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植物对酸性土壤的适应:作物耐铝的分子基础。

Plant Adaptation to Acid Soils: The Molecular Basis for Crop Aluminum Resistance.

机构信息

Robert W. Holley Center for Agriculture and Health, USDA-ARS, Cornell University, Ithaca, New York 14853; email:

出版信息

Annu Rev Plant Biol. 2015;66:571-98. doi: 10.1146/annurev-arplant-043014-114822. Epub 2015 Jan 22.

Abstract

Aluminum (Al) toxicity in acid soils is a significant limitation to crop production worldwide, as approximately 50% of the world's potentially arable soil is acidic. Because acid soils are such an important constraint to agriculture, understanding the mechanisms and genes conferring resistance to Al toxicity has been a focus of intense research interest in the decade since the last article on crop acid soil tolerance was published in this journal. An impressive amount of progress has been made during that time that has greatly increased our understanding of the diversity of Al resistance genes and mechanisms, how resistance gene expression is regulated and triggered by Al and Al-induced signals, and how the proteins encoded by these genes function and are regulated. This review examines the state of our understanding of the physiological, genetic, and molecular bases for crop Al tolerance, looking at the novel Al resistance genes and mechanisms that have been identified over the past ten years. Additionally, it examines how the integration of molecular and genetic analyses of crop Al resistance is starting to be exploited for the improvement of crop plants grown on acid soils via both molecular-assisted breeding and biotechnology approaches.

摘要

在酸性土壤中,铝(Al)毒性是全球作物生产的一个重大限制因素,因为世界上大约有 50%的潜在可耕地是酸性的。由于酸性土壤对农业是如此重要的限制因素,因此,自上一篇关于作物耐酸土壤的文章在本期刊上发表以来的十年间,理解铝毒性抗性的机制和基因一直是密集研究兴趣的焦点。在那段时间里,已经取得了令人印象深刻的进展,极大地提高了我们对铝抗性基因和机制多样性的理解,了解了抗性基因表达如何受到铝和铝诱导信号的调节和触发,以及这些基因编码的蛋白质如何发挥作用和受到调节。本综述考察了我们对作物耐铝性的生理、遗传和分子基础的理解状况,研究了过去十年中发现的新的铝抗性基因和机制。此外,它还考察了如何通过分子辅助育种和生物技术方法,将作物耐铝性的分子和遗传分析的整合开始应用于在酸性土壤中生长的作物的改良。

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