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小麦和黑麦磷酸丙糖异构酶同工酶的遗传控制。

Genetic control of triosephosphate isomerase isoenzymes in wheat and rye.

机构信息

Botanisches Institut der Johann-Wolfgang-Goethe-Universität, Postfach 1119 32, D-6000, Frankfurt/M, Federal Republic of Germany.

出版信息

Theor Appl Genet. 1986 Jun;72(3):359-63. doi: 10.1007/BF00288573.

Abstract

The patterns of chloroplastic and cytosolic isoenzymes of triosephosphate isomerase were analysed by immunoblotting in leaves of rye, wheat, and some species of Aegilops or Agropyrum. While rye contained solely one chloroplastic and one cytosolic isoenzyme, wheat had a much more complex pattern which can be explained by the presence of three genomes in 6 x wheats (AABBDD) with distinct triosephosphate isomerase genes that provided different subunit species for the dimeric isoenzyme molecules. The 6 × wheats contained five, the 4 × wheats three, and the 2 × wheats only one chloroplastic isoenzyme band. The isoenzyme patterns were in accordance with a potential origin of one of the three chloroplastic triosephosphate isomerase genes of 6 × wheats from an Aegilops ancestor. The descent of the other two genes was, however, not in accordance with common contentions on the general evolution of cultural wheats. In the reciprocal intergeneric hybrids Secalotricum and Triticale both the chloroplastic and the cytosolic isoenzyme patterns of rye and wheat were biparentally inherited, indicating that both isoenzymes were controlled by nuclear genes. When monitored by immunoblotting the chloroplastic triosephosphate isomerase isoenzymes may provide useful genetic markers.

摘要

通过免疫印迹分析了黑麦、小麦和一些冰草属或偃麦草属植物叶片中三磷酸甘油醛异构酶的质体和胞质同工酶模式。黑麦只含有一种质体和一种胞质同工酶,而小麦的模式则要复杂得多,这可以用 6x 小麦(AABBDD)中存在三个基因组来解释,这三个基因组具有不同的三磷酸甘油醛异构酶基因,为二聚体同工酶分子提供了不同的亚基种类。6x 小麦含有 5 种,4x 小麦含有 3 种,2x 小麦只含有 1 种质体同工酶带。同工酶模式与 6x 小麦中三个质体三磷酸甘油醛异构酶基因之一可能来自冰草属祖先的潜在起源一致。然而,另外两个基因的起源与关于文化小麦一般进化的普遍观点不一致。在属间杂种节节麦和黑小麦中,黑麦和小麦的质体和胞质同工酶模式都是双亲遗传的,这表明这两种同工酶都是由核基因控制的。当通过免疫印迹监测时,质体三磷酸甘油醛异构酶同工酶可能提供有用的遗传标记。

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