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Analysis of flavanone 3-hydroxylase in Arabidopsis seedlings. Coordinate regulation with chalcone synthase and chalcone isomerase.

机译:拟南芥幼苗中黄烷酮3-羟化酶的分析。查尔酮合酶和查尔酮异构酶的协调调节。

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摘要

A genomic clone encoding flavanone 3-hydroxylase (F3H) was isolated from Arabidopsis thaliana. The deduced amino acid sequence is 72 to 94% identical to all previously reported F3H proteins. Low-stringency DNA blot analysis indicated that F3H is encoded by a single gene in Arabidopsis. The F3H locus was mapped to the bottom of chromosome 3 and therefore does not correspond to any of the 13 flavonoid-deficient transparent testa mutants for which a map position is known. Analysis of gene expression in etiolated seedlings exposed to white light and in two putative regulatory mutants, ttg and tt8, demonstrated that the Arabidopsis F3H gene is coordinately expressed with chalcone synthase and chalcone isomerases is seedlings, whereas dihydroflavonol reductase expression is controlled by distinct regulatory mechanisms. The F3H gene may represent a pivotal point in the regulation of flavonoid biosynthesis because its expression is coordinated with different subsets of genes in different plant species.
机译:从拟南芥中分离出编码黄烷酮3-羟化酶(F3H)的基因组克隆。推导的氨基酸序列与所有先前报道的F3H蛋白具有72%到94%的同一性。低严格性DNA印迹分析表明,F3H由拟南芥中的单个基因编码。 F3H基因座被定位到3号染色体的底部,因此不对应于13个类黄酮缺乏透明睾丸突变体中的任何一个,该突变体的地图位置已知。分析暴露在白光下的黄化幼苗和两个推定的调节突变体ttg和tt8中的基因表达,结果表明拟南芥F3H基因与查尔酮合酶和查尔酮异构酶协调表达,而二氢黄酮醇还原酶的表达受不同的调控机制控制。 F3H基因可能是类黄酮生物合成调控中的关键点,因为其表达与不同植物物种中基因的不同子集协调。

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