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在次优觅食条件下的最优网络投资。

Optimal web investment in sub-optimal foraging conditions.

作者信息

Harmer Aaron M T, Kokko Hanna, Herberstein Marie E, Madin Joshua S

机构信息

Department of Biological Sciences, Macquarie University, Sydney, NSW, 2109, Australia.

出版信息

Naturwissenschaften. 2012 Jan;99(1):65-70. doi: 10.1007/s00114-011-0862-4. Epub 2011 Nov 18.

Abstract

Orb web spiders sit at the centre of their approximately circular webs when waiting for prey and so face many of the same challenges as central-place foragers. Prey value decreases with distance from the hub as a function of prey escape time. The further from the hub that prey are intercepted, the longer it takes a spider to reach them and the greater chance they have of escaping. Several species of orb web spiders build vertically elongated ladder-like orb webs against tree trunks, rather than circular orb webs in the open. As ladder web spiders invest disproportionately more web area further from the hub, it is expected they will experience reduced prey gain per unit area of web investment compared to spiders that build circular webs. We developed a model to investigate how building webs in the space-limited microhabitat on tree trunks influences the optimal size, shape and net prey gain of arboricolous ladder webs. The model suggests that as horizontal space becomes more limited, optimal web shape becomes more elongated, and optimal web area decreases. This change in web geometry results in decreased net prey gain compared to webs built without space constraints. However, when space is limited, spiders can achieve higher net prey gain compared to building typical circular webs in the same limited space. Our model shows how spiders optimise web investment in sub-optimal conditions and can be used to understand foraging investment trade-offs in other central-place foragers faced with constrained foraging arenas.

摘要

圆蛛在等待猎物时会待在近似圆形的蛛网中心,因此面临着与中心地觅食者许多相同的挑战。猎物价值会随着与蛛网中心的距离增加而降低,这是猎物逃脱时间的函数。猎物在离中心越远的地方被拦截,蜘蛛到达猎物所需的时间就越长,猎物逃脱的可能性也越大。几种圆蛛会在树干上构建垂直拉长的梯状圆网,而不是在开阔空间构建圆形圆网。由于梯状圆网蜘蛛在离中心较远的地方投入了不成比例的更多蛛网面积,预计与构建圆形蛛网的蜘蛛相比,它们每单位蛛网投资获得的猎物收益会减少。我们开发了一个模型,以研究在树干上空间有限的微生境中构建蛛网如何影响树栖梯状蛛网的最佳大小、形状和净猎物捕获量。该模型表明,随着水平空间变得更加有限,最佳蛛网形状会变得更加细长,最佳蛛网面积会减小。与在没有空间限制的情况下构建的蛛网相比,这种蛛网几何形状的变化导致净猎物捕获量减少。然而,当空间有限时,与在相同有限空间中构建典型圆形蛛网相比,蜘蛛可以获得更高的净猎物捕获量。我们的模型展示了蜘蛛如何在次优条件下优化蛛网投资,并可用于理解其他面临觅食区域受限的中心地觅食者的觅食投资权衡。

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