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利用肠道菌群的分布和DNA序列对鲤科鱼类系统演化关系的研究
引用本文:谭远德,赵庆新. 利用肠道菌群的分布和DNA序列对鲤科鱼类系统演化关系的研究[J]. 中国水产科学, 2001, 8(1): 26-32
作者姓名:谭远德  赵庆新
作者单位:1. 湖南师范大学生命科学学院,湖南长沙 410081
2. 盐城师范学院生物系,江苏盐城 224001
摘    要:用检测到的肠道微生物菌群的含量对鲤科鱼类的草鱼(Ctenopharyngodon idellus)和青鱼(Mylopharyngodon piceus)、鲢(Hypophthalmichthys molitrix)和鳙(Aristichthys nobilis)、鲤(Cyprinus carpiohaematopterus)和鲫(Carassius auratus),团头鲂(Megalobrama amblycephala)和三角鲂(Megalopbrama terminalis)8个种进行系统演化分析。所获得的系统演化树中,每个亚科内的物种邻接为1个接点。在亚科间,雅罗鱼亚科与鳇亚科相邻领接1个共同接点。该接点与鲢亚科和鲤亚科连结为1个共同祖选接点。用线粒体基因中的cytb和ND4基因全序列分别构建5个亚科13和11个种的NJ树,这2个树在5个亚科之间的邻接拓扑结构上亦不相同。3种树可推出一个共同的结论是在所分析的亚科中鲤亚科为最原始的类群,而鲫是最原始的类型。

关 键 词:鲤科 系统演化 肠道菌群 基因序列
文章编号:1005-8737(2001)01-0026-07
修稿时间:2000-05-26

Study on the phylogeneticrelationship of Cyprinidae based on the distributions of intestinal bacteria and DNAsequence data
TAN Yuan de ,ZHAO Qing xin. Study on the phylogeneticrelationship of Cyprinidae based on the distributions of intestinal bacteria and DNAsequence data[J]. Journal of Fishery Sciences of China, 2001, 8(1): 26-32
Authors:TAN Yuan de   ZHAO Qing xin
Affiliation:TAN Yuan de 1,ZHAO Qing xin 2
Abstract:It was assumed that closely relative intestinal bacteria had closely relative intestinal hosts because of the same or similar symbiosis, vice versa. Based on this assumption, the amount of intestinal bacteria detected in intestines of Cyprinidae fishes was used to analyze the phylogenetic relationship among 8 Cyprinidae fishes: Ctenopharyngodon idellus, Mylopharyngodon piceus, Hypophthalmichthys molitrix, Aristichthys nobilis, Cyprinus carpio haematopterus, Carssius auratus, Megalobrama amblycephala and Megalopbrama terminalis. In the phylogenetic trees, using NJ and UPGMA methods,the genera of each subfamily were joined to a comnon nodal point. Between the subfamilies, Leuciscinae and Culterinae were first joined to a nodal point. The point, which Hypophthalmichthinae and Cyprininae were together joined to, was their ancestral nodal point. The sequence data of the 2 genes cytochrome b and ND4 of mitochondrial genome were also used to analyze the phylogenetic relationship between the 5 subfamilies of Cyprinidae. Both of the phylogenetic trees of cytochrome b and ND4 built by NJ method were different from each other in topological structure. Nevertheless, a common conclusion inferred from the 3 phylogenetic trees is that Cyprinidae is the most primary group and monophyletic in the 5 subfamilies, whereas C.auratus may be the most primary lineage; Culterinae has no position in Cyprinidae phylogenetic tree.
Keywords:Cyprinidae  phylogeny  intestinal bacteria  cytochrome b and ND4 genes
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