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系统生物学和全基因组方法揭示参与萌发前代谢的分子参与者:对种子技术性状的影响。

Systems biology and genome-wide approaches to unveil the molecular players involved in the pre-germinative metabolism: implications on seed technology traits.

作者信息

Macovei Anca, Pagano Andrea, Leonetti Paola, Carbonera Daniela, Balestrazzi Alma, Araújo Susana S

机构信息

Department of Biology and Biotechnology 'L. Spallanzani', University of Pavia, via Ferrata 9, 27100, Pavia, Italy.

Institute for Sustainable Plant Protection, National Council of Research, via Amendola 122/D, 70126, Bari, Italy.

出版信息

Plant Cell Rep. 2017 May;36(5):669-688. doi: 10.1007/s00299-016-2060-5. Epub 2016 Oct 11.

Abstract

The pre-germinative metabolism is among the most fascinating aspects of seed biology. The early seed germination phase, or pre-germination, is characterized by rapid water uptake (imbibition), which directs a series of dynamic biochemical events. Among those are enzyme activation, DNA damage and repair, and use of reserve storage compounds, such as lipids, carbohydrates and proteins. Industrial seedling production and intensive agricultural production systems require seed stocks with high rate of synchronized germination and low dormancy. Consequently, seed dormancy, a quantitative trait related to the activation of the pre-germinative metabolism, is probably the most studied seed trait in model species and crops. Single omics, systems biology, QTLs and GWAS mapping approaches have unveiled a list of molecules and regulatory mechanisms acting at transcriptional, post-transcriptional and post-translational levels. Most of the identified candidate genes encode for regulatory proteins targeting ROS, phytohormone and primary metabolisms, corroborating the data obtained from simple molecular biology approaches. Emerging evidences show that epigenetic regulation plays a crucial role in the regulation of these mentioned processes, constituting a still unexploited strategy to modulate seed traits. The present review will provide an up-date of the current knowledge on seed pre-germinative metabolism, gathering the most relevant results from physiological, genetics, and omics studies conducted in model and crop plants. The effects exerted by the biotic and abiotic stresses and priming are also addressed. The possible implications derived from the modulation of pre-germinative metabolism will be discussed from the point of view of seed quality and technology.

摘要

种子萌发前的代谢是种子生物学中最引人入胜的方面之一。种子萌发的早期阶段,即萌发前阶段,其特征是快速吸水(吸胀),这引发了一系列动态生化事件。其中包括酶激活、DNA损伤与修复以及储备储存化合物(如脂质、碳水化合物和蛋白质)的利用。工业苗木生产和集约化农业生产系统需要具有高同步萌发率和低休眠率的种子库存。因此,种子休眠作为一种与萌发前代谢激活相关的数量性状,可能是模式物种和作物中研究最多的种子性状。单组学、系统生物学、数量性状基因座(QTL)和全基因组关联研究(GWAS)绘图方法已经揭示了一系列在转录、转录后和翻译后水平起作用的分子和调控机制。大多数已鉴定的候选基因编码针对活性氧(ROS)、植物激素和初级代谢的调控蛋白,这证实了从简单分子生物学方法获得的数据。新出现的证据表明,表观遗传调控在上述过程的调节中起着关键作用,构成了一种尚未开发的调节种子性状的策略。本综述将提供关于种子萌发前代谢的当前知识的最新情况,收集在模式植物和作物中进行的生理、遗传和组学研究的最相关结果。还讨论了生物和非生物胁迫以及引发处理所产生的影响。将从种子质量和技术的角度讨论调节萌发前代谢可能产生的影响。

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