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A tomato plastidic ATP/ADP transporter gene SIAATP increases starch content in transgenic Arabidopsis

机译:番茄质体ATP / ADP转运蛋白基因SIAATP增加了转基因拟南芥中的淀粉含量

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摘要

A plastidic ATP/ADP transporter (AATP) is responsible for importing ATP from the cytosol into plas-tids. Increasing the ATP supply is a potential way to facilitate anabolic synthesis in heterotrophic plastids of plants. In this work, a gene encoding the AATP protein, named SIAATP, was successfully isolated from tomato. Expression of SIAATP was induced by exogenous sucrose treatment in tomato. The coding region of SIAATP was cloned into a binary vector under the control of 35S promoter and then transformed into Arabidopsis to obtain transgenic plants. Constitutive expression of SIAATP significantly increased the starch accumulation in the transgenic plants. Real-time quantitative PCR (qRT-PCR) analysis showed that constitutive expression of StAATP up-regulated the expression of phosphoglucomutase (AtPGM), ADP-glucose pyrophosphorylase (AtAGPase), granule-bound starch synthase (AtGBSS I and AtGBSS IT), soluble starch synthases (AtSSS I, AtSSS II, AtSSS III and AtSSS IV) and starch branching enzyme (AtSBE I and AtSBE II) genes involved in starch biosynthesis in the transgenic Arabidopsis plants. Meanwhile, enzymatic analyses indicated that the major enzymes (AGPase, GBSS, SSS and SBE) involved in the starch biosynthesis exhibited higher activities inthe transgenic plants compared to the wild-type (WT). These findings suggest that SIAATP may improve starch content of Arabidopsis by up-regulating theexpression of the related genes and increasing the activities of the major enzymes invovled in starch biosynthesis. The manipulation of SIAATP expression might be used for increasing starch accumulation of plants in the future.
机译:质体ATP / ADP转运蛋白(AATP)负责将ATP从胞质溶胶导入血浆中。增加ATP供应是促进植物异养质体合成代谢合成的潜在途径。在这项工作中,成功地从番茄中分离出了一种编码AATP蛋白的基因SIAATP。 SIAATP的表达是通过外源蔗糖处理在番茄中诱导的。将SIAATP的编码区在35S启动子的控制下克隆到二元载体中,然后转化到拟南芥中以获得转基因植物。 SIAATP的组成型表达显着增加了转基因植物中的淀粉积累。实时定量PCR(qRT-PCR)分析显示,StAATP的组成型表达上调了可溶的葡萄糖磷酸变位酶(AtPGM),ADP-葡萄糖焦磷酸化酶(AtAGPase),颗粒结合淀粉合酶(AtGBSS I和AtGBSS IT)的表达淀粉合酶(AtSSS I,AtSSS II,AtSSS III和AtSSS IV)和淀粉分支酶(AtSBE I和AtSBE II)基因参与了转基因拟南芥植物的淀粉生物合成。同时,酶分析表明,与野生型(WT)相比,参与淀粉生物合成的主要酶(AGPase,GBSS,SSS和SBE)在转基因植物中表现出更高的活性。这些发现表明,SIAATP可能通过上调相关基因的表达并增加淀粉生物合成中涉及的主要酶的活性来提高拟南芥的淀粉含量。 SIAATP表达的操纵可能在将来用于增加植物的淀粉积累。

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