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拟南芥类黄酮生物合成缺陷突变体的分析

Analysis of Arabidopsis mutants deficient in flavonoid biosynthesis.

作者信息

Shirley B W, Kubasek W L, Storz G, Bruggemann E, Koornneef M, Ausubel F M, Goodman H M

机构信息

Department of Biology, Virginia Polytechnic Institute and State University, Blacksburg 24061-0406, USA.

出版信息

Plant J. 1995 Nov;8(5):659-71. doi: 10.1046/j.1365-313x.1995.08050659.x.

Abstract

Eleven loci that play a role in the synthesis of flavonoids in Arabidopsis are described. Mutations at these loci, collectively named transparent testa (tt), disrupt the synthesis of brown pigments in the seed coat (testa). Several of these loci (tt3, tt4, tt5 and ttg) are also required for the accumulation of purple anthocyanins in leaves and stems and one locus (ttg) plays additional roles in trichome and root hair development. Specific functions were previously assigned to tt1-7 and ttg. Here, the results of additional genetic, biochemical and molecular analyses of these mutants are described. Genetic map positions were determined for tt8, tt9 and tt10. Thin-layer chromatography identified tissue- and locus-specific differences in the flavonols and anthocyanidins synthesized by mutant and wild-type plants. It was found that UV light reveals distinct differences in the floral tissues of tt3, tt4, tt5, tt6 and ttg, even though these tissues are indistinguishable under visible light. Evidence was also uncovered that tt8 and ttg specifically affect dihydroflavonol reductase gene expression. A summary of these and previously published results are incorporated into an overview of the genetics of flavonoid biosynthesis in Arabidopsis.

摘要

本文描述了在拟南芥中参与类黄酮合成的11个基因座。这些基因座上的突变,统称为透明种皮(tt),会破坏种皮(种 testa)中棕色色素的合成。其中几个基因座(tt3、tt4、tt5和ttg)对于叶片和茎中紫色花青素的积累也是必需的,并且一个基因座(ttg)在毛状体和根毛发育中还发挥其他作用。之前已确定了tt1 - 7和ttg的具体功能。在此,描述了对这些突变体进行的额外遗传、生化和分子分析的结果。确定了tt8、tt9和tt10的遗传图谱位置。薄层色谱法鉴定了突变体和野生型植物合成的黄酮醇和花青素在组织和基因座上的特异性差异。研究发现,紫外线揭示了tt3、tt4、tt5、tt6和ttg的花组织中存在明显差异,尽管这些组织在可见光下难以区分。还发现了tt8和ttg特异性影响二氢黄酮醇还原酶基因表达的证据。这些结果以及之前发表的结果被纳入了拟南芥类黄酮生物合成遗传学的概述中。

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