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遗传调控植物的茎结构。

Genetic Regulation of Shoot Architecture.

机构信息

State Key Laboratory of Plant Genomics and National Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China; email:

School of Natural Sciences, University of Tasmania, Hobart 7001, Australia; email:

出版信息

Annu Rev Plant Biol. 2018 Apr 29;69:437-468. doi: 10.1146/annurev-arplant-042817-040422. Epub 2018 Mar 19.

Abstract

Shoot architecture is determined by the organization and activities of apical, axillary, intercalary, secondary, and inflorescence meristems and by the subsequent development of stems, leaves, shoot branches, and inflorescences. In this review, we discuss the unifying principles of hormonal and genetic control of shoot architecture including advances in our understanding of lateral branch outgrowth; control of stem elongation, thickness, and angle; and regulation of inflorescence development. We focus on recent progress made mainly in Arabidopsis thaliana, rice, pea, maize, and tomato, including the identification of new genes and mechanisms controlling shoot architecture. Key advances include elucidation of mechanisms by which strigolactones, auxins, and genes such as IDEAL PLANT ARCHITECTURE1 and TEOSINTE BRANCHED1 control shoot architecture. Knowledge now available provides a foundation for rational approaches to crop breeding and the generation of ideotypes with defined architectural features to improve performance and productivity.

摘要

shoot 架构由顶端、腋芽、居间、次生和花序分生组织的组织和活动决定,并受随后茎、叶、 shoot 枝和花序的发育影响。在这篇综述中,我们讨论了 shoot 架构的激素和遗传控制的统一原则,包括我们对侧枝生长、茎伸长、厚度和角度控制以及花序发育调节的理解的进展。我们主要集中在拟南芥、水稻、豌豆、玉米和番茄中的最新进展,包括鉴定控制 shoot 架构的新基因和机制。关键进展包括阐明了独脚金内酯、生长素以及 IDEAL PLANT ARCHITECTURE1 和 TEOSINTE BRANCHED1 等基因控制 shoot 架构的机制。目前获得的知识为作物育种的合理方法提供了基础,并为具有定义明确架构特征的理想植株提供了基础,以提高性能和生产力。

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