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TCP转录因子在环境挑战与植物生长反应的界面处

TCP Transcription Factors at the Interface between Environmental Challenges and the Plant's Growth Responses.

作者信息

Danisman Selahattin

机构信息

Molecular Cell Physiology, Faculty of Biology, Bielefeld University Bielefeld, Germany.

出版信息

Front Plant Sci. 2016 Dec 21;7:1930. doi: 10.3389/fpls.2016.01930. eCollection 2016.

Abstract

Plants are sessile and as such their reactions to environmental challenges differ from those of mobile organisms. Many adaptions involve growth responses and hence, growth regulation is one of the most crucial biological processes for plant survival and fitness. The plant-specific TEOSINTE BRANCHED 1, CYCLOIDEA, PCF1 (TCP) transcription factor family is involved in plant development from cradle to grave, i.e., from seed germination throughout vegetative development until the formation of flowers and fruits. TCP transcription factors have an evolutionary conserved role as regulators in a variety of plant species, including orchids, tomatoes, peas, poplar, cotton, rice and the model plant Early TCP research focused on the regulatory functions of TCPs in the development of diverse organs via the cell cycle. Later research uncovered that TCP transcription factors are not static developmental regulators but crucial growth regulators that translate diverse endogenous and environmental signals into growth responses best fitted to ensure plant fitness and health. I will recapitulate the research on TCPs in this review focusing on two topics: the discovery of TCPs and the elucidation of their evolutionarily conserved roles across the plant kingdom, and the variety of signals, both endogenous (circadian clock, plant hormones) and environmental (pathogens, light, nutrients), TCPs respond to in the course of their developmental roles.

摘要

植物固着生长,因此它们对环境挑战的反应不同于移动生物。许多适应过程涉及生长反应,因此,生长调节是植物生存和适应性最重要的生物学过程之一。植物特有的玉米分枝1、CYCLOIDEA、PCF1(TCP)转录因子家族参与植物从生到死的发育过程,即从种子萌发到整个营养发育阶段,直至花和果实的形成。TCP转录因子在包括兰花、番茄、豌豆、杨树、棉花、水稻以及模式植物等多种植物物种中作为调节因子具有进化保守作用。早期对TCP的研究集中在TCP通过细胞周期对不同器官发育的调控功能上。后来的研究发现,TCP转录因子并非静态的发育调节因子,而是关键的生长调节因子,它们将各种内源性和环境信号转化为最适合确保植物适应性和健康的生长反应。在这篇综述中,我将概括关于TCP的研究,重点关注两个主题:TCP的发现以及它们在植物界进化保守作用的阐明,以及TCP在其发育作用过程中所响应的各种信号,包括内源性信号(生物钟、植物激素)和环境信号(病原体、光照、养分)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed49/5174091/b33ce1750cfd/fpls-07-01930-g001.jpg

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