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首页> 外文期刊>Frontiers in Marine Science >Methodology for Single-Cell Genetic Analysis of Planktonic Foraminifera for Studies of Protist Diversity and Evolution
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Methodology for Single-Cell Genetic Analysis of Planktonic Foraminifera for Studies of Protist Diversity and Evolution

机译:浮游有孔虫单细胞遗传分析的方法学,用于原生生物多样性和进化的研究

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Single-cell genetic analysis is an essential method to investigate the biodiversity and evolutionary ecology of marine protists. In protist groups that do not reproduce under laboratory conditions, this approach provides the only means to directly associate molecular sequences with cell morphology. The resulting unambiguous taxonomic identification of the DNA sequences is a prerequisite for barcoding and analyses of environmental metagenomic data. Extensive single-cell genetic studies have been carried out on planktonic foraminifera over the past 20 years to elucidate their phylogeny, cryptic diversity, biogeography and the relationship between genetic and morphological variability. In the course of these investigations, it has become evident that genetic analysis at the individual specimen level is confronted by innumerable challenges ranging from the negligible amount of DNA present in the single cell to the substantial amount of DNA contamination introduced by endosymbionts or food particles. Consequently, a range of methods has been developed and applied throughout the years for the genetic analysis of planktonic foraminifera in order to enhance DNA amplification success rates. Yet, the description of these methods in the literature rarely occurred with equivalent levels of detail and the different approaches have never been compared in terms of their efficiency and reproducibility. Here, aiming at a standardization of methods, we provide a comprehensive review of all methods that have been employed for the single-cell genetic analysis of planktonic foraminifera. We compile data on success rates of DNA amplification and use these to evaluate the effects of key parameters associated with the methods of sample collection, storage and extraction of single-cell DNA. We show that the chosen methods influence the success rates of single-cell genetic studies, but the differences between them are not sufficient to hinder comparisons between studies carried out by different methods. The review thus not only provides a comprehensive reference with guidelines for future genetic studies on foraminifera, but it also establishes an important benchmark for investigations using existing single-cell datasets. The methods are widely applicable and the review may help to establish similar standard principles for their utilization in other protist groups.
机译:单细胞遗传分析是研究海洋生物的生物多样性和进化生态学的重要方法。在没有在实验室条件下繁殖的原生生物群体中,这种方法提供了直接将分子序列与细胞形态联系起来的唯一方法。 DNA序列的明确分类学鉴定是对环境宏基因组数据进行条形码和分析的前提。在过去的20年中,已经对浮游有孔虫进行了广泛的单细胞遗传研究,以阐明其系统发育,隐性多样性,生物地理以及遗传与形态变异之间的关系。在这些研究过程中,很明显,在单个样本水平上进行遗传分析面临着无数挑战,范围从单细胞中存在的DNA数量可忽略不计到内共生菌或食物颗粒引入的大量DNA污染。因此,多年来,已经开发了一系列方法用于浮游有孔虫的遗传分析,以提高DNA扩增的成功率。然而,文献中对这些方法的描述很少会出现相同程度的细节,并且从未就效率和可重复性方面对不同方法进行过比较。在这里,针对方法的标准化,我们提供了一种用于浮游有孔虫单细胞遗传分析的所有方法的全面综述。我们收集有关DNA扩增成功率的数据,并使用这些数据评估与样本采集,存储和提取单细胞DNA方法相关的关键参数的影响。我们表明选择的方法会影响单细胞遗传研究的成功率,但它们之间的差异不足以阻碍通过不同方法进行的研究之间的比较。因此,本综述不仅为有孔虫的未来遗传学研究提供了全面的参考,而且还为使用现有单细胞数据集进行研究奠定了重要的基准。这些方法广泛适用,审查可能有助于建立类似的标准原则,以供其他生物团体使用。

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