Temporal variation and photochemical efficiency of species in Symbiodinaceae associated with coral Leptoria phrygia (Scleractinia; Merulinidae) exposed to contrasting temperature regimes

PLoS One. 2019 Jun 28;14(6):e0218801. doi: 10.1371/journal.pone.0218801. eCollection 2019.

Abstract

The Symbiodinaceae are paradoxical in that they play a fundamental role in the success of scleractinian corals, but also in their dismissal when under stress. In the past decades, the discovery of the endosymbiont's genetic and functional diversity has led people to hope that some coral species can survive bleaching events by associating with a stress-resistant symbiont that can become dominant when seawater temperatures increase. The variety of individual responses encouraged us to scrutinize each species individually to gauge its resilience to future changes. Here, we analyse the temporal variation in the Symbiodinaceae community associated with Leptoria phrygia, a common scleractinian coral from the Indo-Pacific. Coral colonies were sampled from two distant reef sites located in southern Taiwan that differ in temperature regimes, exemplifying a 'variable site' (VS) and a 'steady site' (SS). We investigated changes in the relative abundance of the dominant symbiont and its physiology every 3-4 months from 2016-2017. At VS, 11 of the 12 colonies were dominated by the stress-resistant Durusdinium spp. (>90% dominance) and only one colony exhibited co-dominance between Durusdinium spp. and Cladocopium spp. Every colony displayed high photochemical efficiency across all sampling periods, while showing temporal differences in symbiont density and chlorophyll a concentration. At SS, seven colonies out of 13 were dominated by Cladocopium spp., five presented co-dominance between Durusdinium spp./Cladocopium spp. and only one was dominated by Durusdinium spp. Colonies showed temporal differences in photochemical efficiency and chlorophyll a concentration during the study period. Our results suggest that VS colonies responded physiologically better to high temperature variability by associating with Durusdinium spp., while in SS there is still inter-colonial variability, a feature that might be advantageous for coping with different environmental changes.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acclimatization
  • Alveolata / chemistry
  • Alveolata / classification*
  • Alveolata / isolation & purification
  • Animals
  • Anthozoa / parasitology*
  • Chlorophyll A / metabolism*
  • DNA, Protozoan / genetics
  • Phylogeny
  • Sequence Analysis, DNA
  • Symbiosis
  • Taiwan
  • Temperature

Substances

  • DNA, Protozoan
  • Chlorophyll A

Grants and funding

This work was supported by Taiwan International Graduate Program, Biodiversity Program, Academia Sinica and National Taiwan Normal University (http://tigp-biodiv.biodiv.tw/) to RCB; 101-2621-B-001-005-MY3. Ministry of Science and Technology of Taiwan (https://www.most.gov.tw/?l=en) to CAC; AS-104-SS-A03. Academia Sinica (https://www.sinica.edu.tw/en) to CAC. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.