The cichlid 16S gene as a phylogenetic marker: Limits of its resolution for analyzing global relationship

O. Sokefun
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引用次数: 2

Abstract

The phylogenetic utility of the 16S gene in cichlids is assessed. Eighty-six (86) partial sequences belonging to 37 genera of cichlids from the Genbank was analyzed. The alignment had four hundred and sixty three (463) basepairs with 337 conserved sites and 126 variable sites. Base compositional bias is similar to that found in higher organism with Adenine having the highest average of 30.3%, followed by cytosine, guanine and thiamine with the average values of 26.1, 21.9 and 21.7% respectively. The most suitable evolutionary model is the K2+G+I model as this had the lowest Bayesian Information Criterion. There were 4 major indels at basepair positions 328 which is unique to the Heterotilapia buttikoferi, position 369  unique to Gramatoria lemarii, position 396 which is shared by Tilapia sparrmanii, T. guinasana and T. zilli. The indel at position 373 was found in all tested species except the Oreochromis mossambicus. The Tilapine general is the basal group in Cichlids. The 16S gene separates the Tilapia genera without any ambiguity but there were phylogenetic overlaps in the Sarotherodon and Oreochromis. More finite molecular and statistical methodology may be needed to distinguish the Sarotherodon and Oreochromis. The diversity of cichlids is generally very low due to a common ancestry with little differentiation genetically. The grouping of the Oreochromis and Sarotherodon genera together in the same clade is not unconnected with the preservation of genetic beacons that the group retained as it evolved.   Key words: Cichlids, 16S gene, phylogeny, evolutionary model, monophyletic, conserved segment, speciose, indels
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作为系统发育标记的稚鱼16S基因:在全球关系分析中的分辨率限制
对16S基因在慈鲷中的系统发育效用进行了评估。对来自基因库的37属86条部分序列进行了分析。共有463个碱基对,其中保守位点337个,可变位点126个。碱基组成偏差与高等生物相似,腺嘌呤的平均值最高,为30.3%,其次是胞嘧啶、鸟嘌呤和硫胺素,平均值分别为26.1%、21.9%和21.7%。最合适的进化模型是K2+G+I模型,因为它具有最低的贝叶斯信息准则。在异种罗非鱼(Heterotilapia buttikoferi)特有的碱基对第328位、莱玛罗非鱼(Gramatoria lemarii)特有的碱基对第369位、sparrmanii罗非鱼、T. guinasana罗非鱼和T. zilli罗非鱼共有的碱基对第396位有4个主要碱基对。除莫sambicus外,所有被试物种均有373位缺失。罗非鱼是慈科的基础科。16S基因对罗非鱼属的区分没有歧义,但在罗非鱼属和罗非鱼属中存在系统发育上的重叠。可能需要更有限的分子和统计方法来区分Sarotherodon和Oreochromis。慈鲷的多样性通常很低,因为它们有一个共同的祖先,在遗传上几乎没有差异。Oreochromis和Sarotherodon属在同一进化分支中的分组与该群体在进化过程中保留的遗传信标的保存不无关系。关键词:慈鲷,16S基因,系统发育,进化模式,单系,保守片段,物种,索引
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