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Proposed <em>O</em>-GalNAc/Gal Glycosylation Pathways in Blood Group O and Non-O Blood Group Phenotypes During <em>Plasmodium falciparum</em> Infections. A Hypothesis Regarding how ABO(H) Blood Group Phenotype Formation Drives Evolution

2021-01-12

Abstract excerpt

The coevolution of species drives diversity in animals and plants and contributes to natural selection, whereas in host&ndash;parasite coevolution, a parasite may complete an incomplete evolutionary/developmental function by utilizing the host cell&rsquo;s machinery. Analysis of related older data suggests that Plasmodium falciparum (P. falciparum), the pathogen of malaria tropica, cannot survive outside its human...

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Literature Corpus work
c437a77b-fc4c-5a7c-828c-45d417026d6b
DOI
10.20944/preprints202005.0321.v2
Open publication

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Proposed <em>O</em>-GalNAc/Gal Glycosylation Pathways in Blood Group O and Non-O Blood Group Phenotypes During <em>Plasmodium falciparum</em> Infections. A Hypothesis Regarding how ABO(H) Blood Group Phenotype Formation Drives EvolutionDOI 10.20944/preprints202005.0321.v2
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