首页> 外文期刊>Journal of Biogeography >Spatial evolutionary and ecological vicariance analysis (SEEVA), a novel approach to biogeography and speciation research, with an example from Brazilian Gentianaceae
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Spatial evolutionary and ecological vicariance analysis (SEEVA), a novel approach to biogeography and speciation research, with an example from Brazilian Gentianaceae

机译:空间进化和生态变异分析(SEEVA),一种生物地理学和物种形成研究的新方法,以巴西龙胆科为例

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Aim Spatial evolutionary and ecological vicariance analysis (SEEVA) is a simple analytical method that evaluates environmental or ecological divergence associated with evolutionary splits. It integrates evolutionary hypotheses, phylogenetic data, and spatial, temporal, environmental and geographical information to elucidate patterns. Using a phylogeny of Prepusa Mart. and Senaea Taub. (Angiospermae: Gentianaceae), SEEVA is used to describe the radiation and ecological patterns of this basal gentian group across south-eastern Brazil.Location Latin America, global.Methods Environmental data for 151 geolocated botanical collections, associated with specimens from seven species, were compiled with ARCGIS, and were matched with geolocated base layers of eight climatological variables, as well as one each of geological, soil type, elevational and vegetation variables. Sister groups were defined on the basis of the six nested nodes that defined the phylogenetic tree of these two genera. A (0, 1)-scaled divergence index (D) was defined and tested for each of 12 environmental and for each of the six phylogenetic nodes, by means of contingency analyses. We contrast divergence indices of nested clades, allopatric and sympatric sister clades.Results The level of ecological divergence between sister clades/species, defined in terms of D measures, was substantial for five of six nodes, with 21 of 72 environmental comparisons having D > 0.75. Soil types and geological age of bedrock were strongly divergent only for basal nodes in the phylogeny, by contrast with temperature and precipitation, which exhibited strong divergence at all nodes. There has been strong divergence and progressive occupation of wetter and colder habitats throughout the history of Prepusa. Nodes separating allopatric sister clades exhibited larger niche divergence than did those separating sympatric sister clades.Main conclusions SEEVA provides a multi-source, direct analysis method for correlating field collections, phylogenetic hypotheses, species distributions and georeferenced environmental data. Using SEEVA, it was possible to quantify and test the divergence between sister lineages, illustrating both niche conservatism and ecological specialization. SEEVA permits elucidation of historical and ecological vicariance for evolutionary lineages, and is amenable to wide application, taxonomically, geographically and ecologically.
机译:目标空间进化和生态变异性分析(SEEVA)是一种简单的分析方法,用于评估与进化分裂相关的环境或生态差异。它整合了进化假设,系统发育数据以及空间,时间,环境和地理信息,以阐明模式。使用Prepusa Mart的系统发育系统。和Senaea Taub。 SEEVA用于描述巴西东南部这个基础龙胆基类群的辐射和生态模式位置拉丁美洲,全球范围使用ARCGIS进行编译,并与八个气候变量以及地质,土壤类型,海拔和植被变量中的每个变量的地理定位基层相匹配。姐妹组是根据六个嵌套节点定义的,这些节点定义了这两个属的系统发育树。定义了(0,1)尺度的散度指数(D),并通过权变分析对12个环境中的每一个以及六个系统发育节点中的每一个进行了测试。我们对比了巢式进化枝,同种异体和同胞姐妹进化枝的散布指数。结果根据D量度,姐妹进化枝/物种之间的生态散布水平对于六个节点中的五个是相当大的,在72个环境比较中有21个具有D> 0.75。与系统的温度和降水相比,基层的土壤类型和地质年龄仅在系统发育的基底节上有很大的差异,而在所有结节上都表现出很大的差异。在Prepusa的整个历史中,潮湿和寒冷的栖息地一直存在着很大的分歧和逐步占领。主要结论结论SEEVA提供了一种多源直接分析方法,用于关联田间采集,系统发育假说,物种分布和地理参考环境数据。使用SEEVA,可以量化和测试姐妹血统之间的差异,从而说明了利基保守性和生态专业化。 SEEVA可以阐明进化谱系的历史和生态变迁,并且可以在分类学,地理和生态学上得到广泛应用。

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