4.3 Article

Tracing the evolution of bioluminescent light organs across the deep-sea shrimp family Sergestidae using a genomic skimming and phylogenetic approach

期刊

INVERTEBRATE SYSTEMATICS
卷 36, 期 1, 页码 22-35

出版社

CSIRO PUBLISHING
DOI: 10.1071/IS21013

关键词

bioluminescence; Crustacea; deep sea; genome skimming; organs of Pesta; photophores; phylogenetics; Sergestidae; shrimps

资金

  1. The Gulf of Mexico Research Initiative (GOMRI)
  2. Florida Institute of Oceanography Shiptime Funding
  3. National Science Foundation (NSF) Division of Environmental Biology Grant [1556059]
  4. National Oceanic and Atmospheric Administration (NOAA) Ocean Exploration Research (NOAA-OER) [NA170AR0110208]
  5. NOAA DEEPEND-RESTORE project [NA19NOS4510193]
  6. Spanish Ministry project DESAFIO [PID2020-118118RB-100]
  7. Beatriz Galindo individual grant [BEAGAL 18/00172]
  8. Direct For Biological Sciences
  9. Division Of Environmental Biology [1556059] Funding Source: National Science Foundation

向作者/读者索取更多资源

Deep-sea shrimp of the family Sergestidae Dana, 1852 provide a unique system for studying the evolution of bioluminescence. The present study used molecular data to construct an updated genus-level phylogeny of sergestid shrimp, compared with previous morphological trees, and identified preliminary patterns across light organ type and species' depth distributions.
Deep-sea shrimp of the family Sergestidae Dana, 1852 provide a unique system for studying the evolution of bioluminescence. Most species within the family possess autogenic bioluminescent photophores in one of three distinct forms: lensed photophores; non-lensed photophores; or internal organs of Pesta. This morphological diversity across the Sergestidae has resulted in recent major taxonomic revisions, dividing the two major genera (Sergio Stimpson, 1860 and Sergestes Milne Edwards, 1830) into 15. The present study capitalises on molecular data to construct an updated genus-level phylogeny of sergestid shrimp. DNA was successfully extracted from 87 individuals belonging to 13 of the 15 newly proposed genera. A 'genome skimming' approach was implemented, allowing the capture of mitochondria] genomic data across 19 sergestid species. Additional individuals have been incorporated into the phylogeny through Sanger sequencing of both nuclear (H3 and NAK) and mitochondria] (165 and COI) genes. The resulting molecular phylogeny is compared with previous morphological trees with specific attention to genus-level relationships. The-sergestes group was rendered non-monophyletic and the -sergia group was recovered as monophyletic. Ancestral state reconstructions of light organ type indicate that organs of Pesta is the ancestral state for the family. Non-lensed photophores evolved once across the-sergia group, but were later lost in the deepest living genus, Sergio. Lensed photophores also evolved once within the genera Prehensilosergia Vereshchaka, Olesen & Lunina, 2014, Lucensosergia Vereshchaka, Olesen & Lunina, 2014 and Challengerosergia Vereshchaka, Olesen & Lunina, 2014. These findings identify preliminary patterns across light organ type and species' depth distributions; however, future research that incorporates finer-scale depth data and more species is needed to confirm our findings.

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