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一组外生菌根树选择配偶的系统发育特征保守性。

Phylogenetic trait conservation in the partner choice of a group of ectomycorrhizal trees.

机构信息

Department of Forest Biology, State University of New York College of Environmental Forestry, 1 Forestry Drive, Syracuse, NY, 13210, USA.

出版信息

Mol Ecol. 2014 Oct;23(19):4886-98. doi: 10.1111/mec.12903. Epub 2014 Sep 24.

Abstract

Ecological interactions are frequently conserved across evolutionary time. In the case of mutualisms, these conserved interactions may play a large role in structuring mutualist communities. We hypothesized that phylogenetic trait conservation could play a key role in determining patterns of association in the ectomycorrhizal symbiosis, a globally important trophic mutualism. We used the association between members of the pantropical plant tribe Pisonieae and its fungal mutualist partners as a model system to test the prediction that Pisonieae-associating ectomycorrhizal fungi will be more closely related than expected by chance, reflecting a conserved trait. We tested this prediction using previously published and newly generated sequences in a Bayesian framework incorporating phylogenetic uncertainty. We report that phylogenetic trait conservation does exist in this association. We generated a five-marker phylogeny of members of the Pisonieae and used this phylogeny in a Bayesian relaxed molecular clock analysis. We established that the most recent common ancestors of Pisonieae species and Pisonieae-associating fungi sharing phylogenetic conservation of their patterns of ectomycorrhizal association occurred no more recently than 14.2 Ma. We therefore suggest that phylogenetic trait conservation in the Pisonieae ectomycorrhizal mutualism association represents an inherited syndrome which has existed for at least 14 Myr.

摘要

生态相互作用经常在进化时间上保持一致。在互利共生的情况下,这些保守的相互作用可能在构建互利共生群落方面发挥重要作用。我们假设系统发育特征的保守性可能在决定外生菌根共生关系(一种全球重要的营养互利共生关系)的关联模式方面起着关键作用。我们使用泛热带植物族 Pisonieae 的成员与其真菌共生伙伴之间的关联作为模型系统,以检验以下预测:与 Pisonieae 相关的外生菌根真菌将比偶然预期的更为密切相关,反映出保守的特征。我们使用贝叶斯框架中的先前发表的和新生成的序列来测试该预测,该框架包含系统发育不确定性。我们报告说,在这种关联中确实存在系统发育特征的保守性。我们生成了 Pisonieae 成员的五标记系统发育,并在贝叶斯松弛分子钟分析中使用了该系统发育。我们确定了 Pisonieae 物种和与其具有外生菌根共生模式的真菌的最近共同祖先,它们的外生菌根共生模式的系统发育保守性发生的时间不超过 1420 万年。因此,我们认为 Pisonieae 外生菌根共生关系中的系统发育特征保守性代表了一种至少存在 1400 万年的遗传综合征。

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