National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research, Huazhong Agricultural University, Wuhan 430070, China; email:
Annu Rev Plant Biol. 2014;65:715-41. doi: 10.1146/annurev-arplant-050213-040000. Epub 2013 Dec 2.
Drought is one of the most important environmental stresses affecting the productivity of most field crops. Elucidation of the complex mechanisms underlying drought resistance in crops will accelerate the development of new varieties with enhanced drought resistance. Here, we provide a brief review on the progress in genetic, genomic, and molecular studies of drought resistance in major crops. Drought resistance is regulated by numerous small-effect loci and hundreds of genes that control various morphological and physiological responses to drought. This review focuses on recent studies of genes that have been well characterized as affecting drought resistance and genes that have been successfully engineered in staple crops. We propose that one significant challenge will be to unravel the complex mechanisms of drought resistance in crops through more intensive and integrative studies in order to find key functional components or machineries that can be used as tools for engineering and breeding drought-resistant crops.
干旱是影响大多数大田作物生产力的最重要环境胁迫之一。阐明作物抗旱性背后的复杂机制将加速具有增强抗旱性的新品种的开发。在这里,我们简要回顾了主要作物抗旱性的遗传、基因组和分子研究进展。抗旱性受许多小效应位点和数百个控制各种形态和生理对干旱反应的基因调控。本综述重点介绍了已被充分表征的影响抗旱性的基因和已在主要作物中成功工程化的基因的最新研究。我们提出,一个重大挑战将是通过更深入和综合的研究来揭示作物抗旱性的复杂机制,以便找到可用于工程和培育抗旱作物的关键功能组件或机制。