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首页> 外文期刊>Journal of Experimental Botany >Genetic suppression analysis in novel vacuolar processing enzymes reveals their roles in controlling sugar accumulation in tomato fruits
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Genetic suppression analysis in novel vacuolar processing enzymes reveals their roles in controlling sugar accumulation in tomato fruits

机译:新型液泡加工酶的遗传抑制分析揭示了它们在控制番茄果实糖分积累中的作用

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摘要

In plant cells, many vacuolar proteins are synthesized as precursors in the endoplasmic reticulum and are subsequently transported to the vacuole. These precursors are subject to post-translational modifications to allow the active mature forms to be produced. Vacuolar processing enzyme (VPE) has been identified as a family of cysteine proteases involved in protein maturation in the vacuole. In this study, novel VPE genes were isolated from tomato (Solanum lycopersicum), and they were designated SlVPE1–SlVPE5. Phylogenic analysis suggested that SlVPE1 and SlVPE2 were categorized as the seed coat type, SlVPE4 was categorized as the seed type, and both SlVPE3 and SlVPE5 were categorized as the vegetative type. Expression analysis demonstrated that these genes were expressed during fruit development, and that their expression profiles agreed with this classification. High VPE enzyme activity was observed during tomato fruit development; the enzyme activity was correlated with the SlVPE mRNA levels, indicating that the SlVPE encoded active VPE proteins. The total sugar content was higher in RNA interference (RNAi) lines compared with the control plants, suggesting negative roles for SlVPE in sugar accumulation. The quantitative expression analysis of each SlVPE gene in the RNAi lines suggested that the suppression of SlVPE5 probably had the strongest effect on the sugar accumulation observed. The suppression of SlVPE did not influence the total amino acid content, suggesting that the molecular targets of SlVPE were mainly involved in sugar accumulation.
机译:在植物细胞中,许多液泡蛋白被合成为内质网的前体,随后被转运至液泡。对这些前体进行翻译后修饰,以产生活性成熟形式。液泡加工酶(VPE)已被鉴定为参与液泡中蛋白质成熟的半胱氨酸蛋白酶家族。在这项研究中,新的VPE基因是从番茄(Solanum lycopersicum)中分离出来的,它们被命名为SlVPE1-SlVPE5。系统发育分析表明,SlVPE1和SlVPE2被分类为种皮类型,SlVPE4被分类为种子类型,SlVPE3和SlVPE5均被分类为营养类型。表达分析表明,这些基因在果实发育过程中表达,并且它们的表达谱与该分类一致。在番茄果实发育过程中观察到高的VPE酶活性;酶活性与SlVPE mRNA水平相关,表明SlVPE编码活性VPE蛋白。与对照植物相比,RNA干扰(RNAi)品系中的总糖含量更高,表明SlVPE在糖积累中具有负作用。对RNAi系中每个SlVPE基因的定量表达分析表明,抑制SlVPE5可能对观察到的糖分积累具有最强的作用。对SlVPE的抑制不影响总氨基酸含量,表明SlVPE的分子靶标主要参与糖的积累。

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