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种子生物学进展——种子休眠与萌发研究的亮点及新发现

Seed Biology Updates - Highlights and New Discoveries in Seed Dormancy and Germination Research.

作者信息

Nonogaki Hiroyuki

机构信息

Department of Horticulture, Oregon State University, CorvallisOR, USA.

出版信息

Front Plant Sci. 2017 Apr 11;8:524. doi: 10.3389/fpls.2017.00524. eCollection 2017.

Abstract

An understanding of the biology of seeds has been greatly advanced in recent years. The progresses, particularly in the field of seed dormancy and germination research, have been made at a remarkable speed. Some of the possible epigenetic mechanisms, including an involvement of non-coding RNA, which were predicted for just a few years ago, have now been demonstrated with strong molecular and genetic evidence. Imprinting, or parent-of-origin-specific gene silencing/expression, which was characterized particularly for developing seeds, was also found in imbibed seeds and suggested for dormancy mechanisms. Hormone biology in seeds, which is the most advanced and almost a traditional area of seed research, also presents a new dimension. Upstream regulators of hormone metabolism and hormone transporters, such as abscisic acid and gibberellin influx/efflux carriers, have been identified. Characterization of the novel posttranslational modification pathways, including the N-end rule and -nitrosylation pathways, which play a critical role in turnover of the major hormone signal transduction proteins, also expanded our knowledge about the complexity of hormone signaling in seeds. These progresses made at the molecular level are significant steps toward a better understanding of how seeds translate soil and other environmental signals into their internal hormone biology and make an important decision to stay dormant or commence with germination.

摘要

近年来,人们对种子生物学的理解有了很大进展。特别是在种子休眠和萌发研究领域,进展速度惊人。一些几年前才被预测的可能的表观遗传机制,包括非编码RNA的参与,现在已经有了强有力的分子和遗传学证据。印记,即亲本来源特异性基因沉默/表达,最初是在发育中的种子中被描述的,现在在吸胀种子中也被发现,并被认为与休眠机制有关。种子激素生物学是种子研究中最先进且几乎是传统的领域,现在也展现出了新的维度。激素代谢的上游调节因子和激素转运蛋白,如脱落酸和赤霉素的流入/流出载体,已经被鉴定出来。新的翻译后修饰途径的特征,包括N端规则和亚硝基化途径,它们在主要激素信号转导蛋白的周转中起关键作用,这也扩展了我们对种子激素信号复杂性的认识。在分子水平上取得的这些进展,是朝着更好地理解种子如何将土壤和其他环境信号转化为其内部激素生物学,并做出保持休眠或开始萌发这一重要决定迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb49/5387071/4296197c9ace/fpls-08-00524-g001.jpg

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