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生长素和地上分生组织。

Auxin and above-ground meristems.

机构信息

College of Life Sciences, University of Chinese Academy of Sciences, China.

State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, and National Center for Plant Gene Research, China.

出版信息

J Exp Bot. 2018 Jan 4;69(2):147-154. doi: 10.1093/jxb/erx299.

Abstract

In contrast to animals, plants maintain life-long post-embryonic organogenesis from specialized tissues termed meristems. Shoot meristems give rise to all aerial tissues and are precisely regulated to balance stem cell renewal and differentiation. The phytohormone auxin has a dynamic and differential distribution within shoot meristems and during shoot meristem formation. Polar auxin transport and local auxin biosynthesis lead to auxin maxima and minima to direct cell fate specification, which are critical for meristem formation, lateral organ formation, and lateral organ patterning. In recent years, feedback regulatory loops of auxin transport and signaling have emerged as major determinants of the self-organizing properties of shoot meristems. Systems biology approaches, which involve molecular genetics, live imaging, and computational modeling, have become increasingly important to unravel the function of auxin signaling in shoot meristems.

摘要

与动物不同,植物从称为分生组织的专门组织中维持终生的胚胎后器官发生。茎尖分生组织产生所有气生组织,并受到精确调节以平衡干细胞更新和分化。植物激素生长素在茎尖分生组织内和茎尖分生组织形成过程中具有动态和差异分布。极性生长素运输和局部生长素生物合成导致生长素最大值和最小值,以指导细胞命运特化,这对于分生组织形成、侧生器官形成和侧生器官模式形成至关重要。近年来,生长素运输和信号转导的反馈调节环已成为茎尖分生组织自组织特性的主要决定因素。系统生物学方法,包括分子遗传学、活体成像和计算建模,对于揭示生长素信号在茎尖分生组织中的功能变得越来越重要。

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