philipp H G, Longin C Friedrich H, Würschum Tobias

机构信息

State Plant Breeding Institute, University of Hohenheim, 70593, Stuttgart, Germany.

出版信息

Theor Appl Genet. 2016 Jun;129(6):1231-45. doi: 10.1007/s00122-016-2699-x. Epub 2016 Mar 8.

Abstract

Global wheat genetic diversity can be used in a unified framework to support and accelerate hybrid breeding and the development of heterotic groups in wheat. Hybrid wheat breeding has great potential to increase the global wheat grain yield level particularly in view of the increasing abiotic and biotic stress challenges as well as variable climatic conditions. For the long-term success of hybrid wheat breeding and the maximum exploitation of heterosis, high-yielding heterotic patterns must be established. Here, we propose a unified framework for hybrid breeding and the establishment of heterotic groups in autogamous crops and exemplify it for hybrid wheat breeding in Germany. A key component is the establishment of genetic distance between heterotic groups and in this context, we assessed genetic diversity in a global collection of 1110 winter wheat varieties released during the past decades in 35 countries but with a focus on European origin. Our analyses revealed the absence of major population structure but nevertheless suggest genetically distinct subgroups with potential for hybrid wheat breeding. Taking our molecular results and additional phenotypic data together, we propose how global genetic diversity can be used to accelerate and support reciprocal recurrent selection for the development of genetically distinct heterotic groups in hybrid wheat breeding.

摘要

全球小麦遗传多样性可用于一个统一框架,以支持和加速小麦杂交育种及杂种优势群的发展。杂交小麦育种在提高全球小麦籽粒产量水平方面具有巨大潜力,特别是考虑到日益增加的非生物和生物胁迫挑战以及多变的气候条件。为了杂交小麦育种的长期成功以及杂种优势的最大利用,必须建立高产杂种优势模式。在此,我们提出了一个用于自花授粉作物杂交育种和杂种优势群建立的统一框架,并以德国的杂交小麦育种为例进行说明。一个关键组成部分是杂种优势群之间遗传距离的建立,在此背景下,我们评估了来自35个国家在过去几十年间发布的1110个冬小麦品种的全球收集品中的遗传多样性,但重点是欧洲起源的品种。我们的分析揭示不存在主要的群体结构,但仍表明存在具有杂交小麦育种潜力的遗传上不同的亚群。综合我们的分子结果和其他表型数据,我们提出了如何利用全球遗传多样性来加速和支持杂交小麦育种中遗传上不同的杂种优势群的发展的互作轮回选择。

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