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花的发育:从形态动力学到形态力学。

Flower development: from morphodynamics to morphomechanics.

作者信息

Abad Ursula, Sassi Massimiliano, Traas Jan

机构信息

Laboratory for Plant Reproduction and Development, Univ Lyon, ENS de Lyon, UCB Lyon 1, CNRS, INRA, 69342 Lyon, France.

Laboratory for Plant Reproduction and Development, Univ Lyon, ENS de Lyon, UCB Lyon 1, CNRS, INRA, 69342 Lyon, France

出版信息

Philos Trans R Soc Lond B Biol Sci. 2017 May 19;372(1720). doi: 10.1098/rstb.2015.0545.

Abstract

The shoot apical meristem (SAM) is a small population of stem cells that continuously generates organs and tissues. We will discuss here flower formation at the SAM, which involves a complex network of regulatory genes and signalling molecules. A major downstream target of this network is the extracellular matrix or cell wall, which is a local determinant for both growth rates and growth directions. We will discuss here a number of recent studies aimed at analysing the link between cell wall structure and molecular regulation. This has involved multidisciplinary approaches including quantitative imaging, molecular genetics, computational biology and biophysics. A scenario emerges where molecular networks impact on both cell wall anisotropy and synthesis, thus causing the rapid outgrowth of organs at specific locations. More specifically, this involves two interdependent processes: the activation of wall remodelling enzymes and changes in microtubule dynamics.This article is part of the themed issue 'Systems morphodynamics: understanding the development of tissue hardware'.

摘要

茎尖分生组织(SAM)是一小群能够持续产生器官和组织的干细胞。我们将在此讨论茎尖分生组织处的花形成过程,这涉及一个由调控基因和信号分子构成的复杂网络。该网络的一个主要下游靶点是细胞外基质或细胞壁,它是生长速率和生长方向的局部决定因素。我们将在此讨论一些旨在分析细胞壁结构与分子调控之间联系的近期研究。这涉及多学科方法,包括定量成像、分子遗传学、计算生物学和生物物理学。由此出现了一种情况,即分子网络影响细胞壁各向异性和合成,从而导致特定位置的器官快速生长。更具体地说,这涉及两个相互依存的过程:壁重塑酶的激活和微管动力学的变化。本文是主题为“系统形态动力学:理解组织硬件的发育”特刊的一部分。

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