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水稻胞质己糖激酶 OsHXK7 在糖信号和代谢中的作用。

Role of rice cytosolic hexokinase OsHXK7 in sugar signaling and metabolism.

机构信息

Crop Biotech Institute & Graduate School of Biotechnology, Kyung Hee University, Yongin 446-701, Korea.

Department of Biology, Chungnam National University, Daejeon 305-764, Korea.

出版信息

J Integr Plant Biol. 2016 Feb;58(2):127-35. doi: 10.1111/jipb.12366. Epub 2015 Aug 24.

Abstract

We characterized the function of the rice cytosolic hexokinase OsHXK7 (Oryza sativa Hexokinase7), which is highly upregulated when seeds germinate under O2 -deficient conditions. According to transient expression assays that used the promoter:luciferase fusion construct, OsHXK7 enhanced the glucose (Glc)-dependent repression of a rice α-amylase gene (RAmy3D) in the mesophyll protoplasts of maize, but its catalytically inactive mutant alleles did not. Consistently, the expression of OsHXK7, but not its catalytically inactive alleles, complemented the Arabidopsis glucose insensitive2-1 (gin2-1) mutant, thereby resulting in the wild type characteristics of Glc-dependent repression, seedling development, and plant growth. Interestingly, OsHXK7-mediated Glc-dependent repression was abolished in the O2 -deficient mesophyll protoplasts of maize. This result provides compelling evidence that OsHXK7 functions in sugar signaling via a glycolysis-dependent manner under normal conditions, but its signaling role is suppressed when O2 is deficient. The germination of two null OsHXK7 mutants, oshxk7-1 and oshxk7-2, was affected by O2 deficiency, but overexpression enhanced germination in rice. This result suggests the distinct role that OsHXK7 plays in sugar metabolism and efficient germination by enforcing glycolysis-mediated fermentation in O2 -deficient rice.

摘要

我们研究了水稻细胞质己糖激酶 OsHXK7(Oryza sativa Hexokinase7)的功能,该酶在缺氧条件下种子萌发时高度上调。根据使用启动子:荧光素酶融合构建体的瞬时表达分析,OsHXK7 增强了玉米叶肉原生质体中水稻 α-淀粉酶基因(RAmy3D)对葡萄糖(Glc)的依赖性抑制,但催化失活的突变等位基因则没有。一致地,OsHXK7 的表达,而不是其催化失活的等位基因,补充了拟南芥葡萄糖不敏感 2-1(gin2-1)突变体,从而导致 Glc 依赖性抑制、幼苗发育和植物生长的野生型特征。有趣的是,在缺氧的玉米叶肉原生质体中,OsHXK7 介导的 Glc 依赖性抑制被消除。这一结果提供了令人信服的证据,表明 OsHXK7 在正常条件下通过糖酵解依赖的方式在糖信号转导中发挥作用,但当 O2 缺乏时,其信号作用受到抑制。两个缺失 OsHXK7 突变体 oshxk7-1 和 oshxk7-2 的萌发受到 O2 缺乏的影响,但过表达增强了水稻的萌发。这一结果表明,OsHXK7 在糖代谢和通过在缺氧水稻中强制糖酵解介导的发酵来提高萌发效率方面发挥着独特的作用。

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