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Counting Viruses and Bacteria in Photosynthetic Microbial Mats

机译:光合微生物垫中的病毒和细菌计数

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Viral abundances in benthic environments are the highest found in aquatic systems. Photosynthetic microbial mats represent benthic environments with high microbial activity and possibly high viral densities, yet viral abundances have not been examined in such systems. Existing extraction procedures typically used in benthic viral ecology were applied to the complex matrix of microbial mats but were found to inefficiently extract viruses. Here, we present a method for extraction and quantification of viruses from photosynthetic microbial mats using epifluorescence microscopy (EFM) and flow cytometry (FCM). A combination of EDTA addition, probe sonication, and enzyme treatment applied to a glutaraldehyde-fixed sample resulted in a substantially higher viral (5- to 33-fold) extraction efficiency and reduced background noise compared to previously published methods. Using this method, it was found that in general, intertidal photosynthetic microbial mats harbor very high viral abundances (2.8 × 10~(10) ± 0.3 × 10~(10) g~(?1)) compared with benthic habitats (10~(7) to 10~(9) g~(?1)). This procedure also showed 4.5- and 4-fold-increased efficacies of extraction of viruses and bacteria, respectively, from intertidal sediments, allowing a single method to be used for the microbial mat and underlying sediment.
机译:底栖环境中的病毒丰度是水生系统中最高的。光合微生物垫代表具有高微生物活性和可能高病毒密度的底栖环境,但尚未在此类系统中检查病毒丰度。通常在底栖病毒生态学中使用的现有提取程序已应用于微生物垫的复杂基质,但发现提取病毒的效率低下。在这里,我们介绍了一种使用表观荧光显微镜(EFM)和流式细胞仪(FCM)从光合微生物垫中提取和定量病毒的方法。与先前公开的方法相比,将EDTA添加,探针超声处理和对戊二醛固定样品进行酶处理相结合,可显着提高病毒提取效率(5至33倍)并降低背景噪音。使用这种方法发现,与底栖生境(10〜)相比,潮间光合微生物垫通常具有很高的病毒丰度(2.8×10〜(10)±0.3×10〜(10)g〜(?1))。 (7)至10〜(9)g〜(?1))。该程序还表明,从潮间带沉积物中提取病毒和细菌的效率分别提高了4.5倍和4倍,从而使微生物垫和下层沉积物可以采用单一方法。

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