Ghatnekar L
Department of Genetics, Lund University, Solvegatan 29, S-223 62 Lund, Sweden.
Heredity (Edinb). 1999 Oct;83(# (Pt 4)):451-9. doi: 10.1038/sj.hdy.6885750.
Normally sheep's fescue (Festuca ovina) carries a single locus encoding the cytosolic enzyme phosphoglucoisomerase (PGI). However, at several localities in southern Sweden plants with more than two different alleles have been found by isozyme studies. Crossing experiments and subsequent progeny analyses revealed two unlinked loci. The additional locus was polymorphic for two alleles with different electrophoretic mobilities. Two of the numerous alleles at the primary locus had the same mobility. A complex gene coding for both electrophoretic types was also found to map to the additional locus, but no such complex gene has been found at the primary locus. The genes at the additional locus can be lacking, or present in hemizygous or homozygous form. Allozymes encoded by the additional locus readily form heterodimers with those encoded by the primary locus, thus giving rise to multibanded isozyme patterns. This segregating, polymorphic gene duplication may well represent a rare case where the initial stage of the evolution of a new gene can be directly studied.
通常情况下,羊茅(Festuca ovina)携带一个编码胞质酶磷酸葡萄糖异构酶(PGI)的基因座。然而,通过同工酶研究在瑞典南部的几个地方发现了具有两个以上不同等位基因的植株。杂交实验及后续子代分析揭示了两个不连锁的基因座。额外的基因座对于具有不同电泳迁移率的两个等位基因呈多态性。主基因座上众多等位基因中的两个具有相同的迁移率。还发现一个编码两种电泳类型的复合基因定位于额外的基因座,但在主基因座上未发现此类复合基因。额外基因座上的基因可能缺失,或以半合子或纯合子形式存在。由额外基因座编码的同工酶很容易与由主基因座编码的同工酶形成异二聚体,从而产生多带同工酶模式。这种分离的、多态的基因重复很可能代表了一个罕见的案例,即可以直接研究新基因进化的初始阶段。