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表达微生物酶的动物对甲基汞的去甲基化和挥发作用。

Methylmercury demethylation and volatilization by animals expressing microbial enzymes.

作者信息

Tepper Kate, King Josh, Manuneedhi Cholan Pradeep, Pfitzner Chandran, Morsch Marco, Apte Simon C, Maselko Maciej

机构信息

Applied BioSciences, Macquarie University, Sydney, NSW, Australia.

EntoZyme PTY LTD, Sydney, NSW, Australia.

出版信息

Nat Commun. 2025 Feb 12;16(1):1117. doi: 10.1038/s41467-025-56145-w.

Abstract

Mercury is a highly toxic trace metal that readily biomagnifies in food webs where it is inaccessible to current bioremediation methods. Animals could potentially be engineered to detoxify mercury within their food webs to clean up impacted ecosystems. We demonstrate that invertebrate (Drosophila melanogaster) and vertebrate (Danio rerio) animal models can express organomercurial lyase (MerB) and mercuric reductase (MerA) from Escherichia coli to demethylate methylmercury and remove it from their biomass as volatile elemental mercury. The engineered animals accumulated less than half as much mercury relative to their wild-type counterparts, and a higher proportion of mercury in their tissue was in the form of less bioavailable inorganic mercury. Furthermore, the engineered animals could tolerate higher exposures to methylmercury compared to controls. These findings demonstrate the potential of using engineered animals for bioremediation and may be applied to reduce the burden of methylmercury in impacted ecosystems by disrupting its biomagnification or to treat contaminated organic waste streams.

摘要

汞是一种剧毒的痕量金属,在食物网中容易发生生物放大作用,而目前的生物修复方法无法触及这些食物网。可以对动物进行基因改造,使其在食物网中对汞进行解毒,从而清理受影响的生态系统。我们证明,无脊椎动物(黑腹果蝇)和脊椎动物(斑马鱼)动物模型可以表达来自大肠杆菌的有机汞裂解酶(MerB)和汞还原酶(MerA),以将甲基汞脱甲基,并将其作为挥发性元素汞从它们的生物量中去除。与野生型同类动物相比,经过基因改造的动物积累的汞不到其一半,并且它们组织中更高比例的汞是以生物利用度较低的无机汞形式存在。此外,与对照组相比,经过基因改造的动物能够耐受更高剂量的甲基汞暴露。这些发现证明了利用基因改造动物进行生物修复的潜力,并且可以通过破坏甲基汞的生物放大作用来减轻受影响生态系统中甲基汞的负担,或者用于处理受污染的有机废物流。

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