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101. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

102. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

103. MOESM4 of ICAM-1 is a key receptor mediating cytoadherence and pathology in the Plasmodium chabaudi malaria model

104. MOESM1 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

105. MOESM5 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

107. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

108. MOESM4 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

109. The malaria secretome: from algorithms to essential function in blood stage infection

110. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

111. MOESM5 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

112. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

113. MOESM1 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

114. Additional file 3 of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

115. Additional file of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

116. Additional file 3 of Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites

118. MOESM3 of Chimeric Plasmodium falciparum parasites expressing Plasmodium vivax circumsporozoite protein fail to produce salivary gland sporozoites

119. Signatures of malaria-associated pathology revealed by high-resolution whole-blood transcriptomics in a rodent model of malaria.

120. Maternally supplied S-acyl-transferase is required for crystalloid organelle formation and transmission of the malaria parasite.

121. P. berghei telomerase subunit TERT is essential for parasite survival.

122. Loss-of-function analyses defines vital and redundant functions of the Plasmodium rhomboid protease family.

123. Screening inhibitors of P. berghei blood stages using bioluminescent reporter parasites.

124. Development of the piggyBac transposable system for Plasmodium berghei and its application for random mutagenesis in malaria parasites.

125. Plasmodium berghei alpha-tubulin II: a role in both male gamete formation and asexual blood stages.

126. Murine malaria parasite sequestration: CD36 is the major receptor, but cerebral pathology is unlinked to sequestration.

127. Malaria parasites lacking eef1a have a normal S/M phase yet grow more slowly due to a longer G1 phase.

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