透过eDNA的镜子:峡湾底栖有孔虫群落对不同环境条件的反应

IF 2.1 4区 生物学 Q3 MICROBIOLOGY
Inda Brinkmann, Magali Schweizer, David Singer, Sophie Quinchard, Christine Barras, Joan M. Bernhard, Helena L. Filipsson
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引用次数: 2

摘要

随着全球变化,沿海海洋环境的健康状况正在严重恶化。基于微真核生物群落的替代方法可以记录生物多样性和生态系统的响应。然而,传统的研究依赖于有限的分类学范围和大小分数的微观观察,缺少假定的生态信息群落成分。在这里,我们测试了分子工具,在空间和时间尺度上调查了瑞典峡湾系统的有孔虫生物多样性:评估了α和β多样性对自然和人为环境趋势的响应,并将有孔虫环境DNA (eDNA)的可变性与基于形态学的数据进行了比较。单细胞条形码辅助鉴定获得的edna分类单位。我们的研究揭示了广泛的多样性,包括在峡湾已知的典型形态物种,以及迄今未被识别的分类群。DNA提取方法对群落组成输出有显著影响。10g沉积物的DNA提取比0.5 g样本更可靠地代表了当前的多样性,因此,在该地区的环境评估中,DNA提取是首选。10 g提取物的α和β多样性与底水盐度的相关性与形态组合多样性的变化相似。亚年环境变异性只能部分解决,表明利用已建立的元条形码技术,有孔虫群落在短时间尺度上的敏感性受到抑制。系统地解决目前基于形态学和元条形码研究的局限性可能会极大地改善未来的生物多样性和环境评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Through the eDNA looking glass: Responses of fjord benthic foraminiferal communities to contrasting environmental conditions

Through the eDNA looking glass: Responses of fjord benthic foraminiferal communities to contrasting environmental conditions

The health of coastal marine environments is severely declining with global changes. Proxies, such as those based on microeukaryote communities, can record biodiversity and ecosystem responses. However, conventional studies rely on microscopic observations of limited taxonomic range and size fraction, missing putatively ecologically informative community components. Here, we tested molecular tools to survey foraminiferal biodiversity in a fjord system (Sweden) on spatial and temporal scales: Alpha and beta diversity responses to natural and anthropogenic environmental trends were assessed and variability of foraminiferal environmental DNA (eDNA) compared to morphology-based data. The identification of eDNA-obtained taxonomic units was aided by single-cell barcoding. Our study revealed wide diversity, including typical morphospecies recognized in the fjords, and so-far unrecognized taxa. DNA extraction method impacted community composition outputs significantly. DNA extractions of 10 g sediment more reliably represented present diversity than of 0.5-g samples and, thus, are preferred for environmental assessments in this region. Alpha- and beta diversity of 10-g extracts correlated with bottom-water salinity similar to morpho-assemblage diversity changes. Sub-annual environmental variability resolved only partially, indicating damped sensitivity of foraminiferal communities on short timescales using established metabarcoding techniques. Systematically addressing the current limitations of morphology-based and metabarcoding studies may strongly improve future biodiversity and environmental assessments.

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来源期刊
CiteScore
4.30
自引率
4.50%
发文量
85
审稿时长
6-12 weeks
期刊介绍: The Journal of Eukaryotic Microbiology publishes original research on protists, including lower algae and fungi. Articles are published covering all aspects of these organisms, including their behavior, biochemistry, cell biology, chemotherapy, development, ecology, evolution, genetics, molecular biology, morphogenetics, parasitology, systematics, and ultrastructure.
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