Institut für Biologie II, Lehrstuhl für Genetik der Universität Tübingen, Auf der Morgenstelle 28, D-7400, Tübingen, Federal Republic of Germany.
Planta. 1978 Jan;138(3):199-203. doi: 10.1007/BF00386811.
A mutant blocked in anthocyanin synthesis leads to an accumulation of 4,2',4',6'-tetrahydroxy-chalcone-2'-glucoside (isosalipurposide) in blossoms of Callistephus chinesis (L.) Nees, whereas in geno-types with the wild-type allele, higher oxidized flavonoids and anthocyanins are synthesized. Measurements of chalcone-flavanone isomerase activity of 18 lines of Callistephus chinensis showed a clear correlation between accumulation of chalcone in the recessive genotypes (ch ch) and deficiency of this enzyme activity. Both the chemogenetic and the enzymologic evidence lead to the following conclusions: 1. The first product of the synthesis of the flavonoid skeleton should be tetrahydroxychalcone.-2. The chalcone-flavanone isomerase catalyzes the formation of flavanone from chalcone in a stereospecific way and there-with furnishes the substrate for the further reactions in the flavonoid biosynthesis.
一个突变体在花色苷合成中受阻,导致翠菊(Callistephus chinesis(L.)Nees)花朵中积累 4,2',4',6'-四羟基查尔酮-2'-葡萄糖苷(异绿原酸),而在具有野生型等位基因的基因型中,会合成更高氧化的类黄酮和花色苷。对翠菊的 18 个品系的查尔酮-二氢黄酮异构酶活性进行测量,结果表明在隐性基因型(ch ch)中查尔酮的积累与该酶活性的缺乏之间存在明显的相关性。化学遗传学和酶学证据都得出以下结论:1. 类黄酮骨架合成的第一个产物应该是四羟基查尔酮。2. 查尔酮-二氢黄酮异构酶以立体特异性的方式催化查尔酮形成二氢黄酮,并为类黄酮生物合成中的进一步反应提供底物。