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A Rice B-Box Protein OsBBX14 Finely Regulates Anthocyanin Biosynthesis in Rice

机译:水稻B-Box蛋白OsBBX14精细调节水稻中花色苷的生物合成

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摘要

Anthocyanins are responsible pigments for giving attractive colors of plant organs and nutraceutical benefits of grains. Anthocyanin biosynthesis is known to be regulated by transcription factors and other regulatory proteins. In rice (Oryza sativa), the R2R3 MYB transcription factor (TF) OsC1 and a bHLH TF, OsB2, were previously reported to control anthocyanin biosynthesis in vegetative tissues and seeds, respectively; however, the regulatory mechanisms of the anthocyanin biosynthesis by TFs remain largely unknown. In this study, we identified OsBBX14, a homolog of Arabidopsis thaliana B-box domain protein 22 (AtBBX22), and investigated its function. The transcript level of OsBBX14 was high in pigmented rice seeds and gradually increased as the seeds matured. The ectopic expression of OsBBX14 in Arabidopsis resulted in a dramatic increase in anthocyanin accumulation in its seedlings. Using a steroid receptor-based inducible activation system, OsBBX14 and OsHY5 were found to directly activate OsC1 or OsB2 in an independent or collaborative manner. Yeast two hybrid revealed that the second B-box domain of OsBBX14 physically interacts with the bZIP domain of OsHY5. These results suggest that the anthocyanin biosynthesis in rice is induced and finely tuned by OsBBX14 in collaboration with OsHY5.
机译:花青素是负责任的颜料,可赋予植物器官迷人的色彩和谷物的营养保健功效。已知花青素的生物合成受转录因子和其他调节蛋白的调节。据报道,在水稻中,R2R3 MYB转录因子(TF)OsC1和bHLH TF OsB2分别控制营养组织和种子中的花青素生物合成。然而,TF的花色苷生物合成的调节机制仍然未知。在这项研究中,我们鉴定了拟南芥B-box域蛋白22(AtBBX22)的同源物OsBBX14,并研究了其功能。在有色水稻种子中,OsBBX14的转录水平较高,并且随着种子的成熟逐渐增加。 OsBBX14在拟南芥中的异位表达导致其花青素积累显着增加。使用基于类固醇受体的诱导激活系统,发现OsBBX14和OsHY5以独立或协作方式直接激活OsC1或OsB2。酵母2杂种显示OsBBX14的第二个B-box域与OsHY5的bZIP域发生物理相互作用。这些结果表明,OsBBX14与OsHY5协同诱导并精细调节了水稻中的花色苷生物合成。

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