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Phylogeography and Diversity Among Populations of the Toxigenic Benthic Dinoflagellate Prorocentrum From Coastal Reef Systems in Mexico

  • Allan D. Cembella(corresponding author)
    ,
  • Lorena M. Durán-Riveroll(corresponding author)
    ,
  • ,
  • Yuri B. Okolodkov
    ,
  • Ricardo García-Sandoval
    ,
  • Bernd Krock
*Corresponding author for this work
  • Alfred Wegner Institute
    ,
  • Centro de Investigación Científica y de Educación Superior de Ensenada
    ,
  • ,
  • Universidad Veracruzana
    ,
  • UNAM
    ,
  • Helmholtz Institute for Functional Marine Biodiversity
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

716669

Journal (Volume, Issue Number)

Frontiers in Marine Science (Volume 8)

Publication milestones

  • Published - 15/10/2021

Publication status

Published - 15/10/2021

Publication IDs

  • Scopus: 85118292867

Abstract

The marine dinoflagellate genus Prorocentrum Ehrenberg comprises many species occupying primarily benthic or epiphytic habitats, particularly in tropical and sub-tropical waters. Despite concerted efforts to establish phylogenetic associations, there remain unresolved issues in defining morphospecies and membership in species complexes. The study described herein addressed the inter- and infraspecific relationships of members of the Prorocentrum lima and Prorocentrum hoffmannianum species complexes (PLSC and PHSC, respectively) by applying multivariate approaches in morphotaxonomy, molecular phylogenetics and chemodiversity to establish affinities among multiple clonal isolates. Morphotaxonomic analysis showed consistency with classical morphospecies descriptors, and high variability in cell size and dimensions, but did not challenge current species complex concepts. Phylogenetic analysis of ITS/5.8S rDNA sequences from isolates from the Gulf of California, Caribbean Sea, and Gulf of Mexico coasts compared with archived global GenBank sequences served to define five consistent clades with separation of the PLSC and PHSC. Secondary structure modeling of ITS2 rRNA variation based on compensatory base changes (CBC) was effective in resolving details of the respective species complexes and even indicated putative incipient or cryptic speciation due to potential hybridization barriers. This study represents the largest (n = 67 isolates) chemodiversity analysis of polyketide-derived toxins associated with diarrheic shellfish poisoning (DSP) from a benthic dinoflagellate genus. Relative composition of some analogs (OA, OA-D8, DTX1, DTX1a, and DTX1a-D8), including two new undescribed isomers, distinguished P. lima from P. hoffmannianum sensu lato, but without clear associations with substrate type or geographical origin. Although all P. lima and most (one exception) P. hoffmannianum were toxigenic, the total cell toxin content could not be linked at the species level. This research demonstrates that clonal chemodiversity in toxin composition cannot yet be effectively applied to define ecological niches or species interactions within local assemblages. Phylogenetic analysis of the ITS/5.8 rDNA, particularly when combined with secondary structure modeling, rather than only a comparison of LSU rDNA sequences, is a more powerful approach to identify cryptic speciation and to resolve species complexes within benthic dinoflagellate groups.

Funding Details

We thank Manuel Victoria-Muguira of Dorado Buceo for boat access and logistical support with field sampling from Veracruz, and Manuel Rodríguez-Gómez from the Acuario de Veracruz for donating filtered seawater. Mario Fernando Sánchez Bernal was responsible for imaging and curation. Laura Elena Gómez-Lizárraga from the Scanning Electron Microscopy Laboratory at Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México (ICMyL-UNAM) provided micrographs; Manuel E. Martínez-Cruz, Hugo Pérez-López, and Apatzingán Palomino-Hermosillo assisted with SEM sample preparation and cell measurements; Andrea García-Casillas (UNAM) performed statistical data analysis. Technical assistance of Annegret Müller and Thomas Max for LC-MS/MS analysis of DSP toxins and Lena Nieke for Prorocentrum culture maintenance at AWI is much appreciated. This research was funded primarily by the Consejo Nacional de Ciencia y Tecnología (CONACyT, Mexico) Basic Science Project, number A1-S-8616 awarded to LD-R. Financial contribution for the preparation and publication of this manuscript and also associated research activities was provided to AC, BK, and UJ within the Helmholtz research program “Changing Earth, Sustaining our Future” (Sub-topic 6.2 Adaptation of marine life) of the Alfred-Wegener-Institut, Helmholtz-Zentrum für Polar-und Meeresforschung, Germany. The Deutscher Akademischer Austauschdienst (DAAD) made possible the research stay of LD-R at AWI, with focus on the molecular biological aspects. UT-J acknowledges the funding support from the International Max Planck Research School of Marine Microbiology for her master studies and research opportunities.
FundersFunding numbers
ICMyL-UNAM
-
International Max Planck Research School of Marine Microbiology
-
CONACYT
A1-S-8616
UNAM
-
ICML-UNAM
-

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