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生长激素会增加虹鳟鱼被捕食的风险。

Growth hormone increases predation exposure of rainbow trout.

作者信息

Jönsson E, Johnsson J I, Björnsson B T

机构信息

Department of Zoophysiology, Göteborg University, Sweden.

出版信息

Proc Biol Sci. 1996 May 22;263(1370):647-51. doi: 10.1098/rspb.1996.0097.

Abstract

The energetic state of an animal strongly influences decisions that balances feeding against predation risk. Growth hormone increases the metabolic demands, which should elevate the feeding motivation of an animal. This, in turn, may increase the willingness to risk exposure to predators during feeding. To test this hypothesis, we studied the effect of growth hormone on the behavioural response of rainbow trout (Oncorhynchus mykiss) to simulated attacks from a model heron. After attacks, growth hormone treated trout foraged closer to the water surface, resumed feeding earlier, and ate more food than did control trout. Such behaviour should increase the susceptibility to aerial predation. Thus, predation may select against high endogenous growth hormone secretion in wild fish. Furthermore, genetic manipulations to increase growth hormone levels, intended to improve growth performance in aquaculture, may result in individuals with substantially altered behavioural patterns. In light of the increasing potential for interactions between farmed and wild fish, growth hormone transgenic fish may pose a threat to wild fish populations.

摘要

动物的能量状态会强烈影响其在觅食与被捕食风险之间权衡的决策。生长激素会增加代谢需求,这理应会提升动物的觅食动机。反过来,这可能会增加动物在觅食时暴露于捕食者的风险意愿。为了验证这一假设,我们研究了生长激素对虹鳟(Oncorhynchus mykiss)面对来自模型苍鹭模拟攻击时行为反应的影响。受到攻击后,经生长激素处理的虹鳟比对照虹鳟更靠近水面觅食,更早恢复进食,且进食量更多。这种行为会增加遭受空中捕食的易感性。因此,捕食可能会在野生鱼类中选择抑制高内源性生长激素分泌。此外,旨在提高水产养殖生长性能而进行的增加生长激素水平的基因操作,可能会导致个体行为模式发生显著改变。鉴于养殖鱼类与野生鱼类之间相互作用的可能性不断增加,生长激素转基因鱼可能会对野生鱼类种群构成威胁。

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