Energy use, growth and survival of coral reef snapper larvae reared at elevated temperatures

Author:

McMahon Shannon J.ORCID,Munday Philip L.,Donelson Jennifer M.

Abstract

AbstractThe success of individuals during the pelagic larval phase is critical to maintaining healthy and viable populations of coral reef fishes; however, it is also the most environmentally sensitive and energetically demanding life stage. Climate change is increasing the frequency and intensity of marine heatwaves, which could have significant effects on the development and survival of larval coral reef fishes. However, little is known about how the larvae of pelagic-spawning coral reef fishes will be affected due to the difficulty of spawning and rearing these species in captivity. In this study, we tested how elevated temperatures, similar to those occurring during a marine heatwave, affected the yolk utilization, growth, and survival of larval, Lutjanus carponotatus, a common mesopredatory fish on Indo-west Pacific coral reefs. Eggs and larvae were reared at a current-day average summer temperature (28.5 °C) and two elevated temperatures (30 °C and 31.5 °C) until 14 d post-hatch (dph). Larvae in the elevated temperatures depleted their yolk reserves 39% faster than at the control temperature. The standard length of larvae was 55% (30 °C) and 92% (31.5 °C) longer in the elevated temperature treatments than the control temperature at 14 dph. Conversely, survival of larvae was 54% (30 °C) and 68% (31.5 °C) lower at elevated temperatures compared with the control temperature. This study provides new insights as to how the early life stages of coral reef fishes could be affected by ocean warming and marine heatwaves, with implications for their population dynamics.

Funder

Centre of Excellence for Coral Reef Studies, Australian Research Council

Great Barrier Reef Marine Park Authority

James Cook University

Publisher

Springer Science and Business Media LLC

Subject

Aquatic Science

Reference85 articles.

1. AIMS (2017) AIMS sea water temperature observing system (AMIS temperature logger program), https://doi.org/10.25845/5b4eb0f9bb848, accessed 25-July-2022

2. Allen, GR (1985) FAO species catalogue. V. 6: Snappers of the world. An annotated and illustrated catalogue of lutjanid species known to date: FAO

3. Angilletta MJ Jr, Steury TD, Sears MW (2004) Temperature, growth rate, and body size in ectotherms: Fitting pieces of a life-history puzzle. Integr Comp Biol 44:498–509

4. Armsworth PR (2002) Recruitment limitation, population regulation, and larval connectivity in reef fish metapopulations. Ecology 83:1092–1104

5. Bates, D, Maechler, M, Bolker, B, Walker, S, Christensen, RHB, Singmann, H, . . . Scheipl, F (2012) Package ‘lme4’. CRAN. R Foundation for Statistical Computing, Vienna, Austria

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