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通过两种来自不同纬度的海参的代谢性能推断出的适应能力。

Acclimation capability inferred by metabolic performance in two sea cucumber species from different latitudes.

机构信息

Leibniz Centre for Tropical Marine Research (ZMT), Fahrenheitstraße 6, 28359, Bremen, Germany.

MARE - Marine and Environmental Sciences Centre, ESTM, Instituto Politécnico de Leiria, 2520-641, Peniche, Portugal.

出版信息

J Therm Biol. 2019 Aug;84:407-413. doi: 10.1016/j.jtherbio.2019.07.019. Epub 2019 Jul 25.

DOI:10.1016/j.jtherbio.2019.07.019
PMID:31466780
Abstract

The notion that thermal specialists from tropical regions live closer to their temperature limits than temperate eurytherms, seems too generalized. Species specific differences in physiological and biochemical stress reactions are linked to key components of organism fitness, like metabolic capacity, which indicates that acclimation potential across latitudes might be highly diverse rather than simplistic. In this study the exposure of a tropical (Holothuria scabra) and a temperate (Holothuria forskali) sea cucumber species to identical cold- and warm-acclimation stress was compared using the key metabolic parameters, respiration rate, enzyme activity (ETS, LDH, IDH), and energy reserve fractions (lipid, carbohydrate and protein). Results show much broader respiratory adjustments, as response to temperature change, in H. scabra (2-30 μgOgwwh) compared to H. forskali (1.5-6.6 μgOgwwh). Moreover, the tropical species showed clearly pronounced up and down regulation of metabolic enzymes and shifts in energy reserves, due to thermal acclimation, while the same metabolic indicators remained consistent in the temperate species. In summary, these findings indicate enhanced metabolic plasticity in H. scabra at the cost of elevated energy expenditures, which seems to favor the tropical stenotherm in terms of thermal acclimation capacity. The comparison of such holistic metabolic analyses between conspecifics and congeners, may help to predict the heterogeneous effects of global temperature changes across latitudinal gradients.

摘要

从热带地区来的热专家比温带广温动物更接近它们的温度极限,这种观点似乎过于笼统。生理和生化应激反应的物种特异性差异与生物体适应能力的关键组成部分有关,如代谢能力,这表明跨纬度的适应潜力可能高度多样化,而不是简单化。在这项研究中,使用关键代谢参数呼吸率、酶活性(ETS、LDH、IDH)和能量储备分数(脂质、碳水化合物和蛋白质)比较了热带(海参)和温带(海参)海参物种对相同冷温和温暖适应应激的暴露。结果表明,与 H. forskali(1.5-6.6μgOgwwh)相比,H. scabra(2-30μgOgwwh)对温度变化的呼吸调整更为广泛。此外,热带物种由于热适应而明显上调和下调代谢酶,并改变能量储备,而温带物种的相同代谢指标保持一致。总之,这些发现表明,H. scabra 的代谢可塑性增强,代价是能量消耗增加,这似乎有利于热带狭温动物的热适应能力。在同种和同属之间进行这种整体代谢分析的比较,可能有助于预测全球温度变化在纬度梯度上的异质影响。

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