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首页> 外文期刊>International Journal of Molecular Sciences >Avoidance and Potential Remedy Solutions of Chimeras in Reconstructing the Phylogeny of Aphids Using the 16S rRNA Gene of Buchnera: A Case in Lachninae (Hemiptera)
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Avoidance and Potential Remedy Solutions of Chimeras in Reconstructing the Phylogeny of Aphids Using the 16S rRNA Gene of Buchnera: A Case in Lachninae (Hemiptera)

机译:嵌合体在利用蚜虫的16S rRNA基因重建蚜虫系统发育中的避免和潜在的补救措施:Lachninae(Hemiptera)的一个案例

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It is known that PCR amplification of highly homologous genes from complex DNA mixtures can generate a significant proportion of chimeric sequences. The 16S rRNA gene is not only widely used in estimating the species diversity of endosymbionts in aphids but also used to explore the co-diversification of aphids and their endosymbionts. Thus, chimeric sequences may lead to the discovery of non-existent endosymbiont species and mislead Buchnera-based phylogenetic analysis that lead to false conclusions. In this study, a high probability (6.49%) of chimeric sequence occurrence was found in the amplified 16S rRNA gene sequences of endosymbionts from aphid species in the subfamily Lachninae. These chimeras are hybrid products of multiple parent sequences from the dominant species of endosymbionts in each corresponding host. It is difficult to identify the chimeric sequences of a new or unidentified species due to the high variability of their main parent, Buchnera aphidicola, and because the chimeric sequences can confuse the phylogenetic analysis of 16S rRNA gene sequences. These chimeras present a challenge to Buchnera-based phylogenetic research in aphids. Thus, our study strongly suggests that using appropriate methods to detect chimeric 16S rRNA sequences may avoid some false conclusions in endosymbiont-based aphid research.
机译:众所周知,从复杂的DNA混合物中高度同源基因的PCR扩增可以产生很大比例的嵌合序列。 16S rRNA基因不仅广泛用于估计蚜虫内共生菌的物种多样性,而且可用于探索蚜虫及其内共生菌的共多样性。因此,嵌合序列可能导致不存在共生共生物种的发现,并误导基于布希纳拉的系统发育分析,从而得出错误的结论。在这项研究中,发现在来自Lachninae亚科蚜虫物种的内共生体的扩增的16S rRNA基因序列中,嵌合序列出现的可能性很高(6.49%)。这些嵌合体是来自每个相应宿主中内共生菌的优势种的多个亲本序列的杂种产物。由于其主要亲本蚜虫双歧杆菌的高度变异性,并且由于嵌合序列会混淆16S rRNA基因序列的系统发育分析,因此很难鉴定新物种或未鉴定物种的嵌合序列。这些嵌合体对基于蚜虫的蚜虫系统发育研究提出了挑战。因此,我们的研究强烈建议使用适当的方法检测嵌合的16S rRNA序列可能避免基于内共生的蚜虫研究中的一些错误结论。

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