Calado Ricardo, Mota Vasco C, Madeira Diana, Leal Miguel C
ECOMARE, CESAM-Centre for Environmental and Marine Studies, Department of Biology, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
Nofima AS, P.O. Box 6122, NO-9291 Tromsø, Norway.
Animals (Basel). 2021 Jun 16;11(6):1800. doi: 10.3390/ani11061800.
Atlantic salmon () cage farming has traditionally been located at higher latitudes where cold seawater temperatures favor this practice. However, these regions can be impacted by ocean warming and heat waves that push seawater temperature beyond the thermo-tolerance limits of this species. As more mass mortality events are reported every year due to abnormal sea temperatures, the Atlantic salmon cage aquaculture industry acknowledges the need to adapt to a changing ocean. This paper reviews adult Atlantic salmon thermal tolerance limits, as well as the deleterious eco-physiological consequences of heat stress, with emphasis on how it negatively affects sea cage aquaculture production cycles. Biotechnological solutions targeting the phenotypic plasticity of Atlantic salmon and its genetic diversity, particularly that of its southernmost populations at the limit of its natural zoogeographic distribution, are discussed. Some of these solutions include selective breeding programs, which may play a key role in this quest for a more thermo-tolerant strain of Atlantic salmon that may help the cage aquaculture industry to adapt to climate uncertainties more rapidly, without compromising profitability. Omics technologies and precision breeding, along with cryopreservation breakthroughs, are also part of the available toolbox that includes other solutions that can allow cage farmers to continue to produce Atlantic salmon in the warmer waters of the oceans of tomorrow.
大西洋鲑鱼()网箱养殖传统上位于较高纬度地区,那里寒冷的海水温度有利于这种养殖方式。然而,这些地区可能会受到海洋变暖和热浪的影响,导致海水温度超出该物种的耐热极限。由于异常海温导致每年报告的大规模死亡事件增多,大西洋鲑鱼网箱养殖行业认识到需要适应不断变化的海洋环境。本文综述了成年大西洋鲑鱼的耐热极限,以及热应激对生态生理的有害影响,重点探讨了热应激如何对海水网箱养殖生产周期产生负面影响。文中还讨论了针对大西洋鲑鱼表型可塑性及其遗传多样性,特别是其自然动物地理分布极限处最南端种群的生物技术解决方案。其中一些解决方案包括选择性育种计划,这可能在培育更耐热的大西洋鲑鱼品系的过程中发挥关键作用,有助于网箱养殖行业在不影响盈利能力的情况下,更快地适应气候不确定性。组学技术、精准育种以及冷冻保存方面的突破,也是现有工具的一部分,这些工具还包括其他解决方案,可使网箱养殖者在未来更温暖的海洋水域继续养殖大西洋鲑鱼。