Apicomplexan-like parasites are polyphyletic and widely but selectively dependent on cryptic plastid organelles.
basic_science · Level V
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- Record sourced from PubMed, PMID 31418692.
- Also identified by DOI 10.7554/eLife.49662 and PMC identifier 6733595.
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Abstract
The phylum Apicomplexa comprises human pathogens such as <i>Plasmodium</i> but is also an under-explored hotspot of evolutionary diversity central to understanding the origins of parasitism and non-photosynthetic plastids. We generated single-cell transcriptomes for all major apicomplexan groups lacking large-scale sequence data. Phylogenetic analysis reveals that apicomplexan-like parasites are polyphyletic and their similar morphologies emerged convergently at least three times. Gregarines and eugregarines are monophyletic, against most expectations, and rhytidocystids and <i>Eleutheroschizon</i> are sister lineages to medically important taxa. Although previously unrecognized, plastids in deep-branching apicomplexans are common, and they contain some of the most divergent and AT-rich genomes ever found. In eugregarines, however, plastids are either abnormally reduced or absent, thus increasing known plastid losses in eukaryotes from two to four. Environmental sequences of ten novel plastid lineages and structural innovations in plastid proteins confirm that plastids in apicomplexans and their relatives are widespread and share a common, photosynthetic origin.
Medical subject headings
- Apicomplexa
- Apicoplasts
- Genetic Variation