R&D Bayer AG, Crop Science Division, Monheim am Rhein 40789, Germany.
Bayreuth Center for Ecology and Environmental Research (BayCEER), Bayreuth 95447, Germany.
Environ Sci Technol. 2024 Jan 30;58(4):1877-1881. doi: 10.1021/acs.est.3c08701. Epub 2024 Jan 21.
Environmental risk assessment traditionally relies on a wide range of in vivo testing to assess the potential hazards of chemicals in the environment. These tests are often time-consuming and costly and can cause test organisms' suffering. Recent developments of reliable low-cost alternatives, both in vivo- and in silico-based, opened the door to reconsider current toxicity assessment. However, many of these new approach methodologies (NAMs) rely on high-quality annotated genomes for surrogate species of regulatory risk assessment. Currently, a lack of genomic information slows the process of NAM development. Here, we present a phylogenetically resolved overview of missing genomic resources for surrogate species within a regulatory ecotoxicological risk assessment. We call for an organized and systematic effort within the (regulatory) ecotoxicological community to provide these missing genomic resources. Further, we discuss the potential of a standardized genomic surrogate species landscape to enable a robust and nonanimal-reliant ecotoxicological risk assessment in the systems ecotoxicology era.
环境风险评估传统上依赖广泛的体内测试来评估环境中化学物质的潜在危害。这些测试通常既耗时又昂贵,并且会导致试验生物的痛苦。最近,无论是基于体内还是基于计算机的可靠低成本替代品的发展,都为重新考虑当前的毒性评估打开了大门。然而,许多这些新方法学(NAMs)依赖于监管风险评估替代物种的高质量注释基因组。目前,缺乏基因组信息会减缓 NAM 的发展进程。在这里,我们呈现了一个监管生态毒理学风险评估中替代物种缺失基因组资源的系统发育解析概述。我们呼吁(监管)生态毒理学界做出有组织、有系统的努力,提供这些缺失的基因组资源。此外,我们还讨论了标准化基因组替代物种景观的潜力,以在系统生态毒理学时代实现强大且不依赖动物的生态毒理学风险评估。