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小麦杂种优势利用:提高杂交小麦制种产量的技术。

Hybrid breeding in wheat: technologies to improve hybrid wheat seed production.

机构信息

Australian Centre for Plant Functional Genomics, School of Agriculture, Food and Wine, University of Adelaide, Waite Campus, Urrbrae, South Australia 5064, Australia.

出版信息

J Exp Bot. 2013 Dec;64(18):5411-28. doi: 10.1093/jxb/ert333. Epub 2013 Oct 31.

Abstract

Global food security demands the development and delivery of new technologies to increase and secure cereal production on finite arable land without increasing water and fertilizer use. There are several options for boosting wheat yields, but most offer only small yield increases. Wheat is an inbred plant, and hybrids hold the potential to deliver a major lift in yield and will open a wide range of new breeding opportunities. A series of technological advances are needed as a base for hybrid wheat programmes. These start with major changes in floral development and architecture to separate the sexes and force outcrossing. Male sterility provides the best method to block self-fertilization, and modifying the flower structure will enhance pollen access. The recent explosion in genomic resources and technologies provides new opportunities to overcome these limitations. This review outlines the problems with existing hybrid wheat breeding systems and explores molecular-based technologies that could improve the hybrid production system to reduce hybrid seed production costs, a prerequisite for a commercial hybrid wheat system.

摘要

全球粮食安全要求开发和提供新技术,以在有限的耕地面积上增加和保障谷物生产,而不增加水和肥料的使用。有几种方法可以提高小麦的产量,但大多数方法只能带来很小的产量增长。小麦是一种自交植物,而杂交种有可能带来产量的大幅提高,并将开辟广泛的新育种机会。一系列技术进步是杂交小麦计划的基础。这些从花发育和结构的重大变化开始,以分离性别并强制异交。雄性不育为阻止自花授粉提供了最佳方法,而修饰花结构将增强花粉的可及性。最近基因组资源和技术的爆炸式增长为克服这些限制提供了新的机会。本文概述了现有杂交小麦育种系统存在的问题,并探讨了基于分子的技术,这些技术可以改进杂交生产系统,降低杂交种子生产成本,这是商业化杂交小麦系统的前提。

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