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用泡沫建造房屋——丛蛙泡沫巢的建筑和三相施工过程。

Building a home from foam--túngara frog foam nest architecture and three-phase construction process.

机构信息

Ecology and Evolutionary Biology, Faculty of Biomedical and Life Sciences, Graham Kerr Building, University of Glasgow, Glasgow G12 8QQ, Scotland, UK.

出版信息

Biol Lett. 2010 Jun 23;6(3):293-6. doi: 10.1098/rsbl.2009.0934. Epub 2010 Jan 27.

Abstract

Frogs that build foam nests floating on water face the problems of over-dispersion of the secretions used and eggs being dangerously exposed at the foam : air interface. Nest construction behaviour of túngara frogs, Engystomops pustulosus, has features that may circumvent these problems. Pairs build nests in periodic bursts of foam production and egg deposition, three discrete phases being discernible. The first is characterized by a bubble raft without egg deposition and an approximately linear increase in duration of mixing events with time. This phase may reduce initial over-dispersion of foam precursor materials until a critical concentration is achieved. The main building phase is marked by mixing events and start-to-start intervals being nearly constant in duration. During the final phase, mixing events do not change in duration but intervals between them increase in an exponential-like fashion. Pairs joining a colonial nesting abbreviate their initial phase, presumably by exploiting a pioneer pair's bubble raft, thereby reducing energy and material expenditure, and time exposed to predators. Finally, eggs are deposited only in the centre of nests with a continuously produced, approximately 1 cm deep egg-free cortex that protectively encloses hatched larvae in stranded nests.

摘要

在水上漂浮的泡沫巢中的青蛙面临着分泌物过度分散和卵子在泡沫与空气界面处暴露的危险的问题。然而,膨蛙(Engystomops pustulosus)的筑巢行为具有一些特点,可能可以避免这些问题。成对的膨蛙在周期性的泡沫产生和卵沉积的爆发中建造巢穴,可辨别出三个不同的阶段。第一阶段的特征是没有卵沉积的气泡筏,并且混合事件的持续时间随时间呈近似线性增加。这个阶段可能会减少泡沫前体材料的初始过度分散,直到达到临界浓度。主要的建筑阶段以混合事件和启动到启动间隔的持续时间几乎恒定为特征。在最后一个阶段,混合事件的持续时间不变,但它们之间的间隔以指数方式增加。加入殖民地筑巢的成对个体缩短了它们的初始阶段,可能是通过利用先驱对的气泡筏,从而减少了能量和材料的消耗,以及暴露于捕食者的时间。最后,只有在连续产生的、约 1 厘米深的无卵皮层中心才会沉积卵子,这种皮层保护性地将孵化的幼虫困在搁浅的巢中。

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