Mosquito tagging using DNA-barcoded nanoporous protein microcrystals

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Abstract

Conventional mosquito marking technology for mark release recapture (MRR) is quite limited in terms of information capacity and efficacy. To overcome both challenges, we have engineered, lab-Tested, and field-evaluated a new class of marker particles, in which synthetic, short DNA oligonucleotides (DNA barcodes) are adsorbed and protected within tough, crosslinked porous proteinmicrocrystals. Mosquitoes self-mark through ingestion of microcrystals in their larval habitat. Barcoded microcrystals persist trans-stadially throughmosquito development if ingested by larvae, do not significantly affect adultmosquito survivorship, and individual barcoded mosquitoes are detectable in pools of up to at least 20 mosquitoes. We have also demonstrated crystal persistence following adult mosquito ingestion. Barcode sequences can be recovered by qPCR and next-generation sequencing (NGS) without detectable amplification of native mosquito DNA. These DNA-laden protein microcrystals have the potential to radically increase the amount of information obtained from future MRR studies compared to previous studies employing conventional mosquito marking materials.

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Stuart, J. D., Hartman, D. A., Gray, L. I., Jones, A. A., Wickenkamp, N. R., Hirt, C., … Kading, R. C. (2022). Mosquito tagging using DNA-barcoded nanoporous protein microcrystals. PNAS Nexus, 1(4). https://doi.org/10.1093/pnasnexus/pgac190

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