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Phylogenetic relations and mitogenome-wide similarity metrics reveal monophyly of sensu lato. | LitMetric

AI Article Synopsis

  • The study challenges the controversial split of the genus sensu lato into six new genera in penaeid shrimp taxonomy by investigating their phylogenetic relationships using complete mitochondrial DNA sequences.
  • It is the first to provide the complete mitochondrial genome of a key shrimp species relevant to aquaculture and employs advanced phylogenomic methods to analyze relationships within the suborder Dendrobranchiata.
  • Findings suggest that the original genus sensu lato should be restored due to evidence of monophyly and consistent genetic similarities, rather than maintaining the newly formed genera.

Article Abstract

Splitting of the genus sensu lato into six new genera based on morphological features alone has been controversial in penaeid shrimp taxonomy. Several studies focused on building phylogenetic relations among the genera of sensu lato. However, they lack in utilizing full mitochondrial DNA genome of shrimp representing all the six controversial genera. For the first time, the present study targeted the testing of all the six genera of sensu lato for phylogenetic relations utilizing complete mitochondrial genome sequence. In addition, the study reports for the first time about the complete mitochondrial DNA genome sequence of , an important candidate species in aquaculture and fisheries, and utilized it for phylogenomics. The maximum likelihood and Bayesian approaches were deployed to generate and comprehend the phylogenetic relationship among the shrimp in the suborder, Dendrobranchiata. The phylogenetic relations established with limited taxon sampling considered in the study pointed to the monophyly of sensu lato and suggested collapsing of the new genera to a single genus. Further, trends in mitogenome-wide estimates of average amino acid identity in the order Decapoda and the genus sensu lato supported restoration of the old genus, , rather promoting the creation of new genera.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920775PMC
http://dx.doi.org/10.1002/ece3.7148DOI Listing

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