Piazza Paolo, Procissi Antonia, Jenkins Gareth I, Tonelli Chiara
Dipartmento di Genetica e di Biologia dei Microrganism, Milano, Italy.
Plant Physiol. 2002 Mar;128(3):1077-86. doi: 10.1104/pp.010799.
We investigated the role of transcription factors (R, SN, C1, and PL) in the regulation of anthocyanin biosynthesis by different light qualities (white, red, blue, and ultraviolet) and by cytokinin in maize (Zea mays). We analyzed anthocyanin accumulation, structural gene expression, and regulatory gene expression in the seed aleurone and the seedling mesocotyl. In the mesocotyl, white, blue, and ultraviolet-B light strongly induced anthocyanin accumulation and expression of two key structural genes. In contrast, red light had little effect. Cytokinin enhanced the response to light but was not sufficient to induce anthocyanin accumulation in darkness. Plants with the pl-bol3 allele showed high levels of anthocyanin accumulation in response to light, whereas those with the pl-W22 allele did not, demonstrating the importance of pl1 in the light response. The expression of the pl-bol3 gene, encoding an MYB-related transcription factor, was induced by light and enhanced by cytokinin in a very similar manner to the structural genes and anthocyanin accumulation. Expression of the bHLH (basic helix-loop-helix) Sn1-bol3 gene was stimulated by several light qualities, but not enhanced by cytokinin, and was less well correlated with the induction of anthocyanin biosynthesis. In the aleurone, white, red, and blue light were effective in stimulating anthocyanin accumulation and expression of the MYB-related gene C1. The bHLH R gene was constitutively expressed. We conclude that specific members of the MYB-related c1/pl1 gene family play important roles in the regulation of anthocyanin synthesis in maize in response to different light qualities and cytokinin.
我们研究了转录因子(R、SN、C1和PL)在不同光质(白光、红光、蓝光和紫外线)以及细胞分裂素对玉米(Zea mays)花青素生物合成调控中的作用。我们分析了种子糊粉层和幼苗中胚轴中的花青素积累、结构基因表达和调控基因表达。在中胚轴中,白光、蓝光和紫外线B强烈诱导花青素积累以及两个关键结构基因的表达。相比之下,红光的影响很小。细胞分裂素增强了对光的反应,但不足以在黑暗中诱导花青素积累。具有pl-bol3等位基因的植株对光反应时花青素积累水平较高,而具有pl-W22等位基因的植株则不然,这表明pl1在光反应中很重要。编码MYB相关转录因子的pl-bol3基因的表达受到光诱导,并被细胞分裂素以与结构基因和花青素积累非常相似的方式增强。bHLH(碱性螺旋-环-螺旋)Sn1-bol3基因的表达受到几种光质的刺激,但未被细胞分裂素增强,且与花青素生物合成的诱导相关性较差。在糊粉层中,白光、红光和蓝光有效地刺激了花青素积累以及MYB相关基因C1的表达。bHLH R基因组成型表达。我们得出结论,MYB相关的c1/pl1基因家族的特定成员在玉米响应不同光质和细胞分裂素调控花青素合成中起重要作用。