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蛋白激酶 SnRK2.6 介导拟南芥蔗糖代谢和植物生长的调控。

The protein kinase SnRK2.6 mediates the regulation of sucrose metabolism and plant growth in Arabidopsis.

机构信息

Dow AgroSciences LLC, Indianapolis, Indiana 46268, USA.

出版信息

Plant Physiol. 2010 May;153(1):99-113. doi: 10.1104/pp.109.150789. Epub 2010 Mar 3.

Abstract

In higher plants, three subfamilies of sucrose nonfermenting-1 (Snf1)-related protein kinases have evolved. While the Snf1-related protein kinase 1 (SnRK1) subfamily has been shown to share pivotal roles with the orthologous yeast Snf1 and mammalian AMP-activated protein kinase in modulating energy and metabolic homeostasis, the functional significance of the two plant-specific subfamilies SnRK2 and SnRK3 in these critical processes is poorly understood. We show here that SnRK2.6, previously identified as crucial in the control of stomatal aperture by abscisic acid (ABA), has a broad expression pattern and participates in the regulation of plant primary metabolism. Inactivation of this gene reduced oil synthesis in Arabidopsis (Arabidopsis thaliana) seeds, whereas its overexpression increased Suc synthesis and fatty acid desaturation in the leaves. Notably, the metabolic alterations in the SnRK2.6 overexpressors were accompanied by amelioration of those physiological processes that require high levels of carbon and energy input, such as plant growth and seed production. However, the mechanisms underlying these functionalities could not be solely attributed to the role of SnRK2.6 as a positive regulator of ABA signaling, although we demonstrate that this kinase confers ABA hypersensitivity during seedling growth. Collectively, our results suggest that SnRK2.6 mediates hormonal and metabolic regulation of plant growth and development and that, besides the SnRK1 kinases, SnRK2.6 is also implicated in the regulation of metabolic homeostasis in plants.

摘要

在高等植物中,已经进化出了三个蔗糖非发酵-1(Snf1)相关蛋白激酶亚家族。虽然 Snf1 相关蛋白激酶 1(SnRK1)亚家族已经被证明与同源酵母 Snf1 和哺乳动物 AMP 激活蛋白激酶在调节能量和代谢稳态方面具有重要作用,但这两个植物特异性亚家族 SnRK2 和 SnRK3 在这些关键过程中的功能意义还知之甚少。我们在这里表明,SnRK2.6 先前被确定为 ABA 控制气孔开度的关键因子,具有广泛的表达模式,并参与植物初级代谢的调节。该基因的失活会减少拟南芥(Arabidopsis thaliana)种子中的油脂合成,而过表达则会增加叶片中的 Suc 合成和脂肪酸去饱和作用。值得注意的是,SnRK2.6 过表达植株的代谢改变伴随着那些需要高碳和能量输入的生理过程的改善,例如植物生长和种子生产。然而,这些功能的机制不能仅仅归因于 SnRK2.6 作为 ABA 信号的正调控因子的作用,尽管我们证明这种激酶在幼苗生长过程中赋予了 ABA 超敏性。总的来说,我们的结果表明,SnRK2.6 介导了植物生长和发育的激素和代谢调节,除了 SnRK1 激酶外,SnRK2.6 还参与了植物代谢稳态的调节。

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