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Storage Reserve Accumulation in Arabidopsis: Metabolic and Developmental Control of Seed Filling

机译:拟南芥中的存储储备积累:种子填充的代谢和发育控制。

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摘要

In the life cycle of higher plants, seed development is a key process connecting two distinct sporophytic generations. Seed development can be divided into embryo morphogenesis and seed maturation. An essential metabolic function of maturing seeds is the deposition of storage compounds that are mobilised to fuel post-germinative seedling growth. Given the importance of seeds for food and animal feed and considering the tremendous interest in using seed storage products as sustainable industrial feedstocks to replace diminishing fossil reserves, understanding the metabolic and developmental control of seed filling constitutes a major focus of plant research. Arabidopsis thaliana is an oilseed species closely related to the agronomically important Brassica oilseed crops. The main storage compounds accumulated in seeds of A. thaliana consist of oil stored as triacylglycerols (TAGs) and seed storage proteins (SSPs). Extensive tools developed for the molecular dissection of A. thaliana development and metabolism together with analytical and cytological procedures adapted for very small seeds have led to a good description of the biochemical pathways producing storage compounds. In recent years, studies using these tools have shed new light on the intricate regulatory network controlling the seed maturation process. This network involves sugar and hormone signalling together with a set of developmentally regulated transcription factors. Although much remains to be elucidated, the framework of the regulatory system controlling seed filling is coming into focus.
机译:在高等植物的生命周期中,种子发育是连接两个不同孢子体世代的关键过程。种子发育可分为胚胎形态发生和种子成熟。成熟种子的基本代谢功能是储存化合物的沉积,这些化合物可动员以促进发芽后的幼苗生长。考虑到种子对于食品和动物饲料的重要性,并考虑到将种子存储产品用作可持续的工业原料来替代不断减少的化石储量的巨大兴趣,了解种子填充的代谢和发育控制构成了植物研究的主要重点。拟南芥是与农学上重要的芸苔属油料作物密切相关的油料种子。拟南芥种子中积累的主要存储化合物由作为三酰基甘油(TAG)和种子存储蛋白(SSP)存储的油组成。开发用于拟南芥分子发育和代谢的分子解剖学的广泛工具,以及适用于非常小的种子的分析和细胞学方法,已经对产生储存化合物的生化途径进行了很好的描述。近年来,使用这些工具的研究为控制种子成熟过程的复杂调控网络提供了新的思路。该网络涉及糖和激素信号传导以及一组发育调控的转录因子。尽管还有许多事情有待阐明,但控制种子填充的监管体系框架已成为关注焦点。

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