Zhao Chang-Xing, Guo Ling-Yu, Jaleel Cheruth Abdul, Shao Hong-Bo, Yang Hong-Bing
College of Plant Science and Technology, Qingdao Agricultural University, Qingdao, China.
C R Biol. 2008 Aug;331(8):579-86. doi: 10.1016/j.crvi.2008.05.006. Epub 2008 Jun 27.
With the advent of molecular biotechnologies, new opportunities are available for plant physiologists to study the relationships between wheat traits and their genetic control. The functional determinations of all genes that participate in drought adaptation or tolerance reactions are expected to provide an integrated understanding of the biochemical and physiological basis of stress responses in wheat. However, despite all the recent technological breakthroughs, the overall contribution of genomics-assisted breeding to the release of drought-resilient wheat cultivars has so far been marginal. This paper critically analyses how biotechnological, genetic and information tools can contribute to accelerating the release of improved, drought-tolerant wheat cultivars. Armed with such information from established models, it will be possible to elucidate the physiological basis of drought tolerance and to select genotypes with an improved yield under water-limited conditions.
随着分子生物技术的出现,植物生理学家有了新的机会来研究小麦性状与其遗传控制之间的关系。预计参与干旱适应或耐受反应的所有基因的功能测定将提供对小麦胁迫反应的生化和生理基础的综合理解。然而,尽管最近有所有这些技术突破,但到目前为止,基因组学辅助育种对耐旱小麦品种发布的总体贡献微乎其微。本文批判性地分析了生物技术、遗传和信息工具如何有助于加速改良耐旱小麦品种的发布。有了来自既定模型的此类信息,将有可能阐明耐旱性的生理基础,并在水分有限的条件下选择产量提高的基因型。