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Extracellular biogenic nanomaterials inhibit pyoverdine production in Pseudomonas aeruginosa: a novel insight into impacts of metal(loid)s on environmental bacteria

机译:细胞外生物纳米材料抑制铜绿假单胞菌中嘧啶的生产:金属(胶体)对环境细菌的影响的新见解

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摘要

Anthropogenic activities such as mining, smelting, and industrial use have caused serious problems of metal(loid) pollution in nearly every country in the world. A wide range of environmental microorganisms are capable of transforming metal(loid)s into nanomaterials, i.e., biogenic nanomaterials (bio-NMs), in the environment. Although the impacts of various metal(loid) s on the ecosystems have been extensively studied, the potential influence of the bio-NMs generated in the environment to environmental organisms is largely unexplored. Using tellurium nanomaterials transformed from tellurite by a metal-reducing bacterium as model bio-NMs, we demonstrated that the bio-NMs significantly decreased siderophore production in an environmental bacterium Pseudomonas aeruginosa in both planktonic cultures and biofilms. Transcriptomic analysis revealed that the bio-NMs inhibited the expression of genes involved in biosynthesis and transport of siderophores. Siderophores secreted by certain bacteria in microbial communities can be considered as public goods that can be exploited by local communities, playing an important role in shaping microbial communities. The inhibition of siderophore production by the bio-NMs implies that bioNMs may have an important influence on the ecosystems through altering specific functions of environmental bacteria. Taken together, this study provides a novel insight into the environmental impacts of metal(loid)s.
机译:诸如采矿,冶炼和工业利用等人为活动已在世界几乎每个国家引起了严重的金属(金属)污染问题。各种各样的环境微生物能够在环境中将金属(胶体)转化成纳米材料,即生物纳米材料(bio-NMs)。尽管已经广泛研究了各种金属对生态系统的影响,但在环境中产生的生物NMs对环境生物的潜在影响仍未得到充分研究。使用由金属还原细菌从亚碲酸盐转化的碲纳米材料作为模型生物NM,我们证明了生物NM显着降低了浮游生物培养和生物膜中铜绿假单胞菌环境细菌中铁载体的产生。转录组学分析表明,生物NMs抑制了参与铁载体生物合成和转运的基因的表达。由某些细菌在微生物群落中分泌的铁载体可以被视为可被当地社区利用的公共物品,在塑造微生物群落中起着重要作用。生物NM抑制铁载体的产生意味着生物NM可能通过改变环境细菌的特定功能而对生态系统产生重要影响。综上所述,这项研究为金属(胶体)的环境影响提供了新颖的见解。

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