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细胞生长中类CINCINNATA的TCP转录因子——不断扩展的研究范畴

CINCINNATA-Like TCP Transcription Factors in Cell Growth - An Expanding Portfolio.

作者信息

Rath Monalisha, Challa Krishna Reddy, Sarvepalli Kavitha, Nath Utpal

机构信息

Department of Microbiology and Cell Biology, Indian Institute of Science, Bengaluru, India.

Undergraduate Program, Indian Institute of Science, Bengaluru, India.

出版信息

Front Plant Sci. 2022 Feb 22;13:825341. doi: 10.3389/fpls.2022.825341. eCollection 2022.

Abstract

Post-mitotic cell growth is a key process in plant growth and development. Cell expansion drives major growth during morphogenesis and is influenced by both endogenous factors and environmental stimuli. Though both isotropic and anisotropic cell growth can contribute to organ size and shape at different degrees, anisotropic cell growth is more likely to contribute to shape change. While much is known about the mechanisms that increase cellular turgor and cell-wall biomass during expansion, the genetic factors that regulate these processes are less studied. In the past quarter of a century, the role of the CINCINNATA-like TCP (CIN-TCP) transcription factors has been well documented in regulating diverse aspects of plant growth and development including flower asymmetry, plant architecture, leaf morphogenesis, and plant maturation. The molecular activity of the CIN-TCP proteins common to these biological processes has been identified as their ability to suppress cell proliferation. However, reports on their role regulating post-mitotic cell growth have been scanty, partly because of functional redundancy among them. In addition, it is difficult to tease out the effect of gene activity on cell division and expansion since these two processes are linked by compensation, a phenomenon where perturbation in proliferation is compensated by an opposite effect on cell growth to keep the final organ size relatively unaltered. Despite these technical limitations, recent genetic and growth kinematic studies have shown a distinct role of CIN-TCPs in promoting cellular growth in cotyledons and hypocotyls, the embryonic organs that grow solely by cell expansion. In this review, we highlight these recent advances in our understanding of how CIN-TCPs promote cell growth.

摘要

有丝分裂后细胞生长是植物生长发育中的一个关键过程。细胞扩张驱动形态发生过程中的主要生长,并受内源性因素和环境刺激的影响。尽管各向同性和各向异性细胞生长都能在不同程度上影响器官大小和形状,但各向异性细胞生长更有可能导致形状变化。虽然人们对细胞扩张过程中增加细胞膨压和细胞壁生物量的机制了解很多,但对调控这些过程的遗传因素的研究较少。在过去的二十五年里,类CINCINNATA的TCP(CIN-TCP)转录因子在调控植物生长发育的多个方面,包括花的不对称性、植物结构、叶片形态发生和植物成熟等方面的作用,已有充分的文献记载。这些生物学过程中常见的CIN-TCP蛋白的分子活性已被确定为它们抑制细胞增殖的能力。然而,关于它们在调控有丝分裂后细胞生长方面作用的报道却很少,部分原因是它们之间存在功能冗余。此外,由于细胞分裂和扩张这两个过程通过补偿作用相互关联,即增殖的扰动会被细胞生长的相反作用所补偿,以保持最终器官大小相对不变,因此很难区分基因活性对细胞分裂和扩张的影响。尽管存在这些技术限制,但最近的遗传学和生长运动学研究表明,CIN-TCPs在促进子叶和下胚轴(仅通过细胞扩张生长的胚胎器官)的细胞生长中具有独特作用。在这篇综述中,我们重点介绍了我们在理解CIN-TCPs如何促进细胞生长方面的这些最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89a0/8902296/ab4135370794/fpls-13-825341-g001.jpg

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