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首页> 外文期刊>Applied and Environmental Microbiology >Development of a Universal Microarray Based on the Ligation Detection Reaction and 16S rRNA Gene Polymorphism To Target Diversity of Cyanobacteria
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Development of a Universal Microarray Based on the Ligation Detection Reaction and 16S rRNA Gene Polymorphism To Target Diversity of Cyanobacteria

机译:基于连接检测反应和16S rRNA基因多态性针对蓝藻多样性的通用芯片的开发。

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The cyanobacteria are photosynthetic prokaryotes of significant ecological and biotechnological interest, since they strongly contribute to primary production and are a rich source of bioactive compounds. In eutrophic fresh and brackish waters, their mass occurrences (water blooms) are often toxic and constitute a high potential risk for human health. Therefore, rapid and reliable identification of cyanobacterial species in complex environmental samples is important. Here we describe the development and validation of a microarray for the identification of cyanobacteria in aquatic environments. Our approach is based on the use of a ligation detection reaction coupled to a universal array. Probes were designed for detecting 19 cyanobacterial groups including Anabaena/Aphanizomenon, Calothrix, Cylindrospermopsis, Cylindrospermum, Gloeothece, halotolerants, Leptolyngbya, Palau Lyngbya, Microcystis, Nodularia, Nostoc, Planktothrix, Antarctic Phormidium, Prochlorococcus, Spirulina, Synechococcus, Synechocystis, Trichodesmium, and Woronichinia. These groups were identified based on an alignment of over 300 cyanobacterial 16S rRNA sequences. For validation of the microarrays, 95 samples (24 axenic strains from culture collections, 27 isolated strains, and 44 cloned fragments recovered from environmental samples) were tested. The results demonstrated a high discriminative power and sensitivity to 1 fmol of the PCR-amplified 16S rRNA gene. Accurate identification of target strains was also achieved with unbalanced mixes of PCR amplicons from different cyanobacteria and an environmental sample. Our universal array method shows great potential for rapid and reliable identification of cyanobacteria. It can be easily adapted to future development and could thus be applied both in research and environmental monitoring.
机译:蓝细菌是具有重要生态和生物技术意义的光合原核生物,因为它们对初级生产有重要贡献,并且是生物活性化合物的丰富来源。在富营养的淡水和微咸水中,它们的大量出现(水华)通常是有毒的,对人体健康构成了很高的潜在风险。因此,快速可靠地鉴定复杂环境样品中的蓝细菌种类非常重要。在这里,我们描述了在水生环境中鉴定蓝细菌的微阵列的开发和验证。我们的方法是基于结合通用阵列的连接检测反应的使用。探针被设计用于检测19个蓝细菌组,包括鱼腥藻/ Aphanizomenon,Calotrix,Cylindrospermopsis,Cylindrospermum,Gloeothece,耐盐剂,钩端螺旋体,帕劳Lyngbya,微囊藻,结节菌,Nostoc,浮萍,合孢子虫,旋孢子虫,三孢藻,绿藻虫onic。这些组是根据300多个蓝细菌16S rRNA序列的比对确定的。为了验证微阵列,测试了95个样品(培养物收集物中的24种轴突菌株,27种分离菌株以及从环境样品中回收的44个克隆片段)。结果表明对PCR扩增的16S rRNA基因具有较高的判别力和敏感性。使用不同蓝藻和环境样品中PCR扩增子的不平衡混合物也可以准确鉴定目标菌株。我们的通用阵列方法显示出快速可靠地鉴定蓝细菌的巨大潜力。它可以很容易地适应未来的发展,因此可以应用于研究和环境监测。

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