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糖是如何调节植物生长和发育的?海藻糖-6-磷酸作用的新见解。

How do sugars regulate plant growth and development? New insight into the role of trehalose-6-phosphate.

机构信息

Genetics, Evolution and Environment, University College London, Gower Street, London, WC1E 6BT, UK.

出版信息

Mol Plant. 2013 Mar;6(2):261-74. doi: 10.1093/mp/sss120. Epub 2012 Oct 25.

Abstract

Plant growth and development are tightly controlled in response to environmental conditions that influence the availability of photosynthetic carbon in the form of sucrose. Trehalose-6-phosphate (T6P), the precursor of trehalose in the biosynthetic pathway, is an important signaling metabolite that is involved in the regulation of plant growth and development in response to carbon availability. In addition to the plant's own pathway for trehalose synthesis, formation of T6P or trehalose by pathogens can result in the reprogramming of plant metabolism and development. Developmental processes that are regulated by T6P range from embryo development to leaf senescence. Some of these processes are regulated in interaction with phytohormones, such as auxin. A key interacting factor of T6P signaling in response to the environment is the protein kinase sucrose non-fermenting related kinase-1 (SnRK1), whose catalytic activity is inhibited by T6P. SnRK1 is most likely involved in the adjustment of metabolism and growth in response to starvation. The transcription factor bZIP11 has recently been identified as a new player in the T6P/SnRK1 regulatory pathway. By inhibiting SnRK1, T6P promotes biosynthetic reactions. This regulation has important consequences for crop production, for example, in the developing wheat grain and during the growth of potato tubers.

摘要

植物的生长和发育受到严格控制,以响应影响光合作用碳以蔗糖形式供应的环境条件。海藻糖-6-磷酸(T6P)是生物合成途径中海藻糖的前体,是一种重要的信号代谢物,参与植物生长和发育的调控,以响应碳的可用性。除了植物自身的海藻糖合成途径外,病原体形成 T6P 或海藻糖会导致植物代谢和发育的重新编程。T6P 调节的发育过程从胚胎发育到叶片衰老。其中一些过程与植物激素(如生长素)相互作用进行调节。T6P 信号响应环境的一个关键相互作用因子是蛋白激酶蔗糖非发酵相关激酶-1(SnRK1),其催化活性受 T6P 抑制。SnRK1 很可能参与了对饥饿的代谢和生长的调节。转录因子 bZIP11 最近被确定为 T6P/SnRK1 调节途径中的一个新成员。通过抑制 SnRK1,T6P 促进了生物合成反应。这种调节对作物生产有重要意义,例如在发育中的小麦籽粒和马铃薯块茎的生长过程中。

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