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Hatching plasticity in a Southeast Asian tree frog

机译:在东南亚树蛙中孵化可塑性

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Hatching, the life history switch point between embryonic and larval or subadult stages, has traditionally been regarded as a fixed event in an organism's development. This notion has been challenged by reports of environmentally cued hatching in recent years, which show embryos improve fitness by hatching in response to mortality risks. Here, we present evidence of accelerated hatching due to predation at two points during embryonic development in Chiromantis hansenae. Young embryos (0 day old) exposed to simulated predation hatched earlier compared to undisturbed clutches. Old embryos (4 days old) subjected to direct katydid predation had more immediate responses, hatching 1 h after predation on average. Hatching time was not correlated with female frog size, egg attendance time, or other predator cues. Results confirm predator-cued hatching in a new family of amphibians and support hatching plasticity being a widespread and potentially ancestral condition. We suggest mechanisms and ecological basis of cue transmission and response in C. hansenae and point out potential further research.
机译:孵化是胚胎和幼虫或成年后阶段之间的生活史转换点,传统上将其视为生物体发育中的固定事件。近年来有关环境提示孵化的报道对此概念提出了挑战,这些报道表明胚胎通过孵化来提高死亡率,从而提高了适应性。在这里,我们提出了由于汉密罗嘴猴胚胎发育过程中两点被捕食而加速孵化的证据。与不受干扰的离合器相比,暴露于模拟捕食的年轻胚胎(0天大)孵化更早。直接进行katydid捕食的老胚胎(4天大)具有更迅速的反应,平均捕食后<1 h孵化。孵化时间与雌蛙大小,产卵时间或其他捕食者线索无关。结果证实了新的两栖动物家族中以捕食者为线索的孵化,并支持孵化可塑性是一种普遍存在的潜在祖传条件。我们提出了汉逊梭菌提示传递和响应的机制和生态学基础,并指出了可能的进一步研究。

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