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元组学在提供用于监测土壤质量和保障粮食生产的现代微生物指标方面的潜力。

Potential of Meta-Omics to Provide Modern Microbial Indicators for Monitoring Soil Quality and Securing Food Production.

作者信息

Djemiel Christophe, Dequiedt Samuel, Karimi Battle, Cottin Aurélien, Horrigue Walid, Bailly Arthur, Boutaleb Ali, Sadet-Bourgeteau Sophie, Maron Pierre-Alain, Chemidlin Prévost-Bouré Nicolas, Ranjard Lionel, Terrat Sébastien

机构信息

Agroécologie, INRAE, Institut Agro, Université Bourgogne, Université Bourgogne Franche-Comté, Dijon, France.

Novasol Experts, Dijon, France.

出版信息

Front Microbiol. 2022 Jun 30;13:889788. doi: 10.3389/fmicb.2022.889788. eCollection 2022.

Abstract

Soils are fundamental resources for agricultural production and play an essential role in food security. They represent the keystone of the food value chain because they harbor a large fraction of biodiversity-the backbone of the regulation of ecosystem services and "soil health" maintenance. In the face of the numerous causes of soil degradation such as unsustainable soil management practices, pollution, waste disposal, or the increasing number of extreme weather events, it has become clear that (i) preserving the soil biodiversity is key to food security, and (ii) biodiversity-based solutions for environmental monitoring have to be developed. Within the soil biodiversity reservoir, microbial diversity including Archaea, Bacteria, Fungi and protists is essential for ecosystem functioning and resilience. Microbial communities are also sensitive to various environmental drivers and to management practices; as a result, they are ideal candidates for monitoring soil quality assessment. The emergence of meta-omics approaches based on recent advances in high-throughput sequencing and bioinformatics has remarkably improved our ability to characterize microbial diversity and its potential functions. This revolution has substantially filled the knowledge gap about soil microbial diversity regulation and ecology, but also provided new and robust indicators of agricultural soil quality. We reviewed how meta-omics approaches replaced traditional methods and allowed developing modern microbial indicators of the soil biological quality. Each meta-omics approach is described in its general principles, methodologies, specificities, strengths and drawbacks, and illustrated with concrete applications for soil monitoring. The development of metabarcoding approaches in the last 20 years has led to a collection of microbial indicators that are now operational and available for the farming sector. Our review shows that despite the recent huge advances, some meta-omics approaches (e.g., metatranscriptomics or meta-proteomics) still need developments to be operational for environmental bio-monitoring. As regards prospects, we outline the importance of building up repositories of soil quality indicators. These are essential for objective and robust diagnosis, to help actors and stakeholders improve soil management, with a view to or to contribute to combining the food and environmental quality of next-generation farming systems in the context of the agroecological transition.

摘要

土壤是农业生产的基础资源,在粮食安全方面发挥着至关重要的作用。它们是食品价值链的基石,因为它们蕴藏着大部分生物多样性,而生物多样性是生态系统服务调节和“土壤健康”维持的支柱。面对土壤退化的众多原因,如不可持续的土壤管理做法、污染、废物处理或极端天气事件的增多,很明显:(i)保护土壤生物多样性是粮食安全的关键;(ii)必须开发基于生物多样性的环境监测解决方案。在土壤生物多样性库中,包括古菌、细菌、真菌和原生生物在内的微生物多样性对于生态系统功能和恢复力至关重要。微生物群落也对各种环境驱动因素和管理做法敏感;因此,它们是监测土壤质量评估的理想候选对象。基于高通量测序和生物信息学的最新进展的元组学方法的出现,显著提高了我们表征微生物多样性及其潜在功能的能力。这场革命极大地填补了关于土壤微生物多样性调节和生态学的知识空白,同时也提供了农业土壤质量的新的可靠指标。我们回顾了元组学方法如何取代传统方法,并允许开发土壤生物质量的现代微生物指标。每种元组学方法都在其一般原则、方法、特异性、优点和缺点方面进行了描述,并通过土壤监测的具体应用进行了说明。过去20年中代谢条形码方法的发展导致了一系列微生物指标的收集,这些指标现在已可用于农业部门实际应用。我们的综述表明,尽管最近取得了巨大进展,但一些元组学方法(如宏转录组学或宏蛋白质组学)仍需要进一步发展才能用于环境生物监测。关于未来前景,我们概述了建立土壤质量指标库的重要性。这些指标库对于客观、可靠的诊断至关重要,有助于行为者和利益相关者改善土壤管理,以期或有助于在农业生态转型背景下将下一代农业系统的粮食质量和环境质量相结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd48/9280627/a40b969cae44/fmicb-13-889788-g001.jpg

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