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种群瓶颈和有性重组塑造硅藻微观进化。

Population bottlenecks and sexual recombination shape diatom microevolution.

作者信息

Hay Mele Bruno, Ruggiero Maria Valeria, D'Alelio Domenico

机构信息

Department of Biology University of Naples "Federico II" Naples Italy.

Stazione Zoologica Anton Dohrn Naples Italy.

出版信息

Ecol Evol. 2024 Jul 31;14(8):e11464. doi: 10.1002/ece3.11464. eCollection 2024 Aug.

Abstract

Diatoms are single-celled organisms that contribute approximately 20% of the global primary production and play a crucial role in biogeochemical cycles and trophic chains. Despite their ecological importance, our knowledge of microevolution is limited. We developed a model using the SLiM evolutionary framework to address this knowledge gap. As a reference, we used the diatom , which has been extensively studied in the Gulf of Naples. Our model recapitulates what we observe in natural populations, with microevolutionary processes that occur annually during a three-stage bloom phase. Interestingly, we found that non-bloom phases allow the population to maintain sex-generated diversity produced during blooms. This finding suggests that non-bloom phases are critical to counteract bloom-related pressures and mitigate genetic divergence at the species level. Moreover, our model showed that despite the consistent genetic differentiation during bloom phases, the population tends to return to pre-bloom states. While our model is limited to neutral dynamics, our study provides valuable insights into diatoms' microevolution, paving the way to explore the ecological implications of the life history dynamics of these organisms.

摘要

硅藻是单细胞生物,贡献了全球约20%的初级生产力,在生物地球化学循环和营养链中发挥着关键作用。尽管它们具有生态重要性,但我们对其微观进化的了解有限。我们使用SLiM进化框架开发了一个模型来填补这一知识空白。作为参考,我们使用了在那不勒斯湾得到广泛研究的硅藻。我们的模型重现了我们在自然种群中观察到的情况,在三个阶段的水华期每年都会发生微观进化过程。有趣的是,我们发现非水华期能使种群维持水华期产生的有性生殖多样性。这一发现表明,非水华期对于抵消与水华相关的压力以及减轻物种水平的遗传分化至关重要。此外,我们的模型表明,尽管在水华期存在持续的遗传分化,但种群倾向于恢复到水华前的状态。虽然我们的模型仅限于中性动态,但我们的研究为硅藻的微观进化提供了有价值的见解,为探索这些生物生活史动态的生态影响铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3039/11289787/f456dfd011d0/ECE3-14-e11464-g004.jpg

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