Emami Kaveh, Hack Ethan, Nelson Andrew, Brain Chelsea M, Lyne Fern M, Mesbahi Ehsan, Day John G, Caldwell Gary S
School of Marine Science and Technology, Newcastle University, Newcastle upon Tyne, NE1 7RU, UK.
School of Biology, Newcastle University, Newcastle upon Tyne, NE1 7RU, UK.
Sci Rep. 2015 May 12;5:10036. doi: 10.1038/srep10036.
Accurate and defendable taxonomic identification of microalgae strains is vital for culture collections, industry and academia; particularly when addressing issues of intellectual property. We demonstrate the remarkable effectiveness of Matrix Assisted Laser Desorption Ionisation Time of Flight Mass Spectrometry (MALDI-TOF-MS) biotyping to deliver rapid and accurate strain separation, even in situations where standard molecular tools prove ineffective. Highly distinctive MALDI spectra were obtained for thirty two biotechnologically interesting Dunaliella strains plus strains of Arthrospira, Chlorella, Isochrysis, Tetraselmis and a range of culturable co-occurring bacteria. Spectra were directly compared with genomic DNA sequences (internal transcribed spacer, ITS). Within individual Dunaliella isolates MALDI discriminated between strains with identical ITS sequences, thereby emphasising and enhancing knowledge of the diversity within microalgae culture collections. Further, MALDI spectra did not vary with culture age or growth stage during the course of the experiment; therefore MALDI presents stable and accurate strain-specific signature spectra. Bacterial contamination did not affect MALDI's discriminating power. Biotyping by MALDI-TOF-MS will prove effective in situations wherein precise strain identification is vital, for example in cases involving intellectual property disputes and in monitoring and safeguarding biosecurity. MALDI should be accepted as a biotyping tool to complement and enhance standard molecular taxonomy for microalgae.
对微藻菌株进行准确且可靠的分类鉴定,对于菌种保藏机构、产业界和学术界而言至关重要;在涉及知识产权问题时尤其如此。我们证明了基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)生物分型在实现快速且准确的菌株分离方面具有显著成效,即便在标准分子工具失效的情况下亦是如此。我们获得了32株具有生物技术意义的杜氏藻菌株以及节旋藻、小球藻、等鞭金藻、四爿藻菌株和一系列可培养的共生细菌的高度独特的MALDI光谱。光谱直接与基因组DNA序列(内转录间隔区,ITS)进行了比较。在单个杜氏藻分离株中,MALDI能够区分具有相同ITS序列的菌株,从而强化并增进了对微藻菌种保藏库内多样性的认识。此外,在实验过程中,MALDI光谱不会随培养时间或生长阶段而变化;因此,MALDI呈现出稳定且准确的菌株特异性特征光谱。细菌污染不会影响MALDI的鉴别能力。在精确菌株鉴定至关重要的情况下,例如在涉及知识产权纠纷以及监测和保障生物安全的案例中,MALDI-TOF-MS生物分型将被证明是有效的。MALDI应被接纳为一种生物分型工具,以补充和完善微藻的标准分子分类学。