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尽管驱动因素不同,但岩池微藻群落中的分类多样性和功能多样性是共同变化的。

Taxonomic and functional diversity covary in rock pool microalgal communities despite their different drivers.

作者信息

Aarnio Sonja, Soininen Janne

机构信息

Department of Geosciences and Geography University of Helsinki Helsinki Finland.

出版信息

Ecol Evol. 2021 Jul 29;11(17):11852-11873. doi: 10.1002/ece3.7953. eCollection 2021 Sep.

Abstract

Local biodiversity has traditionally been estimated with taxonomic diversity metrics such as species richness. Recently, the concept of biodiversity has been extended beyond species identity by ecological traits determining the functional role of a species in a community. This interspecific functional diversity typically responds more strongly to local environmental variation compared with taxonomic diversity, while taxonomic diversity may mirror more strongly dispersal processes compared with functional metrics. Several trait-based indices have been developed to measure functional diversity for various organisms and habitat types, but studies of their applicability on aquatic microbial communities have been underrepresented. We examined the drivers and covariance of taxonomic and functional diversity among diatom rock pool communities on the Baltic Sea coast. We quantified three taxonomic (species richness, Shannon's diversity, and Pielou's evenness) and three functional (functional richness, evenness, and divergence) diversity indices and determined abiotic factors best explaining variation in these indices by generalized linear mixed models. The six diversity indices were highly collinear except functional evenness, which merely correlated significantly with taxonomic evenness. All diversity indices were always explained by water conductivity and temperature-sampling month interaction. Taxonomic diversity was further consistently explained by pool distance to the sea, and functional richness and divergence by pool location. The explained variance in regression models did not markedly differ between taxonomic and functional metrics. Our findings do not clearly support the superiority of neither set of diversity indices in explaining coastal microbial diversity, but rather highlight the general overlap among the indices. However, as individual metrics may be driven by different factors, the greatest advantage in assessing biodiversity is nevertheless probably achieved with a simultaneous application of the taxonomic and functional diversity metrics.

摘要

传统上,当地生物多样性是用物种丰富度等分类多样性指标来估计的。最近,生物多样性的概念已从物种身份扩展到由决定物种在群落中功能作用的生态特征。与分类多样性相比,这种种间功能多样性通常对当地环境变化的响应更强,而与功能指标相比,分类多样性可能更强烈地反映扩散过程。已经开发了几种基于特征的指数来测量各种生物和栖息地类型的功能多样性,但关于它们在水生微生物群落中的适用性研究却很少。我们研究了波罗的海沿岸硅藻岩池群落中分类多样性和功能多样性的驱动因素及协方差。我们量化了三个分类多样性指数(物种丰富度、香农多样性和皮洛均匀度)和三个功能多样性指数(功能丰富度、均匀度和离散度),并通过广义线性混合模型确定了最能解释这些指数变化的非生物因素。除功能均匀度外,这六个多样性指数高度共线,功能均匀度仅与分类均匀度显著相关。所有多样性指数始终由水电导率和温度 - 采样月份的相互作用来解释。分类多样性还始终由池塘到海的距离来解释,功能丰富度和离散度由池塘位置来解释。分类和功能指标在回归模型中解释的方差没有明显差异。我们的研究结果并未明确支持哪一组多样性指数在解释沿海微生物多样性方面具有优越性,而是突出了这些指数之间的普遍重叠。然而,由于各个指标可能受不同因素驱动,因此在评估生物多样性时,同时应用分类和功能多样性指标可能会获得最大优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b023/8427593/948a9c7f1ce9/ECE3-11-11852-g007.jpg

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