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脱落区的转录调控

Transcriptional Regulation of Abscission Zones.

作者信息

Kim Joonyup, Chun Jong-Pil, Tucker Mark L

机构信息

Department of Horticultural Science, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 34134, Korea.

Soybean Genomics and Improvement Laboratory, Agricultural Research Service, USDA Bldg. 006, 10300 Baltimore Ave., Beltsville, MD 20705, USA.

出版信息

Plants (Basel). 2019 Jun 6;8(6):154. doi: 10.3390/plants8060154.

Abstract

Precise and timely regulation of organ separation from the parent plant (abscission) is consequential to improvement of crop productivity as it influences both the timing of harvest and fruit quality. Abscission is tightly associated with plant fitness as unwanted organs (petals, sepals, filaments) are shed after fertilization while seeds, fruits, and leaves are cast off as means of reproductive success or in response to abiotic/biotic stresses. Floral organ abscission in Arabidopsis has been a useful model to elucidate the molecular mechanisms that underlie the separation processes, and multiple abscission signals associated with the activation and downstream pathways have been uncovered. Concomitantly, large-scale analyses of omics studies in diverse abscission systems of various plants have added valuable insights into the abscission process. The results suggest that there are common molecular events linked to the biosynthesis of a new extracellular matrix as well as cell wall disassembly. Comparative analysis between Arabidopsis and soybean abscission systems has revealed shared and yet disparate regulatory modules that affect the separation processes. In this review, we discuss our current understanding of the transcriptional regulation of abscission in several different plants that has improved on the previously proposed four-phased model of organ separation.

摘要

精确且及时地调控器官与母体植物的分离(脱落)对于提高作物产量至关重要,因为它会影响收获时间和果实品质。脱落与植物适应性密切相关,因为受精后不需要的器官(花瓣、萼片、花丝)会脱落,而种子、果实和叶子则作为繁殖成功的手段或对非生物/生物胁迫的响应而脱落。拟南芥中的花器官脱落一直是阐明分离过程背后分子机制的有用模型,并且已经发现了与激活和下游途径相关的多种脱落信号。与此同时,对各种植物不同脱落系统的组学研究进行大规模分析,为脱落过程提供了有价值的见解。结果表明,存在与新细胞外基质生物合成以及细胞壁分解相关的共同分子事件。拟南芥和大豆脱落系统之间的比较分析揭示了影响分离过程的共享但不同的调控模块。在这篇综述中,我们讨论了目前对几种不同植物中脱落转录调控的理解,这改进了先前提出的器官分离四阶段模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0465/6631628/7bf37092cfe3/plants-08-00154-g001.jpg

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