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采用逆转录聚合酶链反应标记与基于膜的 DNA 阵列相结合的方法平行检测有害藻类。

Parallel detection of harmful algae using reverse transcription polymerase chain reaction labeling coupled with membrane-based DNA array.

机构信息

School of Marine Science and Technology, Harbin Institute of Technology, Weihai, 264209, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2014 Mar;21(6):4565-75. doi: 10.1007/s11356-013-2416-0. Epub 2013 Dec 13.

Abstract

Harmful algal blooms (HABs) are a global problem, which can cause economic loss to aquaculture industry's and pose a potential threat to human health. More attention must be made on the development of effective detection methods for the causative microalgae. The traditional microscopic examination has many disadvantages, such as low efficiency, inaccuracy, and requires specialized skill in identification and especially is incompetent for parallel analysis of several morphologically similar microalgae to species level at one time. This study aimed at exploring the feasibility of using membrane-based DNA array for parallel detection of several microalgae by selecting five microaglae, including Heterosigma akashiwo, Chaetoceros debilis, Skeletonema costatum, Prorocentrum donghaiense, and Nitzschia closterium as test species. Five species-specific (taxonomic) probes were designed from variable regions of the large subunit ribosomal DNA (LSU rDNA) by visualizing the alignment of LSU rDNA of related species. The specificity of the probes was confirmed by dot blot hybridization. The membrane-based DNA array was prepared by spotting the tailed taxonomic probes onto positively charged nylon membrane. Digoxigenin (Dig) labeling of target molecules was performed by multiple PCR/RT-PCR using RNA/DNA mixture of five microalgae as template. The Dig-labeled amplification products were hybridized with the membrane-based DNA array to produce visible hybridization signal indicating the presence of target algae. Detection sensitivity comparison showed that RT-PCR labeling (RPL) coupled with hybridization was tenfold more sensitive than DNA-PCR-labeling-coupled with hybridization. Finally, the effectiveness of RPL coupled with membrane-based DNA array was validated by testing with simulated and natural water samples, respectively. All of these results indicated that RPL coupled with membrane-based DNA array is specific, simple, and sensitive for parallel detection of microalgae which shows promise for monitoring natural samples in the future.

摘要

有害藻华(HABs)是一个全球性问题,它会给水产养殖业造成经济损失,并对人类健康构成潜在威胁。必须更加重视开发针对致病微藻的有效检测方法。传统的显微镜检查有许多缺点,例如效率低、不准确,并且需要专门的鉴定技能,特别是对于同时平行分析几种形态相似的微藻到种水平的能力不足。本研究旨在通过选择五种微藻,包括赤潮异弯藻、柔弱角毛藻、中肋骨条藻、东海原甲藻和菱形海线藻,探索基于膜的 DNA 芯片用于同时平行检测几种微藻的可行性。从相关物种的大亚基核糖体 DNA(LSU rDNA)的可变区设计了五个种特异性(分类学)探针,通过可视化 LSU rDNA 的比对来证实探针的特异性。通过点印迹杂交确认了探针的特异性。通过将长尾分类探针点样到带正电荷的尼龙膜上制备基于膜的 DNA 芯片。使用五种微藻的 RNA/DNA 混合物作为模板,通过多重 PCR/RT-PCR 对目标分子进行地高辛(Dig)标记。将 Dig 标记的扩增产物与基于膜的 DNA 芯片杂交,产生可见的杂交信号,表明存在目标藻类。检测灵敏度比较表明,RT-PCR 标记(RPL)与杂交结合比 DNA-PCR 标记与杂交结合灵敏十倍。最后,通过分别测试模拟和天然水样,验证了 RPL 与基于膜的 DNA 芯片结合的有效性。所有这些结果表明,RPL 与基于膜的 DNA 芯片结合对于微藻的平行检测具有特异性、简单和灵敏的特点,有望在未来用于监测自然样本。

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