Reproductive Resilience: Pathways to Gametogenic Success in Montipora capitata after Bleaching

Author:

Timmins-Schiffman E1,Duselis E2,Brown T1,Axworthy JB1,Backstrom CH1,Riffle M1,Dilworth J3,Kenkel CD3,Rodrigues LF4,Nunn BL1,Padilla-Gamiño JL1

Affiliation:

1. University of Washington

2. NOAA NOS NCCOS

3. University of Southern California

4. Villanova University

Abstract

Abstract

Thermal bleaching, or the loss of symbiotic algae that provide most energetic resources for the coral host, is an increasing threat to reefs worldwide and is projected to worsen with climate change. While bleaching is a well-recognized threat, the impact on the process of reproduction in bleaching survivors is not well resolved, despite being central to coral resilience. Montipora capitata can survive bleaching while completing a full gametogenic cycle, offering an ideal system to study gametogenic resilience and physiological tradeoffs. We experimentally bleached fragments of M. capitata colonies and followed their gametogenesis and physiological responses for 10 months (six time points). All bleached colonies produced gametes at the same time as controls, suggesting that reproductive processes were energetically prioritized. However, proteomic analysis revealed tradeoffs and delays in activating key physiological processes earlier in gametogenesis in areas such as skeletal growth and reproductive hormone synthesis. Tradeoffs during the gametogenic cycle, likely a direct response to thermal bleaching, resulted in smaller oocytes from bleached colonies, potentially indicating decreased transfer of parental resources to gametes. While gametogenesis is likely to continue in this species, it is unknown how the viability and success of future offspring may be impacted by future bleaching events.

Publisher

Springer Science and Business Media LLC

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