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Responses of the arcto-boreal krill species Thysanoessa inermis to variations in water temperature: coupling Hsp70 isoform expressions with metabolism

机译:北极磷虾物种Thysanoessa inermis对水温变化的响应:Hsp70亚型表达与代谢的耦合

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摘要

Recent studies have indicated a metabolic temperature sensitivity in both the arcto-boreal krill species Thysanoessa inermis and Thysanoessa raschii that may determine these species’ abundance and population persistence at lower latitudes (up to 40° N). T. inermis currently dominates the krill community in the Barents Sea and in the high Arctic Kongsfjord. We aimed to increase the knowledge on the upper thermal limit found in the latter species by estimating the CT50 value (19.7 °C) (critical temperature at which 50 % of animals are reactive) and by linking metabolic rate measurements with molecular approaches. Optical oxygen sensors were used to measure respiration rates in steps of 2 °C (from 0 to 16 °C). To follow the temperature-mediated mechanisms of passive response, i.e., as a proxy for molecular stress, molecular chaperone heat shock protein 70 (Hsp70) sequences were extracted from a transcriptome assembly, and the gene expression kinetics were monitored during an acute temperature exposure to 6 or 10 °C with subsequent recovery at 4 °C. Our results showed upregulation of hsp70 genes, especially the structurally constitutive and mitochondrial isoforms. These findings confirmed the temperature sensitivity of T. inermis and showed that the thermal stress took place before reaching the upper temperature limit estimated by respirometry at 12 °C. This study provides a baseline for further investigations into the thermal tolerances of arcto-boreal Thysanoessa spp. and comparisons with other krill species under different climatic regimes, especially Antarctica.Electronic supplementary materialThe online version of this article (doi:10.1007/s12192-016-0720-6) contains supplementary material, which is available to authorized users.
机译:最近的研究表明,北北极磷虾物种Thysanoessa inermis和Thysanoessa raschii对代谢温度的敏感性可能决定了这些物种在较低纬度(最高40°N)下的丰度和种群持久性。目前,T。inermis主导着巴伦支海和北极高地峡湾地区的磷虾群落。我们旨在通过估计CT50值(19.7°C)(50%的动物具有反应性的临界温度)并将代谢率测量值与分子方法联系起来,以增加对后一种物种的热上限的认识。使用光学氧气传感器以2°C(从0到16°C)的步长测量呼吸频率。为了遵循温度介导的被动应答机制,即作为分子应激的代理,从转录组组件中提取了分子伴侣热激蛋白70(Hsp70)序列,并在急性温度下对基因表达动力学进行了监测。 6或10°C,随后在4°C恢复。我们的研究结果显示了hsp70基因的上调,尤其是结构性和线粒体同工型。这些发现证实了无定形棉的温度敏感性,并表明热应力发生在达到呼吸测定法在12°C估算的温度上限之前。这项研究为进一步研究弧形北方Thysanoessa spp的耐热性提供了基线。电子补充材料本文的在线版本(doi:10.1007 / s12192-016-0720-6)包含补充材料,授权用户可以使用。

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