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R2R3-MYB、bHLH和WDR转录调节因子的cDNA分离以及对日本牵牛花中导致白花的c和ca突变的鉴定。

Isolation of cDNAs for R2R3-MYB, bHLH and WDR transcriptional regulators and identification of c and ca mutations conferring white flowers in the Japanese morning glory.

作者信息

Morita Yasumasa, Saitoh Miho, Hoshino Atsushi, Nitasaka Eiji, Iida Shigeru

机构信息

National Institute for Basic Biology, Okazaki, 444-8585 Japan.

出版信息

Plant Cell Physiol. 2006 Apr;47(4):457-70. doi: 10.1093/pcp/pcj012. Epub 2006 Jan 30.

Abstract

The transcriptional regulators for anthocyanin biosynthesis include members of proteins containing an R2R3-MYB domain, a bHLH (basic helix-loop-helix) domain and conserved WD40 repeats (WDRs). Spacial and temporal expression of the structural genes encoding the enzymes for anthocyanin biosynthesis is thought to be determined by combinations of the R2R3-MYB, bHLH and WDR factors and their interactions. While the wild-type Japanese morning glory (Ipomoea nil) exhibits blue flowers with colored stems and dark-brown seeds, the c mutants display white flowers with red stems and colored seeds, and the ca mutants exhibit white flowers with green stems and ivory seeds. Here, we characterize the tissue-specific expression of three MYB genes, three bHLH genes and two WDR genes in I. nil. We also show that the recessive c-1 and ca alleles are frameshift mutations caused by a 2 bp deletion and 7 bp insertions in the genes for the R2R3-MYB and WDR transcriptional regulators designated as InMYB1 and InWDR1, respectively. In addition to defects in flower, stem and seed pigmentations, the ca mutants were found to show reduced trichome formation in seeds but to produce leaf and stem trichomes and root hairs normally. Except for the gene for chalcone synthase E in the ca mutant, all structural genes tested were coordinately reduced in both c-1 and ca mutant flower limbs. However, slight but significant expression of the genes for chalcone synthase D, chalcone isomerase and flavanone 3-hydroxylase in the pathway for flavonol biosynthesis was detectable in c-1 and ca mutants, whereas no such residual expression could be observed in other genes involved in the later anthocyanin biosynthesis pathway. The biological roles of the C-1 and Ca genes in I. nil epidermal traits and their evolutionary implications are also discussed.

摘要

花青素生物合成的转录调节因子包括含有R2R3-MYB结构域、bHLH(碱性螺旋-环-螺旋)结构域和保守WD40重复序列(WDRs)的蛋白质成员。编码花青素生物合成酶的结构基因的时空表达被认为是由R2R3-MYB、bHLH和WDR因子及其相互作用的组合所决定的。野生型日本牵牛(Ipomoea nil)开蓝色花,茎有色,种子深褐色,而c突变体开白色花,茎红色,种子有色,ca突变体开白色花,茎绿色,种子象牙色。在这里,我们对牵牛中三个MYB基因、三个bHLH基因和两个WDR基因的组织特异性表达进行了表征。我们还表明,隐性c-1和ca等位基因是由分别在指定为InMYB1和InWDR1的R2R3-MYB和WDR转录调节因子基因中2 bp缺失和7 bp插入引起的移码突变。除了ca突变体中查尔酮合酶E基因的缺陷外(此处原文似乎有误,推测可能是想说除了ca突变体中查尔酮合酶E基因的表达情况外),在c-1和ca突变体的花器官中,所有测试的结构基因的表达都协同降低。然而,在c-1和ca突变体中,在黄酮醇生物合成途径中查尔酮合酶D、查尔酮异构酶和黄烷酮3-羟化酶基因有轻微但显著的表达,而在花青素生物合成后期途径的其他基因中未观察到这种残留表达。我们还讨论了牵牛中C-1和Ca基因在表皮性状中的生物学作用及其进化意义。 (括号内为对原文可能存在错误的推测性补充说明)

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