Affiliation:
1. Inst. for Condensed Matter Physics, Technical Univ. of Darmstadt Darmstadt Germany
2. Ecological Networks Lab, Technical Univ. of Darmstadt Darmstadt Germany
Abstract
Understanding ecosystem recovery after perturbation is crucial for ecosystem conservation. Mutualisms contribute key functions for plants such as pollination and seed dispersal. We modelled the assembly of mutualistic networks based on trait matching between plants and their animal partners that have different degrees of specialization on plant traits. Additionally, we addressed the role of non‐obligate animal mutualists, including facultative mutualists or non‐resident species that have their main resources outside the target site. Our computer simulations show that non‐obligate animals facilitate network assembly during the early stages, furthering colonization by an increase in niche space and reduced competition. While non‐obligate and generalist animals provide most of the fitness benefits to plants in the early stages of the assembly, obligate and specialist animals dominate at the end of the assembly. Our results thus demonstrate the combined occurrence of shifts from diet, trait, and habitat generalists to more specialised animals.
Subject
Ecology, Evolution, Behavior and Systematics
Cited by
2 articles.
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