Stability of parallel evolution in shell traits between the littoral and sublittoral ecotypes of the Antarctic limpet Nacella concinna along a 17-year time series

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Clarisa Marek Ortiz, Juan J Martínez, Ricardo Sahade, M Carla de Aranzamendi
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Abstract

Ecotypes constitute valuable markers for understanding the phenotypic responses influenced by evolutionary forces and environmental variations. Assessing the role of these processes in establishing and maintaining ecotype divergence is essential for anticipating evolutionary responses to future climate shifts. We studied the evolutionary dynamics of phenotypic population structure between Nacella concinna ecotypes through a morphometric and temporal analysis (2004–2021) in Antarctica. This approach enables the assessment of contemporary evolutionary dynamics in the presence of biotic and abiotic factors, facilitating the inference of interactions between the acting forces. Using generalized Procrustes analysis, ecotypes were successfully discriminated by their lateral shell traits consistently persisting over the analysed period. Multivariate linear and univariate mixed models revealed a significant temporal effect on shell phenotypic variation, surpassing the effect of inter-ecotype differences. However, according to phenotypic trajectory analysis, this temporal effect did not alter the direction of the phenotypic trajectory of ecotype shell shape, which evolved in parallel during the time series. Despite the environmental variation, the evidence of parallel evolution might indicate the incidence of natural selection in ecotype divergence rather than relying solely on phenotypic plasticity. This work enhances our understanding of ecotype temporal changes and microevolution, underscoring the importance of long-term phenotypic monitoring.
沿岸生态型和亚沿岸生态型南极瓣鳃藻 Nacella concinna 的贝壳特征在 17 年时间序列中平行演化的稳定性
生态型是了解受进化力量和环境变化影响的表型反应的宝贵标记。评估这些过程在建立和维持生态型差异中的作用,对于预测未来气候变化的进化响应至关重要。我们在南极洲通过形态计量和时间分析(2004-2021 年)研究了 Nacella concinna 生态型之间表型种群结构的进化动态。这种方法能够评估生物和非生物因素作用下的当代进化动态,有助于推断作用力之间的相互作用。利用广义普罗克里斯特分析法,成功地通过在分析期间持续存在的侧壳特征对生态型进行了区分。多变量线性模型和单变量混合模型显示,贝壳表型变化具有显著的时间效应,超过了生态型之间差异的效应。然而,根据表型轨迹分析,这种时间效应并没有改变生态型贝壳形状的表型轨迹方向,在时间序列中贝壳形状是平行进化的。尽管存在环境变化,但平行进化的证据可能表明生态型分化中存在自然选择,而非仅仅依赖表型可塑性。这项工作加深了我们对生态型时间变化和微进化的理解,强调了长期表型监测的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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