{"database":"bioimages","file_versions":[],"scores":null,"additional":{"omics_type":["Unknown"],"submitter":["Beth Crawford Poulton"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-BIAD2518"],"repository":["bioimages"],"figure_sub":["Specimen","Image analysis","Funding","Study Component","Biosample","organisation","Associations","Image acquisition"],"pubmed_authors":["Thomas H. Ant","Beth Crawford Poulton","Abdelhakeem Ismail Adam","Saré Issiaka","Abdoulaye Diabaté","Etienne Bilgo","Roland Pevsner","Steven P. Sinkins","Deepak-Kumar Purusothaman","Ewan R.S. Parry"],"additional_accession":[]},"is_claimable":false,"name":"Laboratory An. gambiae s.l. mosquito colonies show sustained high transmission of Microsporidia sp. MB and a small decrease in egg viability","description":"Background \nMicrosporidia sp. MB, a microsporidian symbiont found naturally in Anopheles mosquitoes, has potential as a novel malaria control tool since it can inhibit Plasmodium development and transmission. The most feasible MB-based Plasmodium control strategy would involve dissemination through live mosquito releases, or release of spores infective to mosquito larvae. To implement either strategy, establishment of stable mosquito colonies carrying MB at a high frequency is likely to be essential.\n\nThe progeny of field caught An. gambiae s.l from Burkina Faso were isolated for individual egg laying and tested for MB. The progeny of the MB positive females were pooled and this process was repeated for multiple generations. The relative density of MB in different life stages and tissues o","dates":{"release":"2026-04-23T00:00:00Z","modification":"2026-07-22T01:13:33.573Z","creation":"2025-12-19T13:05:15.769Z"},"accession":"S-BIAD2518","cross_references":{}}