Genomics of preaxostyla flagellates illuminates the path towards the loss of mitochondria

LVF Novák, SC Treitli, J Pyrih, P Hałakuc… - PLoS …, 2023 - journals.plos.org
The notion that mitochondria cannot be lost was shattered with the report of an oxymonad
Monocercomonoides exilis, the first eukaryote arguably without any mitochondrion. Yet …

Adaptation of the late ISC pathway in the anaerobic mitochondrial organelles of Giardia intestinalis

A Motyčková, L Voleman, V Najdrová… - PLoS …, 2023 - journals.plos.org
Mitochondrial metabolism is entirely dependent on the biosynthesis of the [4Fe-4S] clusters,
which are part of the subunits of the respiratory chain. The mitochondrial late ISC pathway …

Phylogenetic and morphological diversity of free-living diplomonads

E Mazancová, E Zadrobílková, N Yubuki… - European Journal of …, 2023 - Elsevier
Diplomonadida is a lineage of anaerobic protists belonging to Fornicata, Metamonada. Most
diplomonads are endobiotic or parasitic, such as Giardia intestinalis, which is a famous …

An expanded phylogenomic analysis of Heterolobosea reveals the deep relationships, non-canonical genetic codes, and cryptic flagellate stages in the group

T Pánek, AK Tice, P Corre, P Hrubá, D Žihala… - Molecular Phylogenetics …, 2025 - Elsevier
Abstract The phylum Heterolobosea Page and Blanton, 1985 is a group of eukaryotes that
contains heterotrophic flagellates, amoebae, and amoeboflagellates, including the infamous …

[PDF][PDF] Genomics of Preaxostyla Flagellates Illuminates Evolutionary Transitions and the Path Towards Mitochondrial Loss

LVF Novák, SC Treitli, J Pyrih, P Hałakuc… - bioRxiv …, 2022 - academia.edu
Until recently, mitochondria were considered essential organelles impossible to truly lose in
a 24 lineage. This view changed in 2016, with the report that the oxymonad …

[PDF][PDF] Snapshot of the Research Publications from the Department of Biological Sciences, University of Arkansas, 2019-2022

L Salisbury, J Smith - 2023 - scholarworks.uark.edu
Snapshot of the Research Publications from the Department of Biological Sciences,
University of Arkansas, 2019-2022 Page 1 University of Arkansas, Fayetteville ScholarWorks@UARK …

Biogeneze a funkce jaderných železo-sirných proteinů

E Panova - 2023 - dspace.cuni.cz
Železo-sirné klastry jsou důležitými anorganickými kofaktory mnoha buněčných reakcí,
včetně těch, které probíhají v jádře. Jaderné železo-sirné proteiny hrají důležitou roli při …