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首页> 外文期刊>Plant Physiology and Biochemistry >Expression profiles of key phenylpropanoid genes during Vanilla planifolia pod development reveal a positive correlation between PAL gene expression and vanillin biosynthesis
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Expression profiles of key phenylpropanoid genes during Vanilla planifolia pod development reveal a positive correlation between PAL gene expression and vanillin biosynthesis

机译:香草扁平叶荚果发育过程中关键苯基丙烷基因的表达谱揭示了PAL基因表达与香草醛生物合成之间呈正相关

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In Vanilla planifolia pods, development of flavor precursors is dependent on the phenylpropanoid pathway. The distinctive vanilla aroma is produced by numerous phenolic compounds of which vanillin is the most important. Because of the economic importance of vanilla, vanillin biosynthetic pathways have been extensively studied but agreement has not yet been reached on the processes leading to its accumulation. In order to explore the transcriptional control exerted on these pathways, five key phenylpropanoid genes expressed during pod development were identified and their mRNA accumulation profiles were evaluated during pod development and maturation using quantitative real-time PCR. As a prerequisite for expression analysis using qRT-PCR, five potential reference genes were tested, and two genes encoding Actin and EF1 were shown to be the most stable reference genes for accurate normalization during pod development. For the first time, genes encoding a phenylalanine ammonia-lyase(VpPAL1) and a cinnamate 4-hydroxylase (VpC4H1) were identified in vanilla pods and studied during maturation. Among phenylpropanoid genes, differential regulation was observed from 3 to 8 months after pollination. VpPAL1 was gradually up-regulated, reaching the maximum expression level at maturity. In contrast, genes encoding 4HBS, C4H, OMT2 and OMT3 did not show significant increase in expression levels after the fourth month post-pollination. Expression profiling of these key phenylpropanoid genes is also discussed in light of accumulation patterns for key phenolic compounds. Interestingly, VpPAL1 gene expression was shown to be positively correlated to maturation and vanillin accumulation.
机译:在香草扁豆荚中,风味剂前体的形成取决于苯基丙烷的途径。独特的香草香气由多种酚类化合物产生,其中香草醛是最重要的。由于香草的经济重要性,对香草醛的生物合成途径进行了广泛的研究,但在导致其积累的过程中尚未达成共识。为了探索在这些途径上施加的转录控制,鉴定了荚果发育过程中表达的五个关键苯丙氨酸基因,并使用定量实时PCR在荚果发育和成熟过程中评估了它们的mRNA积累概况。作为使用qRT-PCR进行表达分析的先决条件,测试了五个潜在的参考基因,并且两个编码肌动蛋白和EF1的基因被证明是在豆荚发育过程中进行准确标准化的最稳定的参考基因。首次在香草荚中鉴定出编码苯丙氨酸氨解酶(VpPAL1)和肉桂酸4-羟化酶(VpC4H1)的基因,并在成熟过程中对其进行了研究。在苯丙烷基因中,授粉后3至8个月观察到差异调节。 VpPAL1逐渐上调,在成熟时达到最大表达水平。相反,在授粉后第四个月后,编码4HBS,C4H,OMT2和OMT3的基因表达水平没有明显提高。还根据关键酚类化合物的积累模式讨论了这些关键苯基丙烷基因的表达谱。有趣的是,VpPAL1基因表达与成熟和香草醛积累呈正相关。

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