Diagnostic applicability of mitogenomics in uncovering intraspecific carangid diversifications: insights into phylogeny, divergence time, and characterization of two cryptic Selaroides leptolepis mitogenomes

Carangidae is an economically important fish family comprised of 32 genera with more than 140 circumglobally distributed species. Its members exhibit vast differences in morphology and lifestyle, thus making them compelling subjects for evolutionary studies. Recently, more works on carangids have de...

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Published inOrganisms diversity & evolution Vol. 24; no. 3; pp. 417 - 434
Main Authors Halasan, Lorenzo C., Lin, Hsiu-Chin
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.09.2024
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ISSN1439-6092
1618-1077
DOI10.1007/s13127-024-00648-9

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Abstract Carangidae is an economically important fish family comprised of 32 genera with more than 140 circumglobally distributed species. Its members exhibit vast differences in morphology and lifestyle, thus making them compelling subjects for evolutionary studies. Recently, more works on carangids have detected the presence of cryptic lineages through molecular and/or non-molecular techniques. Credited for its inherent amplification efficiency, mitophylogenomics became effective in opening avenues to further understand higher-level interrelationships in many fish groups. However, the mitophylogenomic approach has not yet been widely applied to infer evolutionary history at the lower-level interrelationships, especially on cryptic representatives. In this study, we evaluated the diagnostic applicability of mitogenomes in detecting population-level divergences within Carangidae. Using the mitogenomes, we detected intraspecific divergences on some taxa, namely Caranx melampygus , Selaroides leptolepis , Seriola lalandi , Decapterus maruadsi , and Trachurus trachurus , with divergences highly correspondent to that of their geographic origins. Additionally, a widespread Pacific arrangement was also detected for S. rivoliana . Our discoveries were highly corroborative with findings from other Carangidae studies which utilized different diagnostic markers (e.g., SNPs, microsatellites, morphometrics, parasites). Dated phylogeny also suggested that intraspecific diversifications occurred during the Late Neogene. Likewise, we characterized two mitogenomes from different cryptic lineages of Selaroides leptolepis and revealed that the two mitogenomes were K2P pairwise = 5.58% different from each other. Its genetic compositions included 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes, and a control region. These findings paved way for future evolutionary insights into the divergence histories of other fish populations.
AbstractList Carangidae is an economically important fish family comprised of 32 genera with more than 140 circumglobally distributed species. Its members exhibit vast differences in morphology and lifestyle, thus making them compelling subjects for evolutionary studies. Recently, more works on carangids have detected the presence of cryptic lineages through molecular and/or non-molecular techniques. Credited for its inherent amplification efficiency, mitophylogenomics became effective in opening avenues to further understand higher-level interrelationships in many fish groups. However, the mitophylogenomic approach has not yet been widely applied to infer evolutionary history at the lower-level interrelationships, especially on cryptic representatives. In this study, we evaluated the diagnostic applicability of mitogenomes in detecting population-level divergences within Carangidae. Using the mitogenomes, we detected intraspecific divergences on some taxa, namely Caranx melampygus , Selaroides leptolepis , Seriola lalandi , Decapterus maruadsi , and Trachurus trachurus , with divergences highly correspondent to that of their geographic origins. Additionally, a widespread Pacific arrangement was also detected for S. rivoliana . Our discoveries were highly corroborative with findings from other Carangidae studies which utilized different diagnostic markers (e.g., SNPs, microsatellites, morphometrics, parasites). Dated phylogeny also suggested that intraspecific diversifications occurred during the Late Neogene. Likewise, we characterized two mitogenomes from different cryptic lineages of Selaroides leptolepis and revealed that the two mitogenomes were K2P pairwise = 5.58% different from each other. Its genetic compositions included 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes, and a control region. These findings paved way for future evolutionary insights into the divergence histories of other fish populations.
Carangidae is an economically important fish family comprised of 32 genera with more than 140 circumglobally distributed species. Its members exhibit vast differences in morphology and lifestyle, thus making them compelling subjects for evolutionary studies. Recently, more works on carangids have detected the presence of cryptic lineages through molecular and/or non-molecular techniques. Credited for its inherent amplification efficiency, mitophylogenomics became effective in opening avenues to further understand higher-level interrelationships in many fish groups. However, the mitophylogenomic approach has not yet been widely applied to infer evolutionary history at the lower-level interrelationships, especially on cryptic representatives. In this study, we evaluated the diagnostic applicability of mitogenomes in detecting population-level divergences within Carangidae. Using the mitogenomes, we detected intraspecific divergences on some taxa, namely Caranx melampygus, Selaroides leptolepis, Seriola lalandi, Decapterus maruadsi, and Trachurus trachurus, with divergences highly correspondent to that of their geographic origins. Additionally, a widespread Pacific arrangement was also detected for S. rivoliana. Our discoveries were highly corroborative with findings from other Carangidae studies which utilized different diagnostic markers (e.g., SNPs, microsatellites, morphometrics, parasites). Dated phylogeny also suggested that intraspecific diversifications occurred during the Late Neogene. Likewise, we characterized two mitogenomes from different cryptic lineages of Selaroides leptolepis and revealed that the two mitogenomes were K2P pairwise = 5.58% different from each other. Its genetic compositions included 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes, and a control region. These findings paved way for future evolutionary insights into the divergence histories of other fish populations.
Author Lin, Hsiu-Chin
Halasan, Lorenzo C.
Author_xml – sequence: 1
  givenname: Lorenzo C.
  orcidid: 0000-0002-4752-2231
  surname: Halasan
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  surname: Lin
  fullname: Lin, Hsiu-Chin
  email: hsiuchinlin@mail.nsysu.edu.tw
  organization: Department of Marine Biotechnology and Resources, National Sun Yat-sen University
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  publication-title: Molecular Phylogenetics and Evolution
  doi: 10.1016/j.ympev.2008.08.023
– volume: 109
  start-page: 19333
  issue: 47
  year: 2012
  ident: 648_CR131
  publication-title: Proceedings of the National Academy of Sciences
  doi: 10.1073/pnas.1213199109
– volume: 27
  start-page: 308
  issue: 1
  year: 2016
  ident: 648_CR60
  publication-title: Mitochondrial DNA Part A
  doi: 10.3109/19401736.2014.892090
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Snippet Carangidae is an economically important fish family comprised of 32 genera with more than 140 circumglobally distributed species. Its members exhibit vast...
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SubjectTerms Animal Systematics/Taxonomy/Biogeography
Biodiversity
Biomedical and Life Sciences
Caranx
Decapterus
Developmental Biology
Evolutionary Biology
family
fish
Life Sciences
lifestyle
microsatellite repeats
mitochondrial genome
mitogenomics
morphometry
Neogene period
Original Article
phylogeny
Plant Systematics/Taxonomy/Biogeography
Selaroides leptolepis
Seriola lalandi
species
Trachurus trachurus
Title Diagnostic applicability of mitogenomics in uncovering intraspecific carangid diversifications: insights into phylogeny, divergence time, and characterization of two cryptic Selaroides leptolepis mitogenomes
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https://www.proquest.com/docview/3153766759
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