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池塘食物网中的复杂生活史:生活史结构和寄生虫对网络属性、营养位和概率生态位模型拟合的影响。

Complex life cycles in a pond food web: effects of life stage structure and parasites on network properties, trophic positions and the fit of a probabilistic niche model.

机构信息

Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, CO, 80309, USA,

出版信息

Oecologia. 2014 Mar;174(3):953-65. doi: 10.1007/s00442-013-2806-5. Epub 2013 Nov 21.

DOI:10.1007/s00442-013-2806-5
PMID:24258100
Abstract

Most food webs use taxonomic or trophic species as building blocks, thereby collapsing variability in feeding linkages that occurs during the growth and development of individuals. This issue is particularly relevant to integrating parasites into food webs because parasites often undergo extreme ontogenetic niche shifts. Here, we used three versions of a freshwater pond food web with varying levels of node resolution (from taxonomic species to life stages) to examine how complex life cycles and parasites alter web properties, the perceived trophic position of organisms, and the fit of a probabilistic niche model. Consistent with prior studies, parasites increased most measures of web complexity in the taxonomic species web; however, when nodes were disaggregated into life stages, the effects of parasites on several network properties (e.g., connectance and nestedness) were reversed, due in part to the lower trophic generality of parasite life stages relative to free-living life stages. Disaggregation also reduced the trophic level of organisms with either complex or direct life cycles and was particularly useful when including predation on parasites, which can inflate trophic positions when life stages are collapsed. Contrary to predictions, disaggregation decreased network intervality and did not enhance the fit of a probabilistic niche model to the food webs with parasites. Although the most useful level of biological organization in food webs will vary with the questions of interest, our results suggest that disaggregating species-level nodes may refine our perception of how parasites and other complex life cycle organisms influence ecological networks.

摘要

大多数食物网使用分类或营养物种作为构建块,从而忽略了个体生长和发育过程中发生的摄食联系的可变性。这个问题对于将寄生虫纳入食物网特别重要,因为寄生虫通常经历极端的个体发育生态位转移。在这里,我们使用了三种具有不同节点分辨率(从分类物种到生命阶段)的淡水池塘食物网来研究复杂的生命周期和寄生虫如何改变网络特性、生物的感知营养位置以及概率生态位模型的拟合度。与先前的研究一致,寄生虫在分类物种网络中增加了大多数网络复杂性的衡量指标;然而,当节点分解为生命阶段时,寄生虫对几个网络属性(例如,连接度和嵌套性)的影响发生了逆转,部分原因是寄生虫的生命阶段相对于自由生活的生命阶段的营养一般性较低。分解还降低了具有复杂或直接生命周期的生物的营养水平,当包括对寄生虫的捕食时,这尤其有用,因为当生命阶段被合并时,这会夸大营养位置。与预测相反,分解降低了网络间隔,并且不会增强具有寄生虫的食物网的概率生态位模型的拟合度。尽管食物网中最有用的生物组织水平将根据感兴趣的问题而有所不同,但我们的结果表明,分解物种水平的节点可能会细化我们对寄生虫和其他复杂生命周期生物如何影响生态网络的认识。

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J Anim Ecol. 2013 May;82(3):509-17. doi: 10.1111/1365-2656.12030. Epub 2013 Mar 12.
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Biodiversity loss decreases parasite diversity: theory and patterns.生物多样性丧失降低寄生虫多样性:理论与模式。
个体发育生态位转变是季节性迁徙的驱动因素。
Oecologia. 2020 Jun;193(2):285-297. doi: 10.1007/s00442-020-04682-0. Epub 2020 Jun 11.
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Ecosphere. 2018 Apr;9(4). doi: 10.1002/ecs2.2188. Epub 2018 Apr 16.
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Ontogenetic stage-specific reciprocal intraguild predation.个体发育阶段特异性的种内互作捕食
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