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Updated: Mar 22, 2026

Protocol for Production of a Genetic Cross of the Rodent Malaria Parasites
Published on: January 3, 2011
Genomic variation in two gametocyte non-producing Plasmodium falciparum clonal lines
Susana Campino1, Ernest Diez Benavente2, Samuel Assefa2
1Faculty of Infectious and Tropical Diseases, London School of Hygiene & Tropical Medicine, London, UK. susana.campino@lshtm.ac.uk.
Background:
Transmission of the malaria parasite Plasmodium falciparum from humans to the mosquito vector requires differentiation of a sub-population of asexual forms replicating within red blood cells into non-dividing male and female gametocytes. The nature of the molecular mechanism underlying this key differentiation event required for malaria transmission is not fully understood.
Methods:
Whole genome sequencing was used to examine the genomic diversity of the gametocyte non-producing 3D7-derived lines F12 and A4. These lines were used in the recent detection of the PF3D7_1222600 locus (encoding PfAP2-G), which acts as a genetic master switch that triggers gametocyte development.
Results:
The evolutionary changes from the 3D7 parental strain through its derivatives F12 (culture-passage derived cloned line) and A4 (transgenic cloned line) were identified. The genetic differences including the formation of chimeric var genes are presented.
Conclusion:
A genomics resource is provided for the further study of gametocytogenesis or other phenotypes using these parasite lines.
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