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A new method for removing microflora from macroalgal surfaces: an important step for natural product discovery

机译:一种从大型藻类表面去除菌群的新方法:天然产物发现的重要步骤

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摘要

Numerous marine organisms, including macroalgae, produce bioactive compounds. As chemical extraction processes do not distinguish between compounds originating from the alga and its associated microflora, a key step immediately prior to isolation of molecules, is elimination of epibionts from the alga studied. In chemical, ecological and biotechnological contexts, a clear identification of the source organism, when symbiotic interactions occurs, is crucial. We aimed to improve understanding of specific secondary metabolite production by macroalgae through development of a methodology for removing microbial epibionts immediately prior to chemical extraction without damaging algal cell surfaces (to avoid extraction of endogenous macroalgal compounds at this stage). Various solutions were tested: non-polar solvents (dichloromethane and hexane), alcohols (methanol, ethanol and isopropanol), oxidants (sodium hypochlorite, hydrogen peroxide and iodine) and a natural product (tea tree oil) at various concentrations and contact times. Five macroalgal species were employed: Chondrus crispus, Fucus serratus, Palmaria palmata, Saccharina latissima and Ulva lactuca. Scanning electron microscopy was used to evaluate the surface integrity. The best epibiont removal rate without damaging tissue was obtained with mixtures of ethanol (40-50%) and sodium hypochlorite (1%). Interestingly, macroalgal moisture content influenced treatment efficacy.
机译:包括大型藻类在内的许多海洋生物均会产生生物活性化合物。由于化学提取过程无法区分藻类及其相关菌群的化合物,因此在分离分子之前的关键步骤是消除所研究藻类中的表皮离子。在化学,生态和生物技术背景下,当发生共生相互作用时,对源生物的清晰识别至关重要。我们旨在通过开发一种在化学提取之前立即去除微生物表皮而不破坏藻类细胞表面的方法(以避免在此阶段提取内源性大藻类化合物)来开发对大型藻类特定次级代谢产物产生的了解。测试了各种溶液:非极性溶剂(二氯甲烷和己烷),醇(甲醇,乙醇和异丙醇),氧化剂(次氯酸钠,过氧化氢和碘)和各种浓度和接触时间的天然产物(茶树油)。使用了五种大型藻类物种:盘角线虫,山形墨角藻,棕榈棕,Saccharina latissima和Ulva lactuca。扫描电子显微镜用于评估表面完整性。使用乙醇(40-50%)和次氯酸钠(1%)的混合物可获得最佳的去除表皮生物的速率,而不会损坏组织。有趣的是,大藻类含水量影响了治疗效果。

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