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Metabolic engineering in strawberry fruit uncovers a dormant biosynthetic pathway.

机译:草莓果实中的代谢工程揭示了休眠的生物合成途径。

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Wild strawberry (Fragaria vesca) fruit contains several important phenylpropene aroma compounds such as eugenol, but cultivated varieties are mostly devoid of them. We have redirected the carbon flux in cultivated strawberry (Fragariaxananassa) fruit from anthocyanin pigment biosynthesis to the production of acetates of hydroxycinnamyl alcohols, which serve as the precursors of the phenylpropenes, by downregulating the strawberry chalcone synthase (CHS) via RNAi-mediated gene silencing and, alternatively, by an antisense CHS construct. Simultaneous heterologous overexpression of a eugenol (EGS) and isoeugenol synthase (IGS) gene in the same cultivated strawberry fruits boosted the formation of eugenol, isoeugenol, and the related phenylpropenes chavicol and anol to concentrations orders of magnitude greater than their odor thresholds. The results show that Fragariaxananassa still bears a phenylpropene biosynthetic pathway but the carbon flux is primarily directed to the formation of pigments. Thus, partial restoration of wild strawberry flavor in cultivated varieties is feasible by diverting the flavonoid pathway to phenylpropene synthesis through metabolic engineering.
机译:野草莓(Fragaria vesca)果实含有几种重要的苯丙烯香气化合物,例如丁子香酚,但栽培品种中大多没有它们。我们已通过RNAi介导的基因沉默下调草莓查尔酮合酶(CHS),从而将栽培草莓(Fragariaxananassa)果实中的碳通量从花色苷色素的生物合成转向了羟基肉桂醇乙酸酯的生产,而后者是苯丙烯的前体。或者,通过反义CHS构建体。同一栽培草莓果实中丁香酚(EGS)和异丁香酚合酶(IGS)基因同时异源过量表达促进了丁香酚,异丁香酚和相关苯丙烯醛查维醇和醇的形成,其浓度均高于其气味阈值。结果表明,草莓(Fragariaxananassa)仍然带有苯丙烯生物合成途径,但碳通量主要是直接形成颜料。因此,通过将黄酮类途径通过代谢工程转移至苯丙烯合成,在栽培品种中部分恢复野草莓风味是可行的。

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