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Regulatory roles of sugars in plant growth and development

机译:糖在植物生长发育中的调控作用

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In recent years, several studies have focused on the factors and mechanisms that regulate plant growth and development, as well as the functioning of signaling pathways in plant cells, unraveling the involvement of sugars in the processes regulating such growth and development. Saccharides play an important role in the life of plants: they are structural and storage substances, respiratory substrates, and intermediate metabolites of many biochemical processes. Sucrose is the major transport form of assimilates in plants. Sugars can also play an important role in the defense reactions of plants. However, it has been shown that glucose, sucrose, or trehalose-6-phosphate (Tre6P) can regulate a number of growth and metabolic processes, acting independently of the basal functions;they can also act as signaling molecules. Changes in the concentration, qualitative composition, and transport of sugars occur continuously in plant tissues, during the day and night, as well as dur-ing subsequent developmental stages. Plants have developed an efficient system of perception and transmission of signals induced by lower or higher sugar availability. Changes in their concentration affect cell division, germination, vegetative growth, flowering, and aging processes, often independently of the metabolic functions. Currently, the mechanisms of growth regulation in plants, dependent on the access to sugars, are being increasingly recognized. The plant growth stimulating system includes hexokinase (as a glucose sensor), trehalose-6-phosphate, and TOR protein kinase;the lack of Tre6P or TOR kinase inhibits the growth of plants and their transi-tion to the generative phase. It is believed that the plant growth inhibition system consists of SnRK1 protein kinases and C/S1 bZIP transcription factors. The signal transduction routes induced by sugars interact with other pathways in plant tissues (for example, hormonal pathways) creating a complex communication and signal-ing network in plants that precisely controls plant growth and development.
机译:近年来,一些研究集中在调节植物生长和发育的因子和机制,以及植物细胞中信号传导途径的功能上,从而揭示了糖在调节这种生长和发育过程中的作用。糖在植物的生命中起着重要作用:它们是许多生物化学过程中的结构和存储物质,呼吸底物和中间代谢产物。蔗糖是植物中同化物的主要运输形式。糖在植物的防御反应中也可以起重要作用。然而,已显示葡萄糖,蔗糖或海藻糖6-磷酸(Tre6P)可以调节许多生长和代谢过程,而与基础功能无关;它们还可以充当信号分子。糖的浓度,定性组成和转运的变化在白天和黑夜以及随后的发育阶段持续在植物组织中发生。植物已经开发了一种有效的系统,该系统可以感知和传输由较低或较高糖利用量引起的信号。它们浓度的变化通常独立于代谢功能而影响细胞分裂,发芽,营养生长,开花和衰老过程。当前,越来越依赖于获得糖的植物中调节生长的机制。植物生长刺激系统包括己糖激酶(作为葡萄糖传感器),6-磷酸海藻糖和TOR蛋白激酶; Tre6P或TOR激酶的缺乏抑制了植物的生长及其向生殖期的转化。据信植物生长抑制系统由SnRK1蛋白激酶和C / S1 bZIP转录因子组成。糖诱导的信号转导途径与植物组织中的其他途径(例如,激素途径)相互作用,从而在植物中创建了复杂的通讯和信号网络,从而精确地控制了植物的生长和发育。

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