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Coping with predator stress: interclonal differences in induction of heat-shock proteins in the water flea Daphnia magna

机译:应对捕食者应激:水蚤蚤蚤中热激蛋白诱导的克隆间差异

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摘要

Although predation is a strong selection pressure, little is known about the molecular mechanisms to cope with predator stress. This is crucial to understanding of the mechanisms and constraints involved in the evolution of antipredator traits. We quantified the expression of heat-shock protein 60 (Hsp60), a potential marker for predator stress, in four clones of the water flea Daphnia magna, when exposed to fish kairomones. Expression of Hsp60 induction increased after 6 h and returned to base levels after 24 h of predator stress. This suggests that it is a costly transient mechanism to temporarily cope with novel predator stress, before other defences are induced. We found genetic variation in the fixed levels and in the fish-induced levels of Hsp60, which seemed to be linked to each clone's history of fish predation. Our data suggest that Hsp60 can be considered part of a multiple-trait antipredator defence strategy of Daphnia clones to cope with predator stress.
机译:尽管捕食是一个强大的选择压力,但对于应付捕食者应激的分子机制知之甚少。这对于理解反捕食者性状演变所涉及的机制和限制至关重要。我们定量分析了水蚤蚤(Daphnia magna)的四个克隆中的热休克蛋白60(Hsp60)(当暴露于鱼海洛酮中时)的表达,这是捕食者应激的潜在标记。 Hsp60诱导的表达在6 h后增加,并在捕食者应激24 h后恢复至基础水平。这表明在诱导其他防御措施之前暂时应对新的捕食者应激是一种代价高昂的暂时机制。我们在固定水平和鱼类诱导的Hsp60水平中发现了遗传变异,这似乎与每个克隆的鱼类捕食史有关。我们的数据表明,Hsp60可以被视为水蚤克隆以应对捕食者应激的多性状抗捕食者防御策略的一部分。

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