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全球物种生态位保守性与进化

Global ecological niche conservatism and evolution in species.

作者信息

Ashraf Uzma, Peterson A Townsend, Chaudhry Muhammad Nawaz, Cobos Marlon E

机构信息

Department of Land, Air and Water Resources, University of California, Davis, USA.

Wild Energy Initiative, Institute of the Environment, University of California, Davis, USA.

出版信息

Saudi J Biol Sci. 2023 Jan;30(1):103500. doi: 10.1016/j.sjbs.2022.103500. Epub 2022 Nov 11.

Abstract

BACKGROUND AND AIMS

Climate is an important parameter in delimiting coarse-grained aspects of fundamental ecological niches of species; evolution of these niches has been considered a key component in biological diversification. We assessed phylogenetic niche conservatism and evolution in 24 species of the family Oleaceae in relation to temperature and precipitation variables. We studied niches of 17 species and 7 species from other genera of Oleaceae globally.

METHODS

We used nuclear ribosomal and plastid DNA to reconstruct an evolutionary tree for the family. We used an approach designed specifically to incorporate uncertainty and incomplete knowledge of species' ecological niche limits. We performed parsimony- and likelihood-based reconstructions of ancestral states on two independent phylogenetic hypotheses for the family. After detailed analysis, species' niches were classified into warm and cold niches, wet and dry niches, and broad and narrow niches.

KEY RESULTS

Given that full estimates of fundamental niches are difficult, we explore the alternative approach of explicit incorporation of knowledge of gaps in the information available, which allows avoidance of overestimation of amounts of evolutionary change. The result is a first synthetic view of evolutionary dynamics of ecological niches and distributional potential in a widespread plant family. Temperate regions of the Earth were occupied only by lineages that could derive with cold and dry niches; Southeast Asia held species with warm and wet niches; and parts of Africa held only species with dry niches.

CONCLUSIONS

High temperature in Lutetian (Oligocene) and low temperature in Rupelian (Eocene) with major desertification events play important role for niche retraction and expansion in the history for Oleaceae clades. Associations between environmental niche characteristics and phylogeny reconstruction play an important role in understanding ecological niche conservatism, the overall picture was relatively slow or conservative niche evolution in this group.

摘要

背景与目的

气候是界定物种基本生态位粗粒度方面的一个重要参数;这些生态位的进化被认为是生物多样性的一个关键组成部分。我们评估了木犀科24个物种在温度和降水变量方面的系统发育生态位保守性和进化情况。我们在全球范围内研究了木犀科17个物种以及其他属的7个物种的生态位。

方法

我们使用核核糖体和质体DNA重建了该科的进化树。我们采用了一种专门设计的方法,以纳入物种生态位界限的不确定性和不完整知识。我们在该科的两个独立系统发育假说上进行了基于简约法和似然法的祖先状态重建。经过详细分析,物种的生态位被分为温暖和寒冷生态位、湿润和干燥生态位以及宽泛和狭窄生态位。

主要结果

鉴于对基本生态位进行全面估计很困难,我们探索了一种替代方法,即明确纳入可用信息中的空白知识,这可以避免高估进化变化的量。结果是对一个广泛分布的植物科的生态位进化动态和分布潜力的首次综合观点。地球的温带地区仅被能够衍生出寒冷和干燥生态位的谱系占据;东南亚拥有温暖和湿润生态位的物种;非洲部分地区仅拥有干燥生态位的物种。

结论

渐新世卢台特期的高温和始新世鲁佩尔期的低温以及主要的沙漠化事件在木犀科进化枝的历史中对生态位的收缩和扩张起到了重要作用。环境生态位特征与系统发育重建之间的关联在理解生态位保守性方面发挥了重要作用,总体而言,该类群的生态位进化相对缓慢或保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b8/9706617/cff1910e7309/gr1.jpg

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