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光周期动态在大豆的驯化和改良过程中。

Photoperiodism dynamics during the domestication and improvement of soybean.

机构信息

National Key Facility for Crop Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

出版信息

Sci China Life Sci. 2017 Dec;60(12):1416-1427. doi: 10.1007/s11427-016-9154-x. Epub 2017 Sep 21.

Abstract

Soybean (Glycine max) is a facultative short-day plant with a sensitive photoperiod perception and reaction system, which allows it to adjust its physiological state and gene regulatory networks to seasonal and diurnal changes in environmental conditions. In the past few decades, soybean cultivation has spread from East Asia to areas throughout the world. Biologists and breeders must now confront the challenge of understanding the molecular mechanism of soybean photoperiodism and improving agronomic traits to enable this important crop to adapt to geographical and environmental changes. In this review, we summarize the genetic regulatory network underlying photoperiodic responses in soybean. Genomic and genetic studies have revealed that the circadian clock, in conjunction with the light perception pathways, regulates photoperiodic flowering. Here, we provide an annotated list of 844 candidate flowering genes in soybean, with their putative biological functions. Many photoperiod-related genes have been intensively selected during domestication and crop improvement. Finally, we describe recent progress in engineering photoperiod-responsive genes for improving agronomic traits to enhance geographic adaptation in soybean, as well as future prospects for research on soybean photoperiodic responses.

摘要

大豆(Glycine max)是一种兼性短日植物,具有敏感的光周期感知和反应系统,使它能够调整其生理状态和基因调控网络,以适应环境条件的季节性和昼夜变化。在过去的几十年中,大豆种植已经从东亚扩展到世界各地。生物学家和培育者现在必须面对理解大豆光周期机制和改善农艺性状的挑战,以使这一重要作物能够适应地理和环境变化。在这篇综述中,我们总结了大豆光周期反应的遗传调控网络。基因组和遗传研究表明,生物钟与光感知途径一起调节光周期开花。在这里,我们提供了大豆中 844 个候选开花基因的注释列表,并对其假定的生物学功能进行了描述。许多与光周期相关的基因在驯化和作物改良过程中被强烈选择。最后,我们描述了近年来在工程光周期响应基因以改善农艺性状以增强大豆地理适应性方面的进展,以及对大豆光周期反应的未来研究前景。

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