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Rhizobacteria Mediate the Phytotoxicity of a Range of Biorefinery‐Relevant Compounds

机译:根际细菌介导一系列与生物炼制有关的化合物的植物毒性

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摘要

Advances in engineering biology have expanded the list of renewable compounds that can be produced at scale via biological routes from plant biomass. In most cases, these chemical products have not been evaluated for effects on biological systems, defined in the present study as bioactivity, that may be relevant to their manufacture. For sustainable chemical and fuel production, the industry needs to transition from fossil to renewable carbon sources, resulting in unprecedented expansion in the production and environmental distribution of chemicals used in biomanufacturing. Further, although some chemicals have been assessed for mammalian toxicity, environmental and agricultural hazards are largely unknown. We assessed 6 compounds that are representative of the emerging biofuel and bioproduct manufacturing process for their effect on model plants (Arabidopsis thaliana, Sorghum bicolor) and show that several alter plant seedling physiology at submillimolar concentrations. However, these responses change in the presence of individual bacterial species from the A. thaliana root microbiome. We identified 2 individual microbes that change the effect of chemical treatment on root architecture and a pooled microbial community with different effects relative to its constituents individually. The present study indicates that screening industrial chemicals for bioactivity on model organisms in the presence of their microbiomes is important for biologically and ecologically relevant risk analyses. Environ Toxicol Chem 2019;38:1911–1922. © 2019 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals, Inc. on behalf of SETAC.
机译:工程生物学的进步扩大了可再生化合物的范围,这些可再生化合物可以通过生物途径从植物生物质大规模生产。在大多数情况下,尚未评估这些化学产品对生物系统的影响,在本研究中定义为可能与其制造有关的生物活性。为了可持续的化学和燃料生产,该行业需要从化石向可再生碳源过渡,从而导致生物制造用化学药品的生产和环境分布出现前所未有的增长。此外,尽管已经评估了某些化学药品对哺乳动物的毒性,但在很大程度上未知环境和农业危害。我们评估了代表新兴生物燃料和生物产品生产过程的6种化合物对模型植物的影响(拟南芥,高粱),并显示了几种化合物在亚毫摩尔浓度下会改变植物幼苗的生理状况。但是,这些反应在来自拟南芥根微生物组的单个细菌种类的存在下改变。我们确定了2种能够改变化学处理对根系结构的影响的微生物,以及一个相对于其成分而言具有不同影响的集合微生物群落。本研究表明,在微生物存在微生物模型的情况下,筛选工业化学品对模型生物的生物活性对于生物学和生态学相关的风险分析非常重要。 Environ Toxicol Chem 2019; 38:1911–1922。 ©2019作者。 Wiley Periodicals,Inc.代表SETAC发布的《环境毒理学和化学》。

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