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原生动物的物种鉴定:双小核草履虫组中的葡萄糖磷酸异构酶变异

Species identification in protozoa: glucosephosphate isomerase variation in the Paramecium aurelia group.

作者信息

Tait A

出版信息

Biochem Genet. 1978 Oct;16(9-10):945-55. doi: 10.1007/BF00483746.

Abstract

Results are presented for intra- and interspecies variation in electrophoretic mobility of the enzyme glucosephosphate isomerase in the Paramecium aurelia species complex. Three new observations have been made: (1) the hitherto indistinguishable species 1 and 5 can be distinguished on the basis of GPI electrophoretic mobility, (2) the degree of intraspecies variation is much higher for GPI than for the previously studied mitochondrial dehydrogenases and esterases, and (3) several of the enzymatic variants observed in one species are apparently indistinguishable from some found in other species. The intraspecies variants found have been shown to be allelic, and, on the basis of the enzyme patterns of the heterozygotes, it is proposed that GPI is a dimeric enzyme determined by two loci. In view of the use of enzyme variation as a means of species identification in protozoa, these results suggest that the use of such methods can lead to underestimating the number of species and possibly to misclassification. The implications of these findings together with the results obtained with Tetrahymena are discussed.

摘要

本文展示了在双小核草履虫物种复合体中,葡萄糖磷酸异构酶电泳迁移率的种内和种间变异结果。有三项新的发现:(1)基于GPI电泳迁移率,此前无法区分的物种1和物种5现在可以区分开来;(2)GPI的种内变异程度比之前研究的线粒体脱氢酶和酯酶要高得多;(3)在一个物种中观察到的几种酶变体与在其他物种中发现的一些变体明显无法区分。已发现的种内变体被证明是等位基因,并且根据杂合子的酶谱,推测GPI是一种由两个基因座决定的二聚体酶。鉴于酶变异被用作原生动物物种鉴定的一种手段,这些结果表明使用此类方法可能会导致低估物种数量,并可能导致错误分类。本文还讨论了这些发现的意义以及与嗜热四膜虫相关的研究结果。

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