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利用内分泌生长指标胰岛素样生长因子结合蛋白(IGFBP-1b)评估加拿大不列颠哥伦比亚省乔治亚海峡洄游后期银大麻哈鱼的生长状况。

Utilization of an endocrine growth index, insulin-like growth factor binding protein (IGFBP)-1b, for postsmolt coho salmon in the Strait of Georgia, British Columbia, Canada.

机构信息

Faculty of Fisheries Sciences, Hokkaido University, 3-1-1 Minato, Hakodate, Hokkaido, 041-8611, Japan.

Environmental and Fisheries Sciences Division, Northwest Fisheries Science Center, National Marine Fisheries Service, 2725 Montlake Boulevard East, Seattle, WA, 98112, USA.

出版信息

Fish Physiol Biochem. 2019 Dec;45(6):1867-1878. doi: 10.1007/s10695-019-00681-y. Epub 2019 Jul 11.

Abstract

Monitoring the growth of salmon during their early marine phase provides insights into prey availability, and growth rates may be linked to risks of size-dependent mortality. However, the measurement of growth rate is challenging for free-living salmon in the ocean. Insulin-like growth factor (IGF)-I is a growth-promoting hormone that is emerging as a useful index of growth in salmon. In addition, laboratory-based studies using coho salmon have shown that one of circulating IGF-binding proteins (IGFBPs), IGFBP-1b, is induced by fasting and thus could be used as an inverse index of growth and/or catabolic state in salmon. However, few studies have measured plasma levels of IGFBP-1b in salmon in the wild. We measured plasma IGFBP-1b levels for postsmolt coho salmon collected in the Strait of Georgia and surrounding waters, British Columbia, Canada, and compared regional differences in IGFBP-1b to ecological information such as seawater temperature and stomach fullness. Plasma IGFBP-1b levels were the highest in fish from Eastern Johnstone Strait and relatively high in Queen Charlotte Strait and Western Johnstone Strait, which was in good agreement with the poor ocean conditions for salmon hypothesized to occur in that region. The molar ratio of plasma IGF-I to IGFBP-1b, a theoretical parameter of IGF-I availability to the receptor, discriminated differences among regions better than IGF-I or IGFBP-1b alone. Our data suggest that plasma IGFBP-1b reflects catabolic status in postsmolt coho salmon, as highlighted in fish in Eastern Johnston Strait, and is a useful tool to monitor negative aspects of salmon growth in the ocean.

摘要

监测鲑鱼在早期海洋阶段的生长情况可以深入了解其猎物的可获得性,并且生长速度可能与因体型而异的死亡率风险相关。然而,在海洋中测量洄游性鲑鱼的生长速度具有挑战性。胰岛素样生长因子 (IGF)-I 是一种促进生长的激素,它正成为鲑鱼生长的有用指标。此外,基于实验室的银大麻哈鱼研究表明,一种循环 IGF 结合蛋白 (IGFBP),IGFBP-1b,会因禁食而被诱导,因此可以用作鲑鱼生长和/或分解代谢状态的反指标。然而,很少有研究在野外测量鲑鱼的血浆 IGFBP-1b 水平。我们测量了在加拿大不列颠哥伦比亚省乔治亚海峡和周围水域收集的刚过孵化期的银大麻哈鱼的血浆 IGFBP-1b 水平,并将 IGFBP-1b 的区域差异与生态信息(如海水温度和胃饱满度)进行了比较。东约翰斯顿海峡的鱼的血浆 IGFBP-1b 水平最高,夏洛特皇后海峡和西约翰斯顿海峡的水平相对较高,这与假设该地区鲑鱼的海洋条件较差的情况非常吻合。血浆 IGF-I 与 IGFBP-1b 的摩尔比,即 IGF-I 对受体的可用性的理论参数,比 IGF-I 或 IGFBP-1b 单独区分区域差异的能力更好。我们的数据表明,血浆 IGFBP-1b 反映了刚过孵化期银大麻哈鱼的分解代谢状态,如东约翰斯顿海峡的鱼所强调的那样,是监测海洋中鲑鱼生长负面方面的有用工具。

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