Table_1_Evidence for an Independent Hydrogenosome-to-Mitosome Transition in the CL3 Lineage of Fornicates.XLSX

التفاصيل البيبلوغرافية
العنوان: Table_1_Evidence for an Independent Hydrogenosome-to-Mitosome Transition in the CL3 Lineage of Fornicates.XLSX
المؤلفون: Romana Vargová, Pavla Hanousková, Jana Salamonová, David Žihala, Jeffrey D. Silberman, Marek Eliáš, Ivan Čepička
سنة النشر: 2022
المجموعة: Frontiers: Figshare
مصطلحات موضوعية: Microbiology, Microbial Genetics, Microbial Ecology, Mycology, Caviomonadidae, caviomonads, codon reassignment, Fornicata, hydrogenosome, mitochondrial evolution, mitosome
الوصف: Fornicata, a lineage of a broader and ancient anaerobic eukaryotic clade Metamonada, contains diverse taxa that are ideally suited for evolutionary studies addressing various fundamental biological questions, such as the evolutionary trajectory of mitochondrion-related organelles (MROs), the transition between free-living and endobiotic lifestyles, and the derivation of alternative genetic codes. To this end, we conducted detailed microscopic and transcriptome analyses in a poorly documented strain of an anaerobic free-living marine flagellate, PCS, in the so-called CL3 fornicate lineage. Fortuitously, we discovered that the original culture contained two morphologically similar and closely related CL3 representatives, which doubles the taxon representation within this lineage. We obtained a monoeukaryotic culture of one of them and formally describe it as a new member of the family Caviomonadidae, Euthynema mutabile gen. et sp. nov. In contrast to previously studied caviomonads, the endobiotic Caviomonas mobilis and Iotanema spirale, E. mutabile possesses an ultrastructurally discernible MRO. We sequenced and assembled the transcriptome of E. mutabile, and by sequence subtraction, obtained transcriptome data from the other CL3 clade representative present in the original PCS culture, denoted PCS-ghost. Transcriptome analyses showed that the reassignment of only one of the UAR stop codons to encode Gln previously reported from I. spirale does not extend to its free-living relatives and is likely due to a unique amino acid substitution in I. spirale’s eRF1 protein domain responsible for termination codon recognition. The backbone fornicate phylogeny was robustly resolved in a phylogenomic analysis, with the CL3 clade amongst the earliest branching lineages. Metabolic and MRO functional reconstructions of CL3 clade members revealed that all three, including I. spirale, encode homologs of key components of the mitochondrial protein import apparatus and the ISC pathway, indicating the presence of a MRO in all of ...
نوع الوثيقة: dataset
اللغة: unknown
Relation: https://figshare.com/articles/dataset/Table_1_Evidence_for_an_Independent_Hydrogenosome-to-Mitosome_Transition_in_the_CL3_Lineage_of_Fornicates_XLSX/19794820
DOI: 10.3389/fmicb.2022.866459.s003
الاتاحة: https://doi.org/10.3389/fmicb.2022.866459.s003
https://figshare.com/articles/dataset/Table_1_Evidence_for_an_Independent_Hydrogenosome-to-Mitosome_Transition_in_the_CL3_Lineage_of_Fornicates_XLSX/19794820
Rights: CC BY 4.0
رقم الانضمام: edsbas.C070AEE3
قاعدة البيانات: BASE
الوصف
DOI:10.3389/fmicb.2022.866459.s003