Suppr超能文献

种子捕食者的移动策略作为植物补充格局的决定因素

Movement strategies of seed predators as determinants of plant recruitment patterns.

作者信息

Mari Lorenzo, Casagrandi Renato, Gatto Marino, Avgar Tal, Nathan Ran

机构信息

Dipartimento di Elettronica e Informazione, Politecnico di Milano, Via Ponzio 34/5, 20133 Milano, Italy.

出版信息

Am Nat. 2008 Nov;172(5):694-711. doi: 10.1086/591687.

Abstract

Plant recruitment in nature exhibits several distinctive patterns ranging from hump shaped to monotonically decreasing with distance from the seed source. We investigate the role of postdispersal seed predation in shaping these patterns, introducing a new mechanistic model that explicitly accounts for the movement strategy used by seed eaters. The model consists of two partial differential equations describing the spatiotemporal dynamics of both seed and predator densities. The movement strategy is defined by how predators move in response to the different cues they can use to search for seeds. These cues may be seed density, seed intake, distance from the plant, density of conspecific foragers, or a mixture of these four. The model is able to reproduce all the basic plant recruitment patterns found in the field. We compare the results to those of the ideal free distribution (IFD) theory and show that hump-shaped plant recruitment patterns cannot be generated by IFD predators and, in general, by foragers that respond exclusively to seed density. These foragers can produce only nonincreasing patterns, the shapes of which are determined by the foragers' navigation capacities. In contrast, hump-shaped patterns can be produced by distance-responsive predators or by foragers that use conspecifics as a cue for seed abundance.

摘要

自然界中的植物补充呈现出几种独特的模式,从驼峰形到随着与种子源距离的增加而单调递减。我们研究了扩散后种子捕食在塑造这些模式中的作用,引入了一个新的机制模型,该模型明确考虑了种子捕食者所采用的移动策略。该模型由两个偏微分方程组成,描述了种子和捕食者密度的时空动态。移动策略由捕食者如何根据它们可用于搜索种子的不同线索进行移动来定义。这些线索可能是种子密度、种子摄入量、与植物的距离、同种觅食者的密度,或者这四种的混合。该模型能够重现实地观察到的所有基本植物补充模式。我们将结果与理想自由分布(IFD)理论的结果进行比较,结果表明驼峰形的植物补充模式不能由IFD捕食者产生,一般来说,也不能由仅对种子密度做出反应的觅食者产生。这些觅食者只能产生非递增模式,其形状由觅食者的导航能力决定。相比之下,驼峰形模式可以由对距离有反应的捕食者或通过将同种个体作为种子丰度线索的觅食者产生。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验