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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Pigment accumulation and transcription of LhMYB12 and anthocyanin biosynthesis genes during flower development in the Asiatic hybrid lily (Lilium spp.)
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Pigment accumulation and transcription of LhMYB12 and anthocyanin biosynthesis genes during flower development in the Asiatic hybrid lily (Lilium spp.)

机译:亚洲杂种百合(Lilium spp。)花发育过程中LhMYB12和花色苷生物合成基因的色素积累和转录

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Anthocyanin biosynthesis is often regulated by MYB transcription factors that are classified into AN2 and C1 subgroups. The AN2 subgroup regulates the late genes in the anthocyanin biosynthesis pathway of eudicots, whereas the C1 subgroup controls both early and late genes in monocots. Anthocyanin is a major pigment in Asiatic hybrid lilies (Lilium spp.), with LhMYB12 being the first AN2 subgroup in monocots. In this study, the accumulation of pigments and gene transcripts during flower bud development was evaluated to determine the genes regulated by LhMYB12. LhMYB12 and anthocyanin biosynthesis genes showed the same transcription profiles, with LhMYB12 directly activating the promoters of chalcone synthase and dihydroflavonol 4-reductase. This indicates that LhMYB12 regulates both early and late genes, despite belonging to the AN2 subgroup. The cultivar Landini accumulated anthocyanin and flavonol. The contents of these pigments increased during the late stages of flower bud development; this might result from the coordinated expression of early and late genes. During the early stages of flower bud development, the tepals contained no flavonoids but accumulated cinnamic acid derivatives. These results indicate that the profiles of pigment accumulation and gene transcription in lily tepals are unique among angiosperm flowers
机译:花青素的生物合成通常受MYB转录因子调控,该因子被分为AN2和C1子组。 AN2子群调节双子叶植物花色苷生物合成途径中的晚期基因,而C1子群控制单子叶植物中的早期和晚期基因。花色素苷是亚洲杂种百合(百合属)中的主要色素,LhMYB12是单子叶植物中的第一个AN2亚组。在这项研究中,评估了花蕾发育过程中色素和基因转录物的积累,以确定由LhMYB12调控的基因。 LhMYB12和花色苷生物合成基因显示出相同的转录谱,其中LhMYB12直接激活查尔酮合酶和二氢黄酮4-还原酶的启动子。这表明LhMYB12尽管属于AN2亚组,但同时调节早期和晚期基因。品种Landini积累了花色苷和黄酮醇。在花蕾发育的后期,这些色素的含量增加了。这可能是由于早期和晚期基因的协同表达所致。在花蕾发育的早期阶段,这些花pal不含黄酮,但积累了肉桂酸衍生物。这些结果表明百合皮中色素积累和基因转录的特征在被子植物花中是独特的

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