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Table S2: Putative MRO proteins of Barthelona sp. strain PAP020 and their predicted subcellular localizations. from Barthelonids represent a deep-branching metamonad clade with mitochondrion-related organelles predicted to generate no ATP

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The Royal Society Figshare2020-08-20 更新2026-04-17 收录
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https://rs.figshare.com/articles/Table_S2_Putative_MRO_proteins_of_Barthelona_sp_strain_PAP020_and_their_predicted_subcellular_localizations_from_Barthelonids_represent_a_deep-branching_metamonad_clade_with_mitochondrion-related_organelles_predicted_to_generate_no_ATP/12833840/1
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资源简介:
We here report the phylogenetic position of barthelonids, small anaerobic flagellates previously examined using light microscopy alone. <i>Barthelona</i> spp. were isolated from geographically distinct regions and we established five laboratory strains. Transcriptomic data generated from one <i>Barthelona</i> strain (PAP020) were used for large-scale, multi-gene phylogenetic (phylogenomic) analyses. Our analyses robustly placed strain PAP020 at the base of the Fornicata clade, indicating that barthelonids represent a deep-branching Metamonad clade. Considering the anaerobic/microaerophilic nature of barthelonids and preliminary electron microscopy observations on strain PAP020, we suspected that barthelonids possess functionally and structurally reduced mitochondria (i.e. mitochondrion-related organelles or MROs). The metabolic pathways localized in the MRO of strain PAP020 were predicted based on its transcriptomic data and compared with those in the MROs of fornicates. We here propose that strain PAP020 is incapable of generating ATP in the MRO, as no mitochondrial/MRO enzymes involved in substrate-level phosphorylation were detected. Instead, we detected the putative cytosolic ATP-generating enzyme (acetyl-CoA synthetase), suggesting that strain PAP020 depends on ATP generated in the cytosol. We propose two separate losses of substrate-level phosphorylation from the MRO in the clade containing barthelonids and (other) fornicates.
提供机构:
Keitaro Kume; Euki Yazaki; Ken-Ichiro Ishida
创建时间:
2020-08-20
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