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草原研究不断变化的气候环境。

A changing climate for grassland research.

作者信息

Humphreys M W, Yadav R S, Cairns A J, Turner L B, Humphreys J, Skøt L

机构信息

Institute of Grassland and Environmental Research, Plas Gogerddan, Aberystwyth SY23 3EB, UK.

出版信息

New Phytol. 2006;169(1):9-26. doi: 10.1111/j.1469-8137.2005.01549.x.

Abstract

Here, we review the current genetic approaches for grass improvement and their potential for the enhanced breeding of new varieties appropriate for a sustainable agriculture in a changing global climate. These generally out-breeding, perennial, self-incompatible species present unique challenges and opportunities for genetic analysis. We emphasise their distinctiveness from model species and from the in-breeding, annual cereals. We describe the modern genetic approaches appropriate for their analysis, including association mapping. Sustainability traits discussed here include stress resistance (drought, cold and pathogeneses) and favourable agronomic characters (nutrient use efficiency, carbohydrate content, fatty acid content, winter survival, flowering time and biomass yield). Global warming will predictably affect temperature-sensitive traits such as vernalisation, and these traits are under investigation. Grass biomass utilisation for carbon-neutral energy generation may contribute to reduced atmospheric carbon emissions. Because the wider potential outcomes of climate change are unpredictable, breeders must be reactive to events and have a range of well-characterised germplasm available for new applications.

摘要

在此,我们回顾了当前用于禾本科植物改良的遗传方法及其在不断变化的全球气候下增强适合可持续农业的新品种育种的潜力。这些通常为异花授粉、多年生、自交不亲和的物种在遗传分析方面呈现出独特的挑战和机遇。我们强调它们与模式物种以及自花授粉一年生谷物的差异。我们描述了适用于其分析的现代遗传方法,包括关联作图。这里讨论的可持续性性状包括抗逆性(干旱、寒冷和病原体)以及优良农艺性状(养分利用效率、碳水化合物含量、脂肪酸含量、冬季存活率、开花时间和生物量产量)。可以预见,全球变暖将影响诸如春化作用等对温度敏感的性状,并且这些性状正在研究之中。禾本科植物生物量用于碳中性能源生产可能有助于减少大气碳排放。由于气候变化的更广泛潜在影响不可预测,育种者必须对各种事件做出反应,并拥有一系列特征明确的种质资源以用于新的应用。

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