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Complete mitochondrial genome of critically endangered catfish Hemibagrus punctatus (Jerdon, 1849) and comparative analysis for insights into the phylogeny of hemibagrids through mitogenomic approach

Background Hemibagrus punctatus (Jerdon, 1849) is a critically endangered bagrid catfish endemic to the Western Ghats of India, whose population is declining due to anthropogenic activities. The current study aims to compare the mitogenome of H. punctatus with that of other Bagrid catfishes and prov...

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Published in:Molecular biology reports 2024-12, Vol.51 (1), p.601-601, Article 601
Main Authors: Chowdhury, Labrechai Mog, PR, Divya, Mandal, Sangeeta, Ravi, Charan, Mohindra, Vindhya, Sarkar, U. K.
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description Background Hemibagrus punctatus (Jerdon, 1849) is a critically endangered bagrid catfish endemic to the Western Ghats of India, whose population is declining due to anthropogenic activities. The current study aims to compare the mitogenome of H. punctatus with that of other Bagrid catfishes and provide insights into their evolutionary relationships. Methods and Results Samples were collected from Hemmige Karnataka, India. In the present study, the mitogenome of H . punctatus was successfully assembled, and its phylogenetic relationships with other Bagridae species were studied. The total genomic DNA of samples was extracted following the phenol–chloroform isoamyl alcohol method. Samples were sequenced, and the Illumina paired-end reads were assembled to a contig length of 16,517 bp. The mitochondrial genome was annotated using MitoFish and MitoAnnotator (Iwasaki et al ., 2013). A robust phylogenetic analysis employing NJ (Maximum composite likelihood) and ASAP methods supports the classification of H. punctatus within the Bagridae family, which validates the taxonomic status of this species. In conclusion, this research enriches our understanding of H. punctatus mitogenome, shedding light on its evolutionary dynamics within the Bagridae family and contributing to the broader knowledge of mitochondrial genes in the context of evolutionary biology. Conclusions The study’s findings contribute to a better understanding of the mitogenome of H . punctatus and provide insights into the evolutionary relationships within other Hemibagrids.
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The mitochondrial genome was annotated using MitoFish and MitoAnnotator (Iwasaki et al ., 2013). A robust phylogenetic analysis employing NJ (Maximum composite likelihood) and ASAP methods supports the classification of H. punctatus within the Bagridae family, which validates the taxonomic status of this species. In conclusion, this research enriches our understanding of H. punctatus mitogenome, shedding light on its evolutionary dynamics within the Bagridae family and contributing to the broader knowledge of mitochondrial genes in the context of evolutionary biology. 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The total genomic DNA of samples was extracted following the phenol–chloroform isoamyl alcohol method. Samples were sequenced, and the Illumina paired-end reads were assembled to a contig length of 16,517 bp. The mitochondrial genome was annotated using MitoFish and MitoAnnotator (Iwasaki et al ., 2013). A robust phylogenetic analysis employing NJ (Maximum composite likelihood) and ASAP methods supports the classification of H. punctatus within the Bagridae family, which validates the taxonomic status of this species. In conclusion, this research enriches our understanding of H. punctatus mitogenome, shedding light on its evolutionary dynamics within the Bagridae family and contributing to the broader knowledge of mitochondrial genes in the context of evolutionary biology. 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Methods and Results Samples were collected from Hemmige Karnataka, India. In the present study, the mitogenome of H . punctatus was successfully assembled, and its phylogenetic relationships with other Bagridae species were studied. The total genomic DNA of samples was extracted following the phenol–chloroform isoamyl alcohol method. Samples were sequenced, and the Illumina paired-end reads were assembled to a contig length of 16,517 bp. The mitochondrial genome was annotated using MitoFish and MitoAnnotator (Iwasaki et al ., 2013). A robust phylogenetic analysis employing NJ (Maximum composite likelihood) and ASAP methods supports the classification of H. punctatus within the Bagridae family, which validates the taxonomic status of this species. 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subjects Animal Anatomy
Animal Biochemistry
Animals
Bagridae
Biomedical and Life Sciences
catfish
Catfishes - classification
Catfishes - genetics
Chloroform
Comparative analysis
Developmental biology
DNA
DNA, Mitochondrial - genetics
Endangered Species
Evolution
Evolution, Molecular
family
Genome, Mitochondrial - genetics
Genomes
Hemibagrus
Hemibagrus punctatus
Histology
India
isoamyl alcohol
Isopentyl alcohol
Life Sciences
Mitochondria
mitochondrial genome
Morphology
Original Article
Phylogenetics
Phylogeny
Population decline
RNA, Transfer - genetics
Sequence Analysis, DNA - methods
species
title Complete mitochondrial genome of critically endangered catfish Hemibagrus punctatus (Jerdon, 1849) and comparative analysis for insights into the phylogeny of hemibagrids through mitogenomic approach
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