Burge Colleen A, Friedman Carolyn S, Getchell Rodman, House Marcia, Lafferty Kevin D, Mydlarz Laura D, Prager Katherine C, Sutherland Kathryn P, Renault Tristan, Kiryu Ikunari, Vega-Thurber Rebecca
Institute of Marine and Environmental Technology, University of Maryland Baltimore County, 701 E Pratt Street, Baltimore, MD 21202, USA
School of Aquatic and Fishery Sciences, University of Washington, Box 355020, Seattle, WA 98195, USA.
Philos Trans R Soc Lond B Biol Sci. 2016 Mar 5;371(1689). doi: 10.1098/rstb.2015.0207.
Linking marine epizootics to a specific aetiology is notoriously difficult. Recent diagnostic successes show that marine disease diagnosis requires both modern, cutting-edge technology (e.g. metagenomics, quantitative real-time PCR) and more classic methods (e.g. transect surveys, histopathology and cell culture). Here, we discuss how this combination of traditional and modern approaches is necessary for rapid and accurate identification of marine diseases, and emphasize how sole reliance on any one technology or technique may lead disease investigations astray. We present diagnostic approaches at different scales, from the macro (environment, community, population and organismal scales) to the micro (tissue, organ, cell and genomic scales). We use disease case studies from a broad range of taxa to illustrate diagnostic successes from combining traditional and modern diagnostic methods. Finally, we recognize the need for increased capacity of centralized databases, networks, data repositories and contingency plans for diagnosis and management of marine disease.
将海洋动物流行病与特定病因联系起来极为困难。近期的诊断成功案例表明,海洋疾病诊断既需要现代前沿技术(如宏基因组学、定量实时聚合酶链反应),也需要更传统的方法(如断面调查、组织病理学和细胞培养)。在此,我们讨论传统与现代方法相结合对于快速准确识别海洋疾病的必要性,并强调单纯依赖任何一种技术或方法可能会使疾病调查误入歧途。我们展示了从宏观(环境、群落、种群和生物体尺度)到微观(组织、器官、细胞和基因组尺度)不同尺度的诊断方法。我们利用来自广泛分类群的疾病案例研究来说明传统与现代诊断方法相结合所取得的诊断成功。最后,我们认识到需要提高集中式数据库、网络、数据存储库以及海洋疾病诊断和管理应急计划的能力。