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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Fruit-specific over-expression of human S-adenosylmethionine decarboxylase gene results in polyamine accumulation and affects diverse aspects of tomato fruit development and quality.
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Fruit-specific over-expression of human S-adenosylmethionine decarboxylase gene results in polyamine accumulation and affects diverse aspects of tomato fruit development and quality.

机译:人类S-腺苷甲硫氨酸脱羧酶基因的果实特异性过量表达导致多胺积累,并影响番茄果实发育和品质的各个方面。

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摘要

Polyamines (PAs) have been implicated in fruit ripening where they antagonize the action of ethylene: a ripening inducing phytohormone. S-adenosylmethionine decarboxylase (SAMDC) is a key enzyme involved biosynthesis of higher PAs- spermidine and spermine. Here, we report the genetic modification of tomato fruit ripening and quality by over-expressing human-SAMDC driven by fruit-specific promoter (2A11). The PA analysis of ripening fruits from these transgenics showed elevated PA levels in comparison to wild-type (WT). The increased levels of higher PAs are correlated with the accumulation of heterologous SAMDC transcripts in such fruits. Transgenic fruits exhibited reduced levels of ethylene (~50 %) production, ~10 days delay in on-vine ripening and extended post-harvest storage of ~11 days as compared to the WT fruits. As a result, these fruits showed improvement in various ripening traits like enhanced lycopene, vitamin C and total soluble solid. In Lesam fruits, an up-regulated expression of SlySAMDC, SlyEXP1, SlyTBG4, SlyDXS 1 and SlyPSY 1 was observed, while ethylene biosynthesis genes were down-regulated. Here, we have demonstrated the important role of PAs in altering the molecular and biochemical processes underlying fruit ripening by interfering with the ethylene biosynthesis
机译:多胺(PAs)与水果成熟有关,它们能拮抗乙烯的作用:乙烯是一种成熟的诱导植物激素。 S-腺苷甲硫氨酸脱羧酶(SAMDC)是涉及较高PAs-亚精胺和亚精胺生物合成的关键酶。在这里,我们报告了通过过度表达由果实特异性启动子(2A11)驱动的人SAMDC对番茄果实成熟和品质的遗传修饰。与野生型(WT)相比,这些转基因成熟果实的PA分析显示PA水平升高。高水平PA的增加与此类水果中异源SAMDC转录本的积累相关。与野生型水果相比,转基因水果表现出降低的乙烯水平(约50%),在葡萄上成熟延迟约10天,收获后的贮藏时间延长约11天。结果,这些果实表现出各种成熟特性的改善,例如番茄红素,维生素C和总可溶性固形物的增强。在Lesam水果中,观察到SlySAMDC,SlyEXP1,SlyTBG4,SlyDXS 1和SlyPSY 1的表达上调,而乙烯生物合成基因被下调。在这里,我们已经证明了PA可以通过干扰乙烯的生物合成,在改变果实成熟的分子和生化过程中发挥重要作用

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