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Genome Profiling (GP) Method Based Classification of Insects: Congruence with That of Classical Phenotype-Based One

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NIAID Data Ecosystem2026-03-07 收录
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https://figshare.com/articles/dataset/Genome_Profiling_GP_Method_Based_Classification_of_Insects_Congruence_with_That_of_Classical_Phenotype_Based_One/133779
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BackgroundRibosomal RNAs have been widely used for identification and classification of species, and have produced data giving new insights into phylogenetic relationships. Recently, multilocus genotyping and even whole genome sequencing-based technologies have been adopted in ambitious comparative biology studies. However, such technologies are still far from routine-use in species classification studies due to their high costs in terms of labor, equipment and consumables. Methodology/Principal FindingsHere, we describe a simple and powerful approach for species classification called genome profiling (GP). The GP method composed of random PCR, temperature gradient gel electrophoresis (TGGE) and computer-aided gel image processing is highly informative and less laborious. For demonstration, we classified 26 species of insects using GP and 18S rDNA-sequencing approaches. The GP method was found to give a better correspondence to the classical phenotype-based approach than did 18S rDNA sequencing employing a congruence value. To our surprise, use of a single probe in GP was sufficient to identify the relationships between the insect species, making this approach more straightforward. Conclusion/SignificanceThe data gathered here, together with those of previous studies show that GP is a simple and powerful method that can be applied for actually universally identifying and classifying species. The current success supported our previous proposal that GP-based web database can be constructible and effective for the global identification/classification of species.
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2011-08-31
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