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快速、现场可部署的植物代谢组收集和保存方法,用于生化和功能表征。

Rapid, field-deployable method for collecting and preserving plant metabolome for biochemical and functional characterization.

机构信息

Department of Plant Biology, Rutgers, The State University of New Jersey, New Brunswick, New Jersey, United States of America.

Hostos Community College, City University of New York, Bronx, New York, United States of America.

出版信息

PLoS One. 2018 Sep 6;13(9):e0203569. doi: 10.1371/journal.pone.0203569. eCollection 2018.

Abstract

Study of plant metabolome is a growing field of science that catalogs vast biochemical and functional diversity of phytochemicals. However, collecting and storing samples of plant metabolome, sharing these samples across the scientific community and making them compatible with bioactivity assays presents significant challenges to the advancement of metabolome research. We have developed a RApid Metabolome Extraction and Storage (RAMES) technology that allows efficient, highly compact, field-deployable collection and storage of libraries of plant metabolome. RAMES technology combines rapid extraction with immobilization of extracts on glass microfiber filter discs. Two grams of plant tissue extracted in ethanol, using a specially adapted Dremel® rotary tool, produces 25-35 replicas of 10 mm glass fiber discs impregnated with phytochemicals. These discs can be either eluted with solvents (such as 70% ethanol) to study the metabolomic profiles or used directly in a variety of functional assays. We have developed simple, non-sterile, anti-fungal, anti-bacterial, and anti-oxidant assays formatted for 24-multiwell plates directly compatible with RAMES discs placed inside the wells. Using these methods we confirmed activity in 30 out of 32 randomly selected anti-microbial medicinal plants and spices. Seven species scored the highest activity (total kill) in the anti-bacterial (bacteria from human saliva) and two anti-fungal screens (Fusarium spp. and Saccharomyces cerevisiae), providing functional validation of RAMES technology. RAMES libraries showed limited degradation of compounds after 12 months of storage at -20°C, while others remained stable. Fifty-eight percent of structures characterized in the extracts loaded onto RAMES discs could be eluted from the discs without significant losses. Miniaturized RAMES technology, as described and validated in this manuscript offers a labor, cost, and time-effective alternative to conventional collection of phytochemicals. RAMES technology enables creation of comprehensive metabolomic libraries from various ecosystems and geographical regions in a format compatible with further biochemical and functional studies.

摘要

植物代谢组学研究是一个不断发展的科学领域,它对植物化学物质的广泛生化和功能多样性进行编目。然而,收集和储存植物代谢组学样本,在科学界内共享这些样本,并使它们与生物活性测定相兼容,这给代谢组学研究的进展带来了重大挑战。我们开发了一种 RApid Metabolome Extraction and Storage(RAMES)技术,该技术允许高效、高度紧凑、现场可部署地收集和储存植物代谢组学文库。RAMES 技术结合了快速提取和将提取物固定在玻璃微纤维滤盘上。使用专门设计的 Dremel®旋转工具,用乙醇提取两克植物组织,可产生 25-35 个 10 毫米玻璃纤维盘的复制品,这些纤维盘上浸渍有植物化学物质。这些盘可以用溶剂(如 70%乙醇)洗脱以研究代谢组学图谱,也可以直接用于各种功能测定。我们开发了简单、非无菌、抗真菌、抗细菌和抗氧化的测定方法,这些方法适用于直接与 RAMES 盘兼容的 24 孔微孔板格式。使用这些方法,我们在 32 种随机选择的具有抗菌作用的药用植物和香料中确认了 30 种具有活性。七种物种在抗细菌(来自人唾液的细菌)和两种抗真菌筛选(镰刀菌属和酿酒酵母)中得分最高(完全杀灭),为 RAMES 技术提供了功能验证。RAMES 文库在-20°C 下储存 12 个月后,化合物的降解有限,而其他化合物则保持稳定。加载到 RAMES 盘上的提取物中有 58%的结构可以从盘上洗脱出来,而不会有明显的损失。本文中描述和验证的微型化 RAMES 技术为传统植物化学物质采集提供了一种更节省劳力、成本和时间的替代方法。RAMES 技术能够以与进一步生化和功能研究兼容的格式,从各种生态系统和地理区域创建全面的代谢组学文库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05c5/6126852/6813451065ed/pone.0203569.g001.jpg

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