Application of Metagenomics to Chilean Aquaculture

M. Tello, N. Valdés, R. Vargas, J. Rojas, M. Parra, G. Gajardo, Alex R. Gonzalez
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引用次数: 6

Abstract

Aquaculture is a rapidly expanding food production sector, facing the challenge of growth both increasing its efficiency and reducing its negative impact on the environment. Metagenomics is an emerging tool in aquaculture that helps to understand the complex host (fish-shellfish)-microbiota-pathogen-environment relationship underlying disease outbreaks, monitoring the dynamics of microbial diversity in farmed animals subject to different environmental conditions or perturbations. As Chile takes an important share of world aquaculture market, this chapter reviews the actual and potential applications of metagenomics to support a sustainable expansion and diversification of Chilean aquaculture. The focus is on (i) the role and function of the gut microbiota in the proper immunostimulation and disease control and (ii) the role of metagenomics in monitoring environmental microbial biodiversity and dynamics in relation to disease persistence and ecosystem stability. We conclude that despite the importance of the aquaculture sector in Chile, the application of metagenomics to deal with disease control and ecosystem preservation is still an emerging field of study. Understanding host (fish-shellfish)microbiota-pathogen-environment diversity of interactions in a more holistic view, i.e., the holobiome approach, could be key to develop rational strategies to improve productivity by increasing resistance to diseases and reducing the use of antibiotics and their negative environmental impact.
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宏基因组学在智利水产养殖中的应用
水产养殖是一个迅速发展的粮食生产部门,面临着提高效率和减少对环境负面影响的挑战。宏基因组学是水产养殖领域的一种新兴工具,有助于了解疾病暴发背后复杂的宿主(鱼-贝类)-微生物-病原体-环境关系,监测受不同环境条件或扰动影响的养殖动物微生物多样性动态。由于智利在世界水产养殖市场中占有重要份额,本章回顾了宏基因组学的实际和潜在应用,以支持智利水产养殖的可持续扩张和多样化。重点是:(1)肠道微生物群在适当的免疫刺激和疾病控制中的作用和功能;(2)宏基因组学在监测与疾病持续性和生态系统稳定性有关的环境微生物多样性和动态方面的作用。我们得出的结论是,尽管智利水产养殖部门很重要,但应用宏基因组学处理疾病控制和生态系统保护仍然是一个新兴的研究领域。从更全面的角度理解宿主(鱼-贝类)微生物群-病原体-环境相互作用的多样性,即整体生物组方法,可能是制定合理战略的关键,通过增强对疾病的抵抗力和减少抗生素的使用及其对环境的负面影响来提高生产力。
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Introductory Chapter: Metagenomics and Metagenomic Approaches The Use of Bioinformatic Tools in Symbiosis and Co-Evolution Studies Soil Metagenomics: Concepts and Applications High-Throughput Sequencing and Metagenomic Data Analysis Metagenomics-Based Phylogeny and Phylogenomic
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