Effects of elevated pCO2 on bioenergetics and disease susceptibility in Pacific herring Clupea pallasii

IF 2.2 3区 环境科学与生态学 Q2 ECOLOGY Marine Ecology Progress Series Pub Date : 2024-06-20 DOI:10.3354/meps14607
C. S. Murray, J. L. Gregg, A. H. Mackenzie, H. T. Jayasekera, S. Hall, T. Klinger, P. K. Hershberger
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Abstract

ABSTRACT: Ocean acidification can affect the immune responses of fish, but effects on pathogen susceptibility remain uncertain. Pacific herring Clupea pallasii were reared from hatch under 3 CO2 partial pressure ( pCO2) treatments (ambient, ∼650 µatm; intermediate, ∼1500 µatm; high, ∼3000 µatm) through metamorphosis (98 d) to evaluate the effects of ocean acidification on bioenergetics and susceptibility to an endemic viral disease. Mortality from viral hemorrhagic septicemia (VHS) was comparable between herring reared under ambient and intermediate pCO2 (all vulnerability testing at ambient pCO2). By contrast, fish reared under high pCO2 experienced significantly higher rates of VHS mortality, and the condition factor of survivors was significantly lower than in the other pCO2 treatments. However, the prevalence of infection among survivors was not influenced by pCO2 treatment. Pre-flexion larval development was not affected by elevated pCO2, as growth rate, energy use, and feeding activity were comparable across treatments. Similarly, long-term growth (14 wk) was not affected by chronic exposure to elevated pCO2. Herring reared under both elevated pCO2 treatments showed an average reduction in swimming speed; however, wide intra-treatment variability rendered the effect nonsignificant. This study demonstrates that the VHS susceptibility and bioenergetics of larval and post-metamorphic Pacific herring are not affected by near-future ocean acidification predicted for coastal systems of the North Pacific. However, increased susceptibility to VHS in fish reared under 3000 µatm pCO2 indicates potential health and fitness consequences from extreme acidification.
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pCO2 升高对太平洋鲱鱼(Clupea pallasii)生物能和疾病易感性的影响
摘要:海洋酸化会影响鱼类的免疫反应,但对病原体易感性的影响仍不确定。将太平洋鲱鱼(Clupea pallasii)从孵化开始在3种二氧化碳分压(pCO2)处理(环境,∼650 µatm;中度,∼1500 µatm;高度,∼3000 µatm)下饲养至变态(98 d),以评估海洋酸化对生物能和对一种地方性病毒性疾病易感性的影响。在环境pCO2和中等pCO2条件下饲养的鲱鱼病毒性出血性败血症(VHS)死亡率相当(所有易感性测试均在环境pCO2条件下进行)。相比之下,在高 pCO2 条件下饲养的鲱鱼的出血性败血症死亡率明显更高,幸存者的体质指数明显低于其他 pCO2 处理。但是,幸存者的感染率不受 pCO2 处理的影响。折叠前幼虫的发育不受 pCO2 升高的影响,因为不同处理的生长速度、能量利用和摄食活动相当。同样,长期生长(14 周)也不受长期暴露于 pCO2 升高环境的影响。在两种 pCO2 升高处理下饲养的鲱鱼的平均游泳速度都有所下降;但是,由于处理内的差异很大,因此这种影响并不显著。这项研究表明,太平洋鲱鱼幼体和变态后的VHS易感性和生物能不会受到北太平洋沿岸系统预测的近未来海洋酸化的影响。然而,在 3000 µatm pCO2 条件下饲养的鱼类对 VHS 的易感性增加,表明极端酸化可能会对健康和体能造成影响。
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来源期刊
Marine Ecology Progress Series
Marine Ecology Progress Series 环境科学-海洋学
CiteScore
5.30
自引率
8.00%
发文量
238
审稿时长
3 months
期刊介绍: The leading journal in its field, MEPS covers all aspects of marine ecology, fundamental and applied. Topics covered include microbiology, botany, zoology, ecosystem research, biological oceanography, ecological aspects of fisheries and aquaculture, pollution, environmental protection, conservation, and resource management.
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