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OsMKK6-OsMPK3 信号通路对水稻耐冷性的生化鉴定。

Biochemical identification of the OsMKK6-OsMPK3 signalling pathway for chilling stress tolerance in rice.

机构信息

Crop Breeding Research Division, Hokkaido Agricultural Research Center, National Agriculture and Food Research Organization, Hitsujigaoka 1, Toyohira-ku, Sapporo 062-8555, Japan.

出版信息

Biochem J. 2012 Apr 1;443(1):95-102. doi: 10.1042/BJ20111792.

Abstract

MAPK (mitogen-activated protein kinase) pathways have been implicated in stress signalling in plants. In the present study, we performed yeast two-hybrid screening to identify partner MAPKs for OsMKK (Oryza sativa MAPK kinase) 6, a rice MAPK kinase, and revealed specific interactions of OsMKK6 with OsMPK3 and OsMPK6. OsMPK3 and OsMPK6 each co-immunoprecipitated OsMKK6, and both were directly phosphorylated by OsMKK6 in vitro. An MBP (myelin basic protein) kinase assay of the immunoprecipitation complex indicated that OsMPK3 and OsMPK6 were activated in response to a moderately low temperature (12°C), but not a severely low temperature (4°C) in rice seedlings. A constitutively active form of OsMKK6, OsMKK6DD, showed elevated phosphorylation activity against OsMPK3 and OsMPK6 in vitro. OsMPK3, but not OsMPK6, was constitutively activated in transgenic plants overexpressing OsMKK6DD, indicating that OsMPK3 is an in vivo target of OsMKK6. Enhanced chilling tolerance was observed in the transgenic plants overexpressing OsMKK6DD. Taken together, our data suggest that OsMKK6 and OsMPK3 constitute a moderately low-temperature signalling pathway and regulate cold stress tolerance in rice.

摘要

MAPK(丝裂原活化蛋白激酶)途径已被牵涉到植物中的应激信号传导中。在本研究中,我们进行了酵母双杂交筛选,以鉴定水稻 MAPK 激酶 OsMKK(Oryza sativa MAPK kinase)6 的伴侣 MAPK,并揭示了 OsMKK6 与 OsMPK3 和 OsMPK6 的特异性相互作用。OsMPK3 和 OsMPK6 各自与 OsMKK6 共免疫沉淀,并且两者均可在体外被 OsMKK6 直接磷酸化。免疫沉淀复合物的 MBP(髓鞘碱性蛋白)激酶测定表明,OsMPK3 和 OsMPK6 在水稻幼苗中响应中度低温(12°C)而不是严重低温(4°C)而被激活。OsMKK6 的组成型激活形式 OsMKK6DD 在体外对 OsMPK3 和 OsMPK6 表现出升高的磷酸化活性。在过表达 OsMKK6DD 的转基因植物中,仅 OsMPK3 被组成型激活,表明 OsMPK3 是 OsMKK6 的体内靶标。在过表达 OsMKK6DD 的转基因植物中观察到增强的耐冷性。总之,我们的数据表明,OsMKK6 和 OsMPK3 构成了一个中度低温信号通路,并调节水稻的冷胁迫耐受性。

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