Engineered skin microbiome reduces mosquito attraction to mice.

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES PNAS nexus Pub Date : 2024-07-30 eCollection Date: 2024-07-01 DOI:10.1093/pnasnexus/pgae267
Feng Liu, Iliano V Coutinho-Abreu, Robyn Raban, Tam Thuy Dan Nguyen, Alejandra R Dimas, Joseph A Merriman, Omar S Akbari
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Abstract

The skin microbiome plays a pivotal role in the production of attractive cues detected by mosquitoes. Here, we leveraged recent advances in genetic engineering to significantly reduce the production of L-(+)-lactic acid as a strategy to reduce mosquito attraction to the highly prominent skin commensals Staphylococcus epidermidis and Corynebacterium amycolatum. Engraftment of these engineered bacteria onto the skin of mice reduced mosquito attraction and feeding for up to 11 uninterrupted days, which is considerably longer than the several hours of protection conferred by the leading chemical repellent N,N-diethyl-meta-toluamide. Taken together, our findings demonstrate engineering the skin microbiome to reduce attractive volatiles represents an innovative untapped strategy to reduce vector attraction, preventing bites, and pathogen transmission. These findings set the stage for new classes of long-lasting microbiome-based repellent products.

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设计皮肤微生物群减少蚊子对小鼠的吸引力
皮肤微生物组在产生蚊子检测到的吸引线索方面起着关键作用。在这里,我们利用基因工程的最新进展,大幅减少了 L-(+)-乳酸的产生,以此来降低蚊子对高度突出的皮肤共生菌表皮葡萄球菌和淀粉球菌的吸引力。将这些工程细菌移植到小鼠皮肤上可在长达 11 天的时间内不间断地减少蚊子的吸引和摄食,这比主要化学驱蚊剂 N,N-二乙基-间甲苯胺数小时的保护时间要长得多。总之,我们的研究结果表明,对皮肤微生物组进行工程改造以减少有吸引力的挥发物,是一种尚未开发的创新策略,可减少病媒的吸引,防止叮咬和病原体传播。这些发现为开发基于微生物的新型长效驱蚊产品奠定了基础。
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