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丝裂原活化蛋白激酶 6 和丝裂原活化蛋白激酶磷酸酶 1 参与了拟南芥根对 L-谷氨酸的反应。

Mitogen activated protein kinase 6 and MAP kinase phosphatase 1 are involved in the response of Arabidopsis roots to L-glutamate.

机构信息

CONACYT-Instituto de Investigaciones Químico-Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Edificio B3, Ciudad Universitaria, C. P. 58030, Morelia, Michoacán, Mexico.

Instituto de Investigaciones Químico-Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Edificio B3, Ciudad Universitaria, C. P. 58030, Morelia, Michoacán, Mexico.

出版信息

Plant Mol Biol. 2018 Mar;96(4-5):339-351. doi: 10.1007/s11103-018-0699-8. Epub 2018 Jan 17.

Abstract

The function and components of L-glutamate signaling pathways in plants have just begun to be elucidated. Here, using a combination of genetic and biochemical strategies, we demonstrated that a MAPK module is involved in the control of root developmental responses to this amino acid. Root system architecture plays an essential role in plant adaptation to biotic and abiotic factors via adjusting signal transduction and gene expression. L-Glutamate (L-Glu), an amino acid with neurotransmitter functions in animals, inhibits root growth, but the underlying genetic mechanisms are poorly understood. Through a combination of genetic analysis, in-gel kinase assays, detailed cell elongation and division measurements and confocal analysis of expression of auxin, quiescent center and stem cell niche related genes, the critical roles of L-Glu in primary root growth acting through the mitogen-activated protein kinase 6 (MPK6) and the dual specificity serine-threonine-tyrosine phosphatase MKP1 could be revealed. In-gel phosphorylation assays revealed a rapid and dose-dependent induction of MPK6 and MPK3 activities in wild-type Arabidopsis seedlings in response to L-Glu. Mutations in MPK6 or MKP1 reduced or increased root cell division and elongation in response to L-Glu, possibly modulating auxin transport and/or response, but in a PLETHORA1 and 2 independent manner. Our data highlight MPK6 and MKP1 as components of an L-Glu pathway linking the auxin response, and cell division for primary root growth.

摘要

植物中 L-谷氨酸信号通路的功能和组成刚刚开始被阐明。在这里,我们使用遗传和生化策略的组合,证明了一个 MAPK 模块参与了控制根对这种氨基酸的发育反应。根系结构通过调节信号转导和基因表达,在植物适应生物和非生物因素方面起着至关重要的作用。L-谷氨酸(L-Glu)作为动物中具有神经递质功能的氨基酸,抑制根的生长,但潜在的遗传机制尚不清楚。通过遗传分析、胶内激酶测定、详细的细胞伸长和分裂测量以及生长素、静止中心和干细胞龛相关基因表达的共聚焦分析的结合,揭示了 L-Glu 通过丝裂原激活蛋白激酶 6(MPK6)和双特异性丝氨酸-苏氨酸-酪氨酸磷酸酶 MKP1 对初级根生长的关键作用。胶内磷酸化测定显示,野生型拟南芥幼苗对 L-Glu 的反应迅速且呈剂量依赖性地诱导 MPK6 和 MPK3 活性。MPK6 或 MKP1 的突变减少或增加了根细胞对 L-Glu 的分裂和伸长,可能调节生长素的运输和/或反应,但以 PLETHORA1 和 2 不依赖的方式。我们的数据突出了 MPK6 和 MKP1 作为连接生长素反应和细胞分裂的 L-Glu 途径的组成部分,用于初级根生长。

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