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Phylogenetic relatedness as a tool in restoration ecology: a meta-analysis

机译:系统发育相关性作为恢复生态学的一种工具:荟萃分析

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摘要

Biotic interactions assembling plant communities can be positive (facilitation) or negative (competition) and operate simultaneously. Facilitative interactions and posterior competition are among the mechanisms triggering succession, thus representing a good scenario for ecological restoration. As distantly related species tend to have different phenotypes, and therefore different ecological requirements, they can coexist, maximizing facilitation and minimizing competition. We suggest including phylogenetic relatedness together with phenotypic information as a predictor for the net effects of the balance between facilitation and competition in nurse-based restoration experiments. We quantify, by means of a Bayesian meta-analysis of nurse-based restoration experiments performed worldwide, the importance of phylogenetic relatedness and life-form disparity in the survival, growth and density of facilitated plants. We find that the more similar the life forms of neighbouring plants are the greater the positive effect of phylogenetic distance is on survival and density. This result suggests that other characteristics beyond life form are also contained in the phylogeny, and the larger the phylogenetic distance, the less is the niche overlap, and therefore the less is the competition. As a general rule, we can maximize the success of the nurse-based practices by increasing life-form disparity and phylogenetic distances between the neighbour and the facilitated plant.
机译:组装植物群落的生物相互作用可以是积极的(促进)或消极的(竞争),并且可以同时进行。促进相互作用和后竞争是引发演替的机制之一,因此代表了生态恢复的良好场景。由于远缘物种倾向于具有不同的表型,因此生态要求也不同,因此它们可以共存,从而最大程度地促进了便利,并使竞争最小化。我们建议将系统发育相关性与表型信息一起作为基于护士的恢复实验中促进与竞争之间平衡的净效应的预测指标。我们通过在全球范围内进行的基于护士的恢复实验的贝叶斯荟萃分析来量化系统发育相关性和生命形式差异对便利植物的存活,生长和密度的重要性。我们发现,邻近植物的生命形式越相似,系统发育距离对存活率和密度的积极作用就越大。该结果表明,系统发育中还包含生命形式以外的其他特征,系统发育距离越大,生态位重叠越少,因此竞争也越少。一般而言,我们可以通过增加邻居与便利植物之间的生命形式差异和系统发育距离来最大程度地提高基于护士的做法的成功率。

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