课题基金 / 基金详情

Predicting the persistence of chemicals - the significance of microbial diversity, catabolic prevalence and redundancy in naturally derived inocula

Predicting the persistence of chemicals - the significance of microbial diversity, catabolic prevalence and redundancy in naturally derived inocula
预测化学品的持久性 - 自然衍生接种物中微生物多样性、分解代谢流行率和冗余的重要性
批准号:
2110946
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
在被社会使用之后,用作农用化学品、药品和兽药的合成化学品被释放到环境中,有可能对生态系统和人类健康产生不利影响。为了评估、管理和减轻这些风险,我们需要了解控制化学物质在环境中的命运和持久性的因素。在批准使用化学品之前,它们必须经过监管测试,以确定降解的速度和程度,以及它们在环境中持续存在的潜力。目前的监管研究,其中许多监管研究不再适合目的,因为它们的设计是为了识别快速降解的化学物质,很少或根本没有能力筛选出高度持久性的化学物质。此外,这些研究是在标准化的实验室条件下进行的,规模有限,无法复制现实世界环境的动态性和复杂性。对大多数化学品来说,微生物群落的生物降解是决定其环境持久性的关键过程。生物降解速率是由环境参数与微生物群落的丰度和功能特征之间的复杂相互作用决定的。微生物群落在土壤、沉积物和水等环境隔间中具有高度多样性,并且在空间和时间上具有极大的可变性。测序方法的进步为表征微生物群落提供了新的途径,宏基因组学和元转录组学方法为揭示微生物群落的性质提供了机会,这些微生物群落有助于化学降解,以及所涉及的特定降解途径。最近的研究表明,在标准化管制测试中,微生物群落降解化学品的潜力可能有很大的季节性变化。有证据表明,这与由温度和光照等因素驱动的微生物群落组成的变化有关。该项目将研究合成化合物的化学性质、环境隔间的物理化学特性和决定化学物质生物降解的温度之间的相互作用。将特别关注使用“组学”方法揭示这些相互作用背后的微生物机制,以允许开发可集成到化学文库筛选中的预测工具和分析,促进新一代可优先考虑化学持久性的监管研究的发展。并了解负责生物降解的关键分解代谢基因的普遍性,以及存在于微生物群落中的功能冗余/弹性,这些微生物群落通常被用作这些生物降解试验的接种剂。
英文摘要
Following their use by society, synthetic chemicals used as agrochemicals, pharmaceuticals and veterinary medicines are released into the environment, where there is the potential for them to exert adverse effects on ecosystems and human health. To assess, manage and mitigate these risks we need to understand the factors which control chemical fate and persistence in the environment. Before chemicals can be approved for use, they must undergo regulatory testing to determine the rate and extent of degradation, and their potential to persist in the environment. The current regulatory studies upon which many of these regulatory studies are no longer fit-for-purpose as they were designed to identify chemicals that undergo rapid degradation and offer little or no ability to screen out highly persistent chemicals. In addition, these studies are conducted under standardised laboratory conditions, are limited in scale, and fail to replicate the dynamic nature and complexity of real world environments. For most chemicals, biodegradation by microbial communities is the key process which determines environmental persistence. Biodegradation rates are determined by complex interplay between environmental parameters and the abundance and functional characteristics of microbial communities. Microbial communities in environmental compartments such as soil, sediment and water are highly diverse, and extremely variable in space and time. Advances in sequencing methodologies have provided new avenues to characterise microbial communities, with metagenomic and meta-transcriptomic approaches providing opportunities to unravel the nature of microbial communities contributing to chemical degradation, and the specific degradation pathways involved. Recent studies have suggested that there may be substantial seasonal variation in the potential of microbial communities to degrade chemicals within standardised regulatory tests. Evidence suggests this is linked to variation in microbial community composition driven by factors such as temperature and light. This project will investigate interactions between the chemistry of synthetic compounds, the physico-chemical characteristics of environmental compartments, and temperature for determining biodegradation of chemicals. Special attention will be made to unravelling the microbial mechanisms underlying these interactions using 'omic approaches to allow the development of predictive tools and assays that can be integrated into chemical library screening, foster the development of a new generation of regulatory studies that can prioritise on chemical persistence, and understand the prevalence of key catabolic genes responsible for biodegradation and the functional redundancy/ resilience that exists within microbial communities commonly used as inocula for these biodegradation assays.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
国内基金
海外基金
集合种群尺度下种群模型的建立与研究
  • 批准号:
    10471066
  • 项目类别:
    面上项目
  • 资助金额:
    19.0万元
  • 批准年份:
    2004
  • 负责人:
    崔景安
  • 依托单位: