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Biochemistry / Pyruvate dehydrogenase / Citric acid cycle / Dehydrogenase / Acetyl-CoA / Malate dehydrogenase / Apicomplexa / Lipogenesis / Mitochondrion / Biology / Cellular respiration / Metabolism


Alveolate Mitochondrial Metabolic Evolution: Dinoflagellates Force Reassessment of the Role of Parasitism as a Driver of Change in Apicomplexans Jillian C. Danne,1 Sebastian G. Gornik,y,1 James I. MacRae,y,2 Malcolm J. M
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Document Date: 2013-01-13 18:49:14


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Clayton / Montreal / Parkville / /

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GenBank / Agilent Technologies / Oxford University Press / ADP / Aquarium Systems / Perkinsidae / ETC / Additional / /

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United States / Canada / Australia / United Kingdom / Scotland / /

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Biotechnology Institute / University of Glasgow / BCKDH complex / University of Melbourne / National Centre / Monash University / /

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carrier gas / free-living autotrophs harvesting energy / electron transport chain / transport chain / potential energy source / parasitic protist / carnitine/acylcarintine carrier / energy / anabolic services / carrier proteins / energy production / e-value / phosphate carrier / dinoflagellate energy metabolism / energy metabolism / environmental services / /

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Paramecium / /

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University of Melbourne / Victoria / Australia Department of Biochemistry / School of Botany / University of Glasgow / Transcriptome Shotgun Assembly / Monash University / Australia Department of Biochemistry and Molecular Biology / Society for Molecular Biology and Evolution / National Centre for Biotechnology Information / Molecular Biology / Bio21 Molecular Science and Biotechnology Institute / Oxford University / /

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Nicholas Beevers / Charles Delwiche / Ross F. Waller / Trinity / /

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M-16 / /

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Virginia / Victoria / Nova Scotia / /

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Molecular Biology and Evolution / Molecular Biology / /

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alpha / Biotechnology / SDH / http / PDH / gas chromatography / /

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