Nguyen Bao V, O'Donnell Brigid, Villamagna Amy M
Molecular and Cellular Biology, University of Massachusetts - Amherst, MA, USA.
Biological Sciences, Plymouth State University, NH, USA.
Conserv Physiol. 2021 May 10;9(1):coab022. doi: 10.1093/conphys/coab022. eCollection 2021.
Much research has focused on the population-level effects of climate change on Eastern Brook Trout (). While some studies have considered here sub-lethal stress caused by warming waters, the role of multiple, interacting stressors remains largely unexplored. We used inducible heat shock protein 70 (HSP70) as a molecular biomarker to assess response of Eastern Brook Trout in headwater streams to multiple potential stressors, including temperature. Over 7 sampling events during 2018 and 2019, we sampled 141 fish and found that HSP70 expression and 3-day mean water temperature exhibited a quadratic relationship ( -adj = 0.68). Further analyses showed that HSP70 expression was explained by temperature, relative water level and their interaction ( -adj = 0.75), while fish size and capture location were not factors. We observed a significant increase in HSP70 expression during periods of low relative water level with warm temperatures (18°C) and also during high relative water level with cold temperatures (8°C). Our results suggest that temperatures at the edges of the preferred range coupled with relative water level might act together to trigger the cellular stress response in Eastern Brook Trout and that there is greater variation in response at colder temperatures. These findings reinforce the need to consider complex, interactive stressors in influencing the health and persistence of Eastern Brook Trout populations into the future.
许多研究都聚焦于气候变化对东部溪鳟在种群层面的影响。虽然一些研究已经考虑了水温升高引起的亚致死应激,但多种相互作用应激源的作用在很大程度上仍未得到探索。我们使用诱导型热休克蛋白70(HSP70)作为分子生物标志物,来评估源头溪流中东部溪鳟对多种潜在应激源(包括温度)的反应。在2018年和2019年的7次采样事件中,我们对141条鱼进行了采样,发现HSP70表达与3天平均水温呈现二次关系(调整后R² = 0.68)。进一步分析表明,HSP70表达可由温度、相对水位及其相互作用来解释(调整后R² = 0.75),而鱼的大小和捕获地点并非影响因素。我们观察到,在相对水位较低且水温温暖(约18°C)的时期以及相对水位较高且水温寒冷(约8°C)的时期,HSP70表达均显著增加。我们的研究结果表明,偏好范围边缘的温度与相对水位可能共同作用,触发东部溪鳟的细胞应激反应,并且在较冷温度下反应的变异性更大。这些发现强化了在未来影响东部溪鳟种群健康和存续方面考虑复杂的相互作用应激源的必要性。