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Molecular characterization of genes encoding leucoanthocyanidin reductase involved in proanthocyanidin biosynthesis in apple

机译:苹果中原花青素生物合成中涉及的花青素还原酶编码基因的分子表征

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Proanthocyanidins (PAs) are the major component of phenolics in apple, but mechanisms involved in PA biosynthesis remain unclear. Here, the relationship between the PA biosynthesis and the expression of genes encoding leucoanthocyanidin reductase (LAR) and anthocyanidin reductase (ANR) was investigated in fruit skin of one apple cultivar and three crabapples. Transcript levels of LAR1 and ANR2 genes were significantly correlated with the contents of catechin and epicatechin, respectively, which suggests their active roles in PA synthesis. Surprisingly, transcript levels for both LAR1 and LAR2 genes were almost undetectable in two crabapples that accumulated both flavan-3-ols and PAs. This contradicts the previous finding that LAR1 gene is a strong candidate regulating the accumulation of metabolites such as epicatechin and PAs in apple. Ectopic expression of apple MdLAR1 gene in tobacco suppresses expression of the late genes in anthocyanin biosynthetic pathway, resulting in loss of anthocyanin in flowers. Interestingly, a decrease in PA biosynthesis was also observed in flowers of transgenic tobacco plants overexpressing the MdLAR1 gene, which could be attributed to decreased expression of both the NtANR1 and NtANR2 genes. Our study not only confirms the in vivo function of apple LAR1 gene, but it is also helpful for understanding the mechanism of PA biosynthesis.
机译:原花青素(PAs)是苹果中酚类化合物的主要成分,但参与PA生物合成的机制尚不清楚。在这里,在一个苹果品种和三个海棠果的果皮中研究了PA生物合成与编码白花青素还原酶(LAR)和花青素还原酶(ANR)的基因表达之间的关系。 LAR1和ANR2基因的转录水平分别与儿茶素和表儿茶素的含量显着相关,这表明它们在PA合成中起积极作用。出乎意料的是,在积累了flavan-3-ols和PAs的两个海棠中,几乎检测不到LAR1和LAR2基因的转录水平。这与先前的发现相反,即LAR1基因是调节苹果中表儿茶素和PAs等代谢产物蓄积的强有力候选者。苹果MdLAR1基因在烟草中的异位表达抑制了花青素生物合成途径中后期基因的表达,从而导致花朵中花青素的损失。有趣的是,在过表达MdLAR1基因的转基因烟草植物的花中也观察到PA生物合成的减少,这可能归因于NtANR1和NtANR2基因的表达减少。我们的研究不仅证实了苹果LAR1基因的体内功能,而且对理解PA生物合成的机理也有帮助。

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