首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Light intensity controls anti-predator defences in Daphnia: the suppression of life-history changes
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Light intensity controls anti-predator defences in Daphnia: the suppression of life-history changes

机译:光照强度控制水蚤的反捕食者防御能力:抑制生活史的变化

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摘要

A huge variety of organisms respond to the presence of predators with inducible defences, each of which is associated with costs. Many genotypes have the potential to respond with more than one defence, and it has been argued that it would be maladaptive to exhibit all possible responses at the same time. Here, we test how a well-known anti-fish defence in Daphnia, life-history changes (LHC), is controlled by light. We show that the kairomone-mediated reduction in size at first reproduction is inversely coupled to the light intensity. A similar effect was found for the kairomone-mediated expression of candidate genes in Daphnia. We argue that the light intensity an individual is exposed to determines the degree of LHC, which allows for plastic adjustment to fluctuating environments and simultaneously minimizes the associated costs of multiple alternately deployable defences. It is hypothesized that this allows for a coupling of multiple defences, i.e. LHC and diel vertical migration.
机译:各种各样的生物以可诱导的防御对掠食者的存在做出反应,每种防御都与成本相关。许多基因型可能具有不止一种防御的反应,而且有人认为,同时表现出所有可能的反应可能是适应不良的。在这里,我们测试了水蚤如何控制水蚤的一种著名的反鱼防御,即生活史变化(LHC)。我们表明,在第一次复制时,由开罗莫酮介导的尺寸减小与光强度成反比。发现水蚤中候选基因的卡洛莫酮介导的表达具有类似的效果。我们认为,个人受到的光照强度决定了大型强子对撞机的程度,这可以对不断变化的环境进行塑料调整,同时最大程度地降低了多个可交替部署防御的相关成本。假设这允许多种防御的结合,即LHC和diel垂直迁移。

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