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拟南芥叶片形态发生的分子和激素调控。

Molecular and Hormonal Regulation of Leaf Morphogenesis in Arabidopsis.

机构信息

College of Life Sciences, Northeast Forestry University, Harbin 150040, China.

Department of Agronomy, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, FL 32611, USA.

出版信息

Int J Mol Sci. 2020 Jul 20;21(14):5132. doi: 10.3390/ijms21145132.

Abstract

Shoot apical meristems (SAM) are tissues that function as a site of continuous organogenesis, which indicates that a small pool of pluripotent stem cells replenishes into lateral organs. The coordination of intercellular and intracellular networks is essential for maintaining SAM structure and size and also leads to patterning and formation of lateral organs. Leaves initiate from the flanks of SAM and then develop into a flattened structure with variable sizes and forms. This process is mainly regulated by the transcriptional regulators and mechanical properties that modulate leaf development. Leaf initiation along with proper orientation is necessary for photosynthesis and thus vital for plant survival. Leaf development is controlled by different components such as hormones, transcription factors, miRNAs, small peptides, and epigenetic marks. Moreover, the adaxial/abaxial cell fate, lamina growth, and shape of margins are determined by certain regulatory mechanisms. The over-expression and repression of various factors responsible for leaf initiation, development, and shape have been previously studied in several mutants. However, in this review, we collectively discuss how these factors modulate leaf development in the context of leaf initiation, polarity establishment, leaf flattening and shape.

摘要

顶端分生组织(SAM)是作为连续器官发生部位的组织,这表明一小部分多能干细胞补充到侧生器官中。细胞间和细胞内网络的协调对于维持 SAM 的结构和大小以及导致侧生器官的模式化和形成是必不可少的。叶片从 SAM 的侧翼开始发育,然后发育成具有不同大小和形状的扁平结构。这个过程主要受到调节叶片发育的转录因子和机械特性的调节。叶片的起始以及正确的定向对于光合作用是必要的,因此对植物的生存至关重要。叶片的发育受激素、转录因子、miRNA、小肽和表观遗传标记等不同成分的控制。此外,近轴/远轴细胞命运、叶板生长和边缘形状由某些调节机制决定。以前在几种突变体中研究了负责叶片起始、发育和形状的各种因子的过表达和抑制。然而,在这篇综述中,我们集中讨论了这些因子如何在叶片起始、极性建立、叶片扁平化和形状调节的背景下调节叶片发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fb6/7404056/e16ee751d208/ijms-21-05132-g001.jpg

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