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Compilation and Network Analyses of Cambrian Food Webs

机译:寒武纪食物网的编制和网络分析

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摘要

A rich body of empirically grounded theory has developed about food webs—the networks of feeding relationships among species within habitats. However, detailed food-web data and analyses are lacking for ancient ecosystems, largely because of the low resolution of taxa coupled with uncertain and incomplete information about feeding interactions. These impediments appear insurmountable for most fossil assemblages; however, a few assemblages with excellent soft-body preservation across trophic levels are candidates for food-web data compilation and topological analysis. Here we present plausible, detailed food webs for the Chengjiang and Burgess Shale assemblages from the Cambrian Period. Analyses of degree distributions and other structural network properties, including sensitivity analyses of the effects of uncertainty associated with Cambrian diet designations, suggest that these early Paleozoic communities share remarkably similar topology with modern food webs. Observed regularities reflect a systematic dependence of structure on the numbers of taxa and links in a web. Most aspects of Cambrian food-web structure are well-characterized by a simple “niche model,” which was developed for modern food webs and takes into account this scale dependence. However, a few aspects of topology differ between the ancient and recent webs: longer path lengths between species and more species in feeding loops in the earlier Chengjiang web, and higher variability in the number of links per species for both Cambrian webs. Our results are relatively insensitive to the exclusion of low-certainty or random links. The many similarities between Cambrian and recent food webs point toward surprisingly strong and enduring constraints on the organization of complex feeding interactions among metazoan species. The few differences could reflect a transition to more strongly integrated and constrained trophic organization within ecosystems following the rapid diversification of species, body plans, and trophic roles during the Cambrian radiation. More research is needed to explore the generality of food-web structure through deep time and across habitats, especially to investigate potential mechanisms that could give rise to similar structure, as well as any differences.
机译:关于食物网的经验丰富的理论基础已经发展起来,食物网是栖息地中物种之间觅食关系的网络。但是,古代生态系统缺少详细的食物网数据和分析,这主要是由于分类单元的分辨率较低,以及有关饲料相互作用的信息不确定且不完整。对于大多数化石组合来说,这些障碍似乎是无法克服的。但是,在营养级别上具有极佳软体保留能力的一些组合是食物网数据编辑和拓扑分析的候选对象。在这里,我们介绍了寒武纪时期的澄江和伯吉斯页岩组合的真实,详细的食物网。对度数分布和其他结构网络特性的分析,包括对与寒武纪饮食指定相关的不确定性影响的敏感性分析,表明这些早期古生代群落与现代食物网有着极为相似的拓扑。观察到的规律性反映了结构对网络中分类单元和链接数量的系统依赖性。寒武纪食物网结构的大多数方面都具有一个简单的“利基模型”,该模型是为现代食物网开发的,并考虑了这种规模依赖性。但是,古代和最近的网之间在拓扑结构上有一些不同:在较早的澄江网中,物种之间的路径长度更长,而在进食圈中的物种更多,而在两个寒武纪网中,每个物种的链接数量都存在较大的变化。我们的结果对于排除低确定性或随机链接相对不敏感。寒武纪和最近的食物网之间的许多相似之处表明,后生动物物种之间复杂的进食相互作用的组织出乎意料地强大而持久。少数差异可能反映了在寒武纪辐射过程中物种,身体计划和营养作用的迅速多样化之后,生态系统内向更强整合和受约束的营养组织的过渡。需要更多的研究来探索深层和跨生境的食物网结构的一般性,尤其是研究可能导致相似结构以及任何差异的潜在机制。

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