Hamelin Richard C, Roe Amanda D
Department of Forest and Conservation Sciences The University of British Columbia Vancouver BC Canada.
Institut de Biologie Intégrative et des Systèmes (IBIS) Université Laval Québec QC Canada.
Evol Appl. 2019 Sep 10;13(1):95-115. doi: 10.1111/eva.12853. eCollection 2020 Jan.
The world's forests face unprecedented threats from invasive insects and pathogens that can cause large irreversible damage to the ecosystems. This threatens the world's capacity to provide long-term fiber supply and ecosystem services that range from carbon storage, nutrient cycling, and water and air purification, to soil preservation and maintenance of wildlife habitat. Reducing the threat of forest invasive alien species requires vigilant biosurveillance, the process of gathering, integrating, interpreting, and communicating essential information about pest and pathogen threats to achieve early detection and warning and to enable better decision-making. This process is challenging due to the diversity of invasive pests and pathogens that need to be identified, the diverse pathways of introduction, and the difficulty in assessing the risk of establishment. Genomics can provide powerful new solutions to biosurveillance. The process of invasion is a story written in four chapters: transport, introduction, establishment, and spread. The series of processes that lead to a successful invasion can leave behind a DNA signature that tells the story of an invasion. This signature can help us understand the dynamic, multistep process of invasion and inform management of current and future introductions. This review describes current and future application of genomic tools and pipelines that will provide accurate identification of pests and pathogens, assign outbreak or survey samples to putative sources to identify pathways of spread, and assess risk based on traits that impact the outbreak outcome.
世界森林面临着来自入侵昆虫和病原体的前所未有的威胁,这些入侵物种会对生态系统造成巨大的、不可逆转的破坏。这威胁到世界提供长期纤维供应和生态系统服务的能力,这些服务包括碳储存、养分循环、水和空气净化、土壤保护以及野生动物栖息地维护等。减少森林外来入侵物种的威胁需要警惕的生物监测,即收集、整合、解读和传播有关害虫和病原体威胁的基本信息,以实现早期发现和预警,并做出更好的决策。由于需要识别的入侵害虫和病原体种类繁多、引入途径多样,以及评估其定殖风险存在困难,这一过程具有挑战性。基因组学可为生物监测提供强大的新解决方案。入侵过程宛如一部分为四章的故事:运输、引入、定殖和扩散。导致成功入侵的一系列过程会留下DNA印记,讲述入侵的故事。这一印记有助于我们理解入侵的动态、多步骤过程,并为当前及未来引入物种的管理提供信息。本综述描述了基因组工具和流程的当前及未来应用,这些工具和流程将能够准确识别害虫和病原体,将疫情或调查样本与假定来源进行匹配以确定传播途径,并根据影响疫情结果的特征评估风险。