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Phosphoenolpyruvate carboxykinase (PEPCK) deficiency affects the germination, growth and fruit sugar content in tomato (Solanum lycopersicum L.)

机译:磷酸烯醇丙酮酸羧激酶(PEPCK)缺乏会影响番茄(Solanum lycopersicum L.)的发芽,生长和果糖含量

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摘要

Phosphoenolpyruvate carboxykinase (PEPCK) is a key regulatory enzyme and is utilized in the gluconeogenesis pathway in plants. Although, its catalytic and regulatory properties are quite well understood, there are uncertainties regarding its physiological role in many plants tissues such as the flesh of developing fruits. To further understand the function of PEPCK in fruits and other tissues, RNAi transgenic tomato plants in which SlPEPCK transcription was down-regulated by either CaMV 35S constitutive promoter or the fruit-specific E8 promoter were generated and characterized on the basis of their phenotypic and metabolic aspects. In the PEPCK-deficient lines, prominent growth suppression of germinated seedlings was observed and other vegetative suppression appeared during the early stage of plant growth in the 35S promoter-driven lines. In particular, root elongation was most obviously suppressed in the germinated seedlings, indicating that the gluconeogenesis pathway is involved in the root growth of seedlings. Regarding the primary metabolism in fruit, the soluble sugar content tended to decrease, whereas the malate content tended to increase in ripening fruits of the RNAi lines compared with the wild type. These results indicate that activation of the gluconeogenesis pathway from organic acids to sugars occurs during ripening but is suppressed by the knocking down of the PEPCK gene, suggesting that PEPCK participates in determining the sugar/acid ratio in ripening fruit. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:磷酸烯醇丙酮酸羧激酶(PEPCK)是一种关键的调节酶,被用于植物的糖异生途径中。尽管它的催化和调节特性已广为人知,但其在许多植物组织(如发育中的果肉)中的生理作用尚不确定。为了进一步了解PEPCK在水果和其他组织中的功能,生成了RNAi转基因番茄植株,其中通过CaMV 35S组成型启动子或果实特异性E8启动子下调了SlPEPCK转录,并根据其表型和代谢对其进行了表征方面。在缺乏PEPCK的品系中,在35S启动子驱动的品系中,在植物生长的早期阶段观察到了发芽幼苗的显着生长抑制,并且出现了其他营养抑制。特别地,发芽的幼苗中根的伸长最明显地被抑制,这表明糖异生途径与幼苗的根生长有关。关于水果的初级代谢,与野生型相比,RNAi品系的成熟果实中可溶性糖含量趋于降低,而苹果酸含量趋于升高。这些结果表明,在成熟过程中发生了从有机酸到糖的糖异生途径的激活,但是被PEPCK基因的敲除抑制了该现象,表明PEPCK参与确定成熟果实中的糖/酸比率。 (C)2015 Elsevier Masson SAS。版权所有。

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