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Induced point mutations in the phytoene synthase 1 gene cause differences in carotenoid content during tomato fruit ripening.

机译:在番茄果实成熟过程中,八氢番茄红素合酶1基因中的诱导点突变导致类胡萝卜素含量的差异。

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In tomato, carotenoids are important with regard to major breeding traits such as fruit colour and human health. The enzyme phytoene synthase (PSY1) directs metabolic flux towards carotenoid synthesis. Through TILLING (Targeting Induced Local Lesions IN Genomes), we have identified two point mutations in the Psy1 gene. The first mutation is a knockout allele (W180*) and the second mutation leads to an amino acid substitution (P192L). Plants carrying the Psy1 knockout allele show fruit with a yellow flesh colour similar to the r, r mutant, with no further change in colour during ripening. In the line with P192L substitution, fruit remain yellow until 3 days post-breaker and eventually turn red. Metabolite profiling verified the absence of carotenoids in the W180* line and thereby confirms that PSY1 is the only enzyme introducing substrate into the carotenoid pathway in ripening fruit. More subtle effects on carotenoid accumulation were observed in the P192L line with a delay in lycopene and beta-carotene accumulation clearly linked to a very slow synthesis of phytoene. The observation of lutein degradation with ripening in both lines showed that lutein and its precursors are still synthesised in ripening fruit. Gene expression analysis of key genes involved in carotenoid biosynthesis revealed that expression levels of genes in the pathway are not feedback-regulated by low levels or absence of carotenoid compounds. Furthermore, protein secondary structure modelling indicated that the P192L mutation affects PSY1 activity through misfolding, leading to the low phytoene accumulation. copyright The Author(s) 2011.
机译:在番茄中,类胡萝卜素对于主要的繁殖特性(如水果颜色和人体健康)很重要。八氢番茄红素合酶(PSY1)将代谢通量导向类胡萝卜素的合成。通过TILLING(靶向基因组中的局部诱发病变),我们已经确定了 Psy1 基因中的两个点突变。第一个突变是敲除等位基因(W180 *),第二个突变导致氨基酸取代(P192L)。携带 Psy1 敲除等位基因的植物显示出具有与 r,r 突变体相似的黄色肉色的果实,并且在成熟过程中颜色没有进一步变化。在用P192L替代品系中,果实保持黄色直到破裂后3天,最后变成红色。代谢物谱分析证实了W180 *品系中不存在类胡萝卜素,从而证实PSY1是唯一将酶引入底物到成熟果实中的类胡萝卜素途径的酶。在P192L品系中观察到了对类胡萝卜素积累的更微妙的影响,番茄红素和β-胡萝卜素积累的延迟显然与极缓慢的植物生长素合成有关。叶绿素在两个品系中均随着成熟而降解的观察结果表明,叶黄素及其前体仍在成熟果实中合成。对参与类胡萝卜素生物合成的关键基因的基因表达分析表明,该途径中基因的表达水平不受类胡萝卜素水平低或不存在反馈调节。此外,蛋白质二级结构建模表明,P192L突变通过错误折叠影响PSY1活性,从而导致较低的植烯积累。版权2011作者。

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