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从5S核糖体RNA序列推导的原生动物系统发育

Phylogeny of protozoa deduced from 5S rRNA sequences.

作者信息

Kumazaki T, Hori H, Osawa S

出版信息

J Mol Evol. 1983;19(6):411-9. doi: 10.1007/BF02102316.

Abstract

The nucleotide sequences of 5S rRNAs from three protozoa, Bresslaua vorax, Euplotes woodruffi and Chlamydomonas sp. have been determined and aligned together with the sequences of 12 protozoa species including unicellular green algae already reported by the authors and others. Using this alignment, a phylogenic tree of the 15 species of protozoa has been constructed. The tree suggests that the ancestor for protozoa evolved at an early time of eukaryotic evolution giving two major groups of organisms. One group, which shares a common ancestor with vascular plants, contains a unicellular green flagellate (Chlamydomonas) and unicellular green algae. The other group, which shares a common ancestor with the multicellular animals, includes various flagellated protozoa (including Euglena), ciliated protozoa and slime molds. Most of these protozoa appear to have separated from one another at a fairly early period of eukaryotic evolution.

摘要

已确定三种原生动物——沃氏布雷斯劳虫(Bresslaua vorax)、伍氏游仆虫(Euplotes woodruffi)和衣藻属(Chlamydomonas sp.)的5S rRNA核苷酸序列,并将其与包括作者及其他人员已报道的单细胞绿藻在内的12种原生动物物种的序列进行比对。利用该比对结果,构建了这15种原生动物的系统发育树。该树表明,原生动物的祖先在真核生物进化的早期就已演化,产生了两大类生物。其中一类与维管植物有共同祖先,包含单细胞绿鞭毛虫(衣藻)和单细胞绿藻。另一类与多细胞动物有共同祖先,包括各种鞭毛虫原生动物(包括眼虫)、纤毛虫原生动物和黏菌。这些原生动物中的大多数似乎在真核生物进化的相当早期就已彼此分离。

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