Evolution and plasticity of physiological traits in the collembolan Orchesella villosa at fine spatial scales within the city

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-03-28 DOI:10.1093/biolinnean/blae038
Eric G Prileson, Ryan A Martin
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Abstract

Divergent natural selection caused by spatial environmental variation can lead to local adaptation and evolutionary divergence between populations, even those within close proximity to one another. This, however, is only one possibility among other outcomes, such as the evolution of adaptive phenotypic plasticity or local maladaptation. Cities, as fragmented landscapes with high environmental variability across microgeographic scales, present an excellent venue to explore these possible outcomes. Here, we use common garden experiments to explore the potential for microgeographic divergence of physiological traits among populations of a collembolan, Orchesella villosa, living within the footprint of a single city. We assessed if intra-urban variation in the intensity of the heat island effect and soil salinity has led to evolutionary divergence in heat tolerance and salinity tolerance, respectively. While we found little variation in salinity tolerance among populations, there was evidence for both plasticity and evolutionary divergence among populations in response to variation in the urban heat island. Although the adaptive nature of these specific responses is not known, we suggest that cities, and human modified habitats in general, promote evolutionary divergence at small spatial scales by creating barriers to dispersal and imposing divergent selective environments within previously contiguous habitats.
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城市内细微空间尺度下蚬类 Orchesella villosa 生理特征的进化和可塑性
由空间环境变异引起的差异化自然选择可能导致种群之间的局部适应和进化分化,甚至是种群之间的近距离适应和进化分化。然而,这只是适应性表型可塑性进化或局部适应不良等其他结果中的一种可能性。城市作为碎片化景观,在微观地理尺度上具有很高的环境变异性,是探索这些可能结果的绝佳场所。在这里,我们利用普通花园实验来探索生活在单个城市足迹范围内的鹅掌楸(Orchesella villosa)种群之间生理特征微地理差异的可能性。我们评估了城市内热岛效应强度和土壤盐度的变化是否分别导致了耐热性和耐盐性的进化分化。虽然我们发现不同种群之间的耐盐度差异很小,但有证据表明不同种群之间存在可塑性和进化分化,以应对城市热岛的变化。尽管这些具体反应的适应性尚不清楚,但我们认为,城市以及人类改造的一般栖息地,通过在以前毗连的栖息地内制造扩散障碍和强加不同的选择性环境,促进了小空间尺度上的进化分化。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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