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林木的向重力性和反应木——进化、功能与机制

Gravitropisms and reaction woods of forest trees - evolution, functions and mechanisms.

作者信息

Groover Andrew

机构信息

Pacific Southwest Research Station, US Forest Service, Davis, CA, 95618, USA.

Department of Plant Biology, University of California Davis, Davis, CA, 95616, USA.

出版信息

New Phytol. 2016 Aug;211(3):790-802. doi: 10.1111/nph.13968. Epub 2016 Apr 25.

Abstract

Contents 790 I. 790 II. 792 III. 795 IV. 797 V. 798 VI. 800 VII. 800 800 References 800 SUMMARY: The woody stems of trees perceive gravity to determine their orientation, and can produce reaction woods to reinforce or change their position. Together, graviperception and reaction woods play fundamental roles in tree architecture, posture control, and reorientation of stems displaced by wind or other environmental forces. Angiosperms and gymnosperms have evolved strikingly different types of reaction wood. Tension wood of angiosperms creates strong tensile force to pull stems upward, while compression wood of gymnosperms creates compressive force to push stems upward. In this review, the general features and evolution of tension wood and compression wood are presented, along with descriptions of how gravitropisms and reaction woods contribute to the survival and morphology of trees. An overview is presented of the molecular and genetic mechanisms underlying graviperception, initial graviresponse and the regulation of tension wood development in the model angiosperm, Populus. Critical research questions and new approaches are discussed.

摘要

目录

790 一、

790 二、

792 三、

795 四、

797 五、

798 六、

800 七、

800 参考文献

800 摘要:树木的木质茎感知重力以确定其方向,并能产生反应木来加强或改变其位置。重力感知和反应木共同在树木结构、姿态控制以及被风或其他环境力量移位的茎的重新定向中发挥着重要作用。被子植物和裸子植物进化出了截然不同类型的反应木。被子植物的张力木产生强大的拉力将茎向上拉,而裸子植物的压缩木产生压力将茎向上推。在本综述中,介绍了张力木和压缩木的一般特征及进化,同时描述了重力感应和反应木如何影响树木的生存和形态。概述了模式被子植物杨树中重力感知、初始重力反应以及张力木发育调控的分子和遗传机制。讨论了关键研究问题和新方法。

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