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己糖激酶与细胞分裂素在叶片衰老和种子萌发调控中的关系。

Relationship between hexokinase and cytokinin in the regulation of leaf senescence and seed germination.

机构信息

Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

Plant Biol (Stuttg). 2011 May;13(3):439-44. doi: 10.1111/j.1438-8677.2010.00376.x.

DOI:10.1111/j.1438-8677.2010.00376.x
PMID:21489094
Abstract

Arabidopsis hexokinase (AtHXK1), an enzyme that catalyses hexose phosphorylation, accelerates leaf senescence, whereas the plant hormone cytokinin inhibits senescence. Previous work in our laboratory has shown that isopentenyl transferase (IPT), a key gene in the biosynthesis of cytokinin, expressed under promoters of the senescence-associated genes SAG12 or SAG13 (P(SAG12)::IPT and P(SAG13)::IPT, respectively), inhibits leaf senescence in tomato plants. To study the relationship between hexokinase and cytokinin in the regulation of leaf senescence, we created and analysed double-transgenic tomato plants expressing both AtHXK1 and either P(SAG12)::IPT or P(SAG13)::IPT. We found that expression of IPT in the double-transgenic plants could not prevent the accelerated senescence induced by over-expression of AtHXK1. Since cytokinin inhibits senescence via an apoplastic invertase that produces extracellular hexoses, whereas AtHXK1 is an intracellular mitochondria-associated hexokinase, our results suggest that intracellular sugar sensing via AtHXK1 is dominant over extracellular sugar sensing with regard to leaf senescence. Interestingly, the heterologous SAG12 and SAG13 promoters are also expressed in germinating tomato seed, around the radicle penetration zone, suggesting that seed germination involves a senescence process that is probably necessary for radicle emergence. Indeed, seed expressing P(SAG12)::IPT and P(SAG13)::IPT exhibited delayed radicle emergence, possibly due to delayed endosperm senescence.

摘要

拟南芥己糖激酶(AtHXK1)是一种催化己糖磷酸化的酶,可加速叶片衰老,而植物激素细胞分裂素则抑制衰老。我们实验室之前的工作表明,异戊烯基转移酶(IPT),细胞分裂素生物合成的关键基因,在衰老相关基因 SAG12 或 SAG13 的启动子(分别为 P(SAG12)::IPT 和 P(SAG13)::IPT)下表达,可以抑制番茄植株的叶片衰老。为了研究己糖激酶和细胞分裂素在叶片衰老调控中的关系,我们创建并分析了表达 AtHXK1 和 P(SAG12)::IPT 或 P(SAG13)::IPT 的双转基因番茄植物。我们发现,在双转基因植物中表达 IPT 不能阻止由 AtHXK1 过表达诱导的加速衰老。由于细胞分裂素通过产生细胞外己糖的质外体转化酶抑制衰老,而 AtHXK1 是一种细胞内线粒体相关的己糖激酶,因此我们的结果表明,在叶片衰老方面,细胞内糖感应通过 AtHXK1 起主导作用,而细胞外糖感应则处于次要地位。有趣的是,异源 SAG12 和 SAG13 启动子也在萌发的番茄种子中表达,在胚根穿透区周围,这表明种子萌发涉及一个衰老过程,可能是胚根出现所必需的。事实上,表达 P(SAG12)::IPT 和 P(SAG13)::IPT 的种子表现出胚根出现延迟,可能是由于胚乳衰老延迟所致。

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