首页> 外文期刊>Journal of phycology >Recovery and identification of Pseudo-nitzschia (Bacillariophyceae) frustules from natural samples acquired using the environmental sample processor
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Recovery and identification of Pseudo-nitzschia (Bacillariophyceae) frustules from natural samples acquired using the environmental sample processor

机译:使用环境样品处理器从天然样品中回收假奈瑟菌(Bacillariophyceae)壳屑并进行鉴定

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摘要

Many species within the diatom genus Pseudo-nitzschia are difficult to distinguish without applying molecular analytical or microscopy-based methods. DNA, antibody and lectin probes have previously been used to provide rapid and specific detection of species and strains in complex field assemblages. Recently, however, well-documented cryptic genetic diversity within the group has confounded results of DNA probe tests in particular. Moreover, the number of species descriptions within the genus continues to increase, as do insights into toxin production by both new and previously described species. Therefore, a combination of classical morphological techniques and modern molecular methodologies is needed to resolve ecophysiological traits of Pseudo-nitzschia species. Here, we present an approach to recover and identify frustules from sample collection filters used for toxin analysis onboard the Environmental Sample Processor (ESP), an insitu sample collection and analytical platform. This approach provides a new and powerful tool for correlating species presence with toxin detected remotely and insitu by the ESP, and has the potential to be applied broadly to other sampling configurations. This new technique will contribute to a better understanding of naturally occurring Pseudo-nitzschia community structure with respect to observed domoic acid outbreaks.
机译:如果不应用分子分析或基于显微镜的方法,则难以区分硅藻假奈瑟菌属中的许多物种。 DNA,抗体和凝集素探针以前已用于提供复杂领域组合中物种和菌株的快速和特异性检测。但是,最近,该小组中有据可查的隐秘遗传多样性尤其使DNA探针测试的结果令人困惑。此外,该属中物种描述的数量继续增加,对新的和先前描述的物种产生毒素的认识也不断增加。因此,需要结合经典形态学技术和现代分子方法论来解决拟南芥属物种的生理生理特性。在这里,我们介绍一种从环境样本处理器(ESP)上进行毒素分析的样本收集过滤器中回收和鉴定残渣的方法,ESP是一种原位样本收集和分析平台。该方法提供了一种新的强大工具,可将物种的存在与ESP远程和原位检测到的毒素相关联,并且有可能广泛应用于其他采样配置。相对于观察到的海藻酸暴发,这项新技术将有助于更好地理解自然发生的假性奈瑟菌群落结构。

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