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首页> 外文期刊>Journal of Plant Biology >Genetic complementation analysis of rice sucrose transporter genes in Arabidopsis SUC2 mutant atsuc2
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Genetic complementation analysis of rice sucrose transporter genes in Arabidopsis SUC2 mutant atsuc2

机译:拟南芥SUC2突变体atsuc2中水稻蔗糖转运蛋白基因的遗传互补分析

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摘要

Sucrose transporters (SUTs) play a critical role on the phloem plasma membrane in loading sucrose into the phloem of source leaves for long-distance transport to sink organs. Rice has a small gene family of five SUTs, Oryza sativa SUT1 (OsSUT1) to OsSUT5. To identify rice SUTs that function as phloem loaders, we adopted a growth restoration assay of the severe growth retardation phenotype of atsuc2, a mutant of the best-characterized Arabidopsis phloem loader AtSUC2, by introducing OsSUTs. The rice SUT genes were expressed by two different promoters, the native phloem-specific promoter of AtSUC2 (pAtSUC2) and the constitutive Cauliflower Mosaic Virus 35S (pCaMV35S) promoter. Of all the transgenic atsuc2 plants, only pAtSUC2: OsSUT1 complemented the atsuc2 mutant phenotype in a comparable manner to wild type (WT), and consistent levels of soluble sugars and starch were recovered compared to those of WT. This suggests that OsSUT1 is a functional ortholog of the Arabidopsis AtSUC2 and functions as an apoplastic phloem loader. In addition, ossut1 mutants were produced via anther culture and their primary carbohydrate levels and growth phenotypes were indistinguishable from those of WT. This suggests that the rice phloem loader OsSUT1 function may not be essential for rice vegetative growth under normal conditions.
机译:蔗糖转运蛋白(SUT)在韧皮膜质膜上起着至关重要的作用,将蔗糖装载到源叶韧皮中以远距离运输到下沉器官。水稻有一个由五个SUT组成的小基因家族,即水稻Oryza sativa SUT1(OsSUT1)至OsSUT5。为了鉴定充当韧皮部加载器的水稻SUT,我们通过引入OsSUT,采用了对生长最强的拟南芥韧皮部加载器AtSUC2突变体atsuc2的严重生长迟滞表型的生长恢复测定。水稻SUT基因由两个不同的启动子表达,即AtSUC2的天然韧皮部特异性启动子(pAtSUC2)和花椰菜花叶病毒35S(pCaMV35S)组成型启动子。在所有转基因atsuc2植物中,只有pAtSUC2:OsSUT1以与野生型(WT)相类似的方式与atsuc2突变表型互补,并且与WT相比,回收的可溶性糖和淀粉水平保持一致。这表明OsSUT1是拟南芥AtSUC2的功能直系同源基因,并充当质外生韧皮部加载器。此外,ossut1突变体是通过花药培养产生的,它们的主要碳水化合物水平和生长表型与野生型没有区别。这表明在正常条件下,水稻韧皮部装载机OsSUT1的功能对于水稻营养生长可能不是必不可少的。

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