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单菌株和混合培养实验对热浪对淡水鞭毛虫影响的见解。

Insights from single-strain and mixed culture experiments on the effects of heatwaves on freshwater flagellates.

作者信息

Boden Lisa, Klagus Chantal, Boenigk Jens

机构信息

Department Biodiversity, University of Duisburg-Essen, Essen, North Rhine Westphalia, Germany.

Center for Water and Environmental Research, University of Duisburg-Essen, Essen, North Rhine Westphalia, Germany.

出版信息

PeerJ. 2024 Sep 12;12:e17912. doi: 10.7717/peerj.17912. eCollection 2024.

Abstract

The increasing frequency and intensity of heatwaves driven by climate change significantly impact microbial communities in freshwater habitats, particularly eukaryotic microorganisms. Heterotrophic nanoflagellates are important bacterivorous grazers and play a crucial role in aquatic food webs, influencing the morphological and taxonomic structure of bacterial communities. This study investigates the responses of three flagellate taxa to heatwave conditions through single-strain and mixed culture experiments, highlighting the impact of both biotic and abiotic factors on functional redundancy between morphologically similar protist species under thermal stress. Our results indicate that temperature can significantly impact growth and community composition. However, density-dependent factors also had a significant impact. In sum, stabilizing effects due to functional redundancy may be pronounced as long as density-dependent factors play a minor role and can be overshadowed when flagellate abundances increase.

摘要

气候变化导致的热浪频率和强度不断增加,对淡水生境中的微生物群落,尤其是真核微生物产生了重大影响。异养型纳米鞭毛虫是重要的食细菌食草动物,在水生食物网中起着关键作用,影响着细菌群落的形态和分类结构。本研究通过单菌株和混合培养实验,研究了三种鞭毛虫类群对热浪条件的响应,强调了生物和非生物因素对热应激下形态相似的原生生物物种之间功能冗余的影响。我们的结果表明,温度会显著影响生长和群落组成。然而,密度依赖因素也有显著影响。总之,只要密度依赖因素起次要作用,功能冗余带来的稳定效应可能就会很明显,而当鞭毛虫丰度增加时,这种效应可能会被掩盖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49c6/11402338/dfc7f4323e61/peerj-12-17912-g001.jpg

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