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Building consensus around the assessment and interpretation of Symbiodiniaceae diversity

  • Sarah W. Davies
  • , Matthew H. Gamache
  • , Lauren I. Howe-Kerr
  • , Nicola G. Kriefall
  • , Andrew C. Baker
  • , Anastazia T. Banaszak
  • , Line Kolind Bay
  • , Anthony J. Bellantuono
  • , Debashish Bhattacharya
  • , Cheong Xin Chan
  • , Danielle C. Claar
  • , Mary Alice Coffroth
  • , Ross Cunning
  • , Simon K. Davy
  • , Javier del Campo
  • , Erika M. Díaz-Almeyda
  • , Jörg C. Frommlet
  • , Lauren E. Fuess
  • , Raúl A. González-Pech
  • , Tamar L. Goulet
  • Kenneth D. Hoadley, Emily J. Howells, Benjamin C.C. Hume, Dustin W. Kemp, Carly D. Kenkel, Sheila A. Kitchen, Todd C. LaJeunesse, Senjie Lin, Shelby E. McIlroy, Ryan McMinds, Matthew R. Nitschke, Clinton A. Oakley, Raquel S. Peixoto, Carlos Prada, Hollie M. Putnam, Kate Quigley, Hannah G. Reich, James Davis Reimer, Mauricio Rodriguez-Lanetty, Stephanie M. Rosales, Osama S. Saad, Eugenia M. Sampayo, Scott R. Santos, Eiichi Shoguchi, Edward G. Smith, Michael Stat, Timothy G. Stephens, Marie E. Strader, David J. Suggett, Timothy D. Swain, Cawa Tran, Nikki Traylor-Knowles, Christian R. Voolstra, Mark E. Warner, Virginia M. Weis, Rachel M. Wright, Tingting Xiang, Hiroshi Yamashita, Maren Ziegler, Adrienne M.S. Correa, John Everett Parkinson
  • Boston University
  • University of South Florida
  • Rice University
  • University of Miami
  • Universidad Nacional Autónoma de México
  • Australian Institute of Marine Science
  • Florida International University
  • Rutgers - The State University of New Jersey, New Brunswick
  • University of Queensland
  • Nearshore Habitat Program
  • SUNY Buffalo
  • Daniel P. Haerther Center for Conservation and Research
  • Victoria University of Wellington
  • Pompeu Fabra University
  • New College of Florida
  • University of Aveiro
  • Texas State University
  • Pennsylvania State University
  • University of Mississippi
  • University of Alabama
  • Southern Cross University
  • University of Konstanz
  • University of Alabama at Birmingham
  • University of Southern California
  • University of Connecticut
  • The University of Hong Kong
  • King Abdullah University of Science and Technology
  • University of Rhode Island
  • Minderoo Foundation
  • University of the Ryukyus
  • Red Sea University
  • Okinawa Institute of Science and Technology Graduate University
  • University of Warwick
  • University of Newcastle
  • Texas A&M University
  • University of Technology Sydney
  • Nova Southeastern University
  • University of San Diego
  • University of Delaware
  • Oregon State University
  • Southern Methodist University
  • Japan Fisheries Research and Education Agency
  • Justus Liebig University Giessen

Research output: Contribution to journalArticlepeer-review

74 Scopus citations

Abstract

Within microeukaryotes, genetic variation and functional variation sometimes accumulate more quickly than morphological differences. To understand the evolutionary history and ecology of such lineages, it is key to examine diversity at multiple levels of organization. In the dinoflagellate family Symbiodiniaceae, which can form endosymbioses with cnidarians (e.g., corals, octocorals, sea anemones, jellyfish), other marine invertebrates (e.g., sponges, molluscs, flatworms), and protists (e.g., foraminifera), molecular data have been used extensively over the past three decades to describe phenotypes and to make evolutionary and ecological inferences. Despite advances in Symbiodiniaceae genomics, a lack of consensus among researchers with respect to interpreting genetic data has slowed progress in the field and acted as a barrier to reconciling observations. Here, we identify key challenges regarding the assessment and interpretation of Symbiodiniaceae genetic diversity across three levels: species, populations, and communities. We summarize areas of agreement and highlight techniques and approaches that are broadly accepted. In areas where debate remains, we identify unresolved issues and discuss technologies and approaches that can help to fill knowledge gaps related to genetic and phenotypic diversity. We also discuss ways to stimulate progress, in particular by fostering a more inclusive and collaborative research community. We hope that this perspective will inspire and accelerate coral reef science by serving as a resource to those designing experiments, publishing research, and applying for funding related to Symbiodiniaceae and their symbiotic partnerships.

Original languageEnglish
Article numbere15023
JournalPeerJ
Volume11
DOIs
StatePublished - May 2 2023

Keywords

  • Cnidarian
  • Collaborative
  • Community
  • Coral
  • Genetic diversity
  • ITS2
  • Population
  • Species
  • Symbiodiniaceae
  • Symbiosis

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