Metabolic pathway redundancy within the apicomplexan-dinoflagellate radiation argues against an ancient chromalveolate plastid.
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Evolution of the Tetrapyrrole Biosynthetic Pathway in Secondary Algae: Conservation, Redundancy and ReplacementDid some red alga-derived plastids evolve via kleptoplastidy? A hypothesis.The apicoplast: now you see it, now you don't.Single cell genomics of uncultured marine alveolates shows paraphyly of basal dinoflagellates.Kingdom Chromista and its eight phyla: a new synthesis emphasising periplastid protein targeting, cytoskeletal and periplastid evolution, and ancient divergences.Plastid Transcript Editing across Dinoflagellate Lineages Shows Lineage-Specific Application but Conserved Trends.Two essential Thioredoxins mediate apicoplast biogenesis, protein import, and gene expression in Toxoplasma gondii.Highly diverged novel subunit composition of apicomplexan F-type ATP synthase identified from Toxoplasma gondiiReductive Evolution of Apicomplexan Parasites from Phototrophic Ancestors
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P2860
Metabolic pathway redundancy within the apicomplexan-dinoflagellate radiation argues against an ancient chromalveolate plastid.
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2015 nî lūn-bûn
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2015年の論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年论文
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2015年论文
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2015年论文
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name
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@ast
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@en
type
label
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@ast
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@en
prefLabel
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@ast
Metabolic pathway redundancy w ...... ncient chromalveolate plastid.
@en
P2860
P50
P1476
Metabolic pathway redundancy w ...... ancient chromalveolate plastid
@en
P2093
Ludek Koreny
P2860
P304
P356
10.1080/19420889.2015.1116653
P577
2015-12-08T00:00:00Z