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Hing, M. L.

Publications and source records attributed to Hing, M. L..

2 recordsLinked to original sources

Delayed recovery and host specialization may spell disaster for coral-fish mutualism

Mutualisms are prevalent in many ecosystems, yet little is known about how symbioses are affected by multiple disturbances. Here we show delayed recovery for 13 coral-dwelling goby fishes (genus Gobiodon) compared with their host Acropora corals following 4 consecutive cyclones and heatwaves. While corals became twice as abundant 3 years post-disturbances, their symbiotic gobies were only half as abundant relative to pre-disturbances and half of the goby species disappeared. Although goby species preferred particular coral species, surviving goby species shifted hosts to newly abundant coral species when their preferred hosts became rare. As host specialization is key for goby fitness, shifting hosts may have negative fitness consequences for gobies and corals alike and affect their survival in response to environmental changes. Our study demonstrates that mutualist partners do not respond identically to multiple disturbances, and that goby host plasticity, while potentially detrimental, may be the only possibility for early recovery.

ecology↗

Uneven declines between corals and cryptobenthic fish symbionts from multiple disturbances

With the onset and increasing frequency of multiple disturbances, the recovery potential of critical ecosystem-building species and their mutual symbionts is threatened. Similar effects to both hosts and their symbionts following disturbances have been assumed. However, we report unequal declines between hosts and symbionts throughout multiple climate-driven disturbances in reef-building Acropora corals and cryptobenthic coral-dwelling Gobiodon gobies. Communities were surveyed before and after consecutive cyclones (2014, 2015) and heatwaves (2016, 2017). After cyclones, coral size and goby group size decreased similarly by 28-30%. After heatwave-induced bleaching, coral size decreased substantially (47%) and the few gobies recorded mostly inhabited corals singly. Despite several coral species still occurring after bleaching, all goby species declined, leaving 78% of corals uninhabited. These findings suggest that gobies, which are important mutual symbionts for corals, are unable to cope with consecutive disturbances. This disproportionate decline could lead to ecosystem-level disruptions through loss of key symbiotic services to corals.

ecology↗