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Bellotto, C.

Publications and source records attributed to Bellotto, C..

2 recordsLinked to original sources

Overwintering performance of juvenile temperate estuarine fish

Estuaries, rich in biodiversity and economically valuable species, are increasingly threatened by climate change-induced factors that challenge fish resilience and survival. This study compared the performance of estuarine fishes between water temperatures reflecting two scenarios: current Sydney winters (16{degrees}C) and future winters under climate change (20{degrees}C), and at two food levels, for three estuarine fish species (eastern fortescue, Centropogon australis, common silverbiddy, Gerres subfasciatus, and eastern striped trumpeter, Pelates sexlineatus) Overall, as expected from metabolic theory, fish performance was generally higher at higher temperatures, with growth rates higher at 20{degrees}C for G. subfasciatus and C. australis. Bite rates and aerobic scope were generally higher at the higher temperature for all species. G. subfasciatus and P. sexlineatus exhibited increased escape responses at 20{degrees}C, with P. sexlineatus also showing greater boldness. Boldness was positively associated with bite rates in P. sexlineatus, potentially indicating foraging advantages under future warming for this species. The order of temperature treatment (20{degrees}C then 16{degrees}C, vs 16{degrees}C then 20{degrees}C) affected boldness for G. subfasciatus and growth rate, total length, bite rate and burst speed for P. sexlineatus. Contrary to expectations, food had no effect on fish performance either directly or interacting with temperature, and all three species generally performed better at 20{degrees}C than 16{degrees}C, suggesting this study was conducted below the species thermal optima. Future climate change may therefore favour temperate estuarine fishes at winter temperatures, with potential benefits differing among these species.

ecology↗

Individual performance niches may buffer population responses to climate change in estuarine fishes

Climate change may impact individual organisms in different ways, a consideration often overshadowed by predominant focus on population effects in studies. We examined three estuarine fish species to determine if individual fish performance, persisted across winter water temperatures. Fish performance at 16{degrees}C (current Sydney winter estuarine water temperature) and 20{degrees}C (predicted under climate change) with low and high food regimes was assessed using key physiological (growth, aerobic scope, burst speed) and behavioural parameters (foraging activity, boldness, shelter usage, predator escape response). We expected a strong positive relationship between performance at 16{degrees}C and 20{degrees}C for each parameter, and interactions with food level, however in general this was not found for any species. Relative performance was only maintained across temperatures for a few parameters, such as bite rate, boldness, and shelter response in one species (trumpeter Pelates sexlineatus), with aerobic scope in silver biddy Gerres subfasciatus, and boldness in fortescue Centropogon australis. Our results suggest that individuals fitness (directly via changes in growth, indirectly via behaviours) will be impacted by climate warming due to differences in relative performance among individuals across water temperatures. Changes in relative performance among individuals may initially compensate for a population-level response, thereby buffering the effects of climate change.

ecology↗