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Promotion of flavonoid biosynthesis in leaves and calli of ornamental crabapple (Malus sp.) by high carbon to nitrogen ratios

机译:高碳氮比促进观赏海棠(Malus sp。)叶片和愈伤组织中类黄酮的生物合成

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摘要

Flavonoids are secondary metabolites that play important roles in plant physiology. Despite numerous studies examined the effects of available carbon (C) or nitrogen (N) on flavonoid biosynthesis, the mechanism of C/N interactive effects on flavonoid metabolism is still unclear. In this study, we analyzed the composition of flavonoids and the expression levels of flavonoid-related genes in leaves and calli of crabapple (Malus sp.) cultivars with different leaf colors grown on media with different C/N ratios. Our results show that high C/N ratios induce anthocyanin pigmentation in leaves of the ever-red cultivar ‘Royalty’ and the spring-red cultivar ‘Prairifire,’ as well as in three types of calli derived from the ever-green cultivar ‘Spring Snow,’ but not in the leaves of the ever-green cultivar ‘Flame.’ This phenomenon therefore correlated with anthocyanin content in these different samples. In addition, high C/N ratios in the growth media resulted in an increase in the concentration of flavones and flavonols in the leaves of the three crabapple cultivars. The transcript levels of the general flavonoid pathway genes [from chalcone synthase (CHS) to uridine diphosphat-glucose: flavonoid 3-O-glycosyltransferase (UFGT) and flavonol synthase (FLS)] increased in response to high C/N ratios, and this in turn was correlated with the concentration of anthocyanins, flavones and flavonols in the leaves and calli. Expression of the late flavonoid/anthocyanin biosynthetic genes, anthocyanidin synthase (ANS), UFGT and FLS in particular, was more strongly influenced by C/N ratios than other structural genes, and the increased expression of the structural genes under high C/N ratios coincided with a coordinated increase in transcript levels of a MYB transcription factor, MYB10. These results are likely to be useful for future generation of plants with an optimized flavonoid/anthocyanin content or desirable organ coloration.
机译:类黄酮是次生代谢产物,在植物生理中起重要作用。尽管进行了大量研究,研究了可利用的碳(C)或氮(N)对类黄酮生物合成的影响,但C / N交互作用对类黄酮代谢的机制仍不清楚。在这项研究中,我们分析了在不同C / N比培养基上生长的不同叶色的海棠(Malus sp。)品种叶片和愈伤组织中类黄酮的组成和类黄酮相关基因的表达水平。我们的研究结果表明,高C / N比会在常绿品种'Royalty'和春季红品种'Prairifire'以及源自常绿品种'Spring'的三种类型的愈伤组织中诱导花色苷色素沉着。下雪,而不是常绿品种'Flame'的叶子。因此,这种现象与这些不同样品中的花青素含量有关。此外,生长培养基中高的C / N比导致三种海棠品种叶片中黄酮和黄酮醇的浓度增加。一般的类黄酮途径基因的转录水平[从查尔酮合酶(CHS)到尿苷二磷酸-葡萄糖:类黄酮3-O-糖基转移酶(UFGT)和类黄酮合酶(FLS)]响应于高C / N比而增加,并且这进而与叶片和愈伤组织中花色苷,黄酮和黄酮醇的浓度相关。晚黄酮/花青素生物合成基因的表达,特别是花青素合酶(ANS),UFGT和FLS的表达受C / N比的影响比其他结构基因更强烈,并且在高C / N比下结构基因的表达增加恰好与MYB转录因子MYB10的转录水平的协调增加相吻合。这些结果可能对具有优化的类黄酮/花色素苷含量或所需器官着色的下一代植物有用。

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