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蓝盆花中葡萄糖磷酸异构酶和磷酸葡萄糖酸脱氢酶结构基因的复制及其在川续断科中的系统发育意义

Duplication of the structural gene for glucosephosphate isomerase and phosphogluconate dehydrogenase in Scabiosa columbaria and their phylogenetic implications in the dipsacaceae.

作者信息

Van Treuren R, Bijlsma R

机构信息

Department of Genetics, University of Groningen, The Netherlands.

出版信息

Biochem Genet. 1992 Feb;30(1-2):99-109. doi: 10.1007/BF00554431.

Abstract

Zymograms of glucosephosphate isomerase (GPI) and phosphogluconate dehydrogenase (PGD) revealed three isozymes for each enzyme in the plant species Scabiosa columbaria. Intergenic heterodimers are formed between the polypeptides coded by Gpi-1 and Gpi-2 and between those coded by Pgd-1 and Pgd-2, indicating that a GPI and a PGD locus have been duplicated in the past. The ancestral genes assort independently with their duplicated gene, suggesting that the duplications have originated from a process of translocation. Linkage was found only between Gpi-1 and Pgd-2 and between Gpi-2 and Pgd-1, suggesting that the duplicated loci were located on the same translocated chromosomal segment. Both duplications are present in all other examined species of Scabiosa and in Cephalaria and Knautia, two other genera of the Dipsacaceae. The genera Succisa and Dipsacus, also belonging to the Dipsacaceae, do not show Gpi-1 activity, making Gpi-2 and Pgd-1 the most likely ancestral genes. In Succisa, the isozymes of Gpi-1 and Gpi-2 either overlap or Gpi-1 has been silenced. The combined results suggest that a chromosomal segment containing Gpi-2 and Pgd-1 has been translocated before the divergence of Scabiosa, Cephalaria, Knautia, and Succisa.

摘要

磷酸葡萄糖异构酶(GPI)和磷酸葡萄糖酸脱氢酶(PGD)的酶谱显示,在植物物种柱花草(Scabiosa columbaria)中,每种酶都有三种同工酶。Gpi - 1和Gpi - 2编码的多肽之间以及Pgd - 1和Pgd - 2编码的多肽之间形成了基因间异源二聚体,这表明GPI和PGD基因座在过去已经发生了复制。祖先基因与其复制基因独立分离,这表明复制起源于易位过程。仅在Gpi - 1和Pgd - 2之间以及Gpi - 2和Pgd - 1之间发现了连锁关系,这表明复制的基因座位于同一条易位的染色体片段上。在所有其他已检测的柱花草物种以及川续断科的另外两个属刺续断属(Cephalaria)和蓝盆花属(Knautia)中都存在这两种复制。同样属于川续断科的蓝盆花属(Succisa)和川续断属(Dipsacus)没有显示出Gpi - 1活性,这使得Gpi - 2和Pgd - 1最有可能是祖先基因。在蓝盆花属中,Gpi - 1和Gpi - 2的同工酶要么重叠,要么Gpi - 1已经沉默。综合结果表明,包含Gpi - 2和Pgd - 1的染色体片段在柱花草属、刺续断属、蓝盆花属和蓝盆花属分化之前就已经发生了易位。

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