4.6 Article

Mitochondrial metabolism of the facultative parasite Chilodonella uncinata (Alveolata, Ciliophora)

Journal

PARASITES & VECTORS
Volume 16, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13071-023-05695-3

Keywords

Mitochondrial metabolism; Transcriptome; Adaption; Facultative parasitism

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This study describes the morphological features and metabolic characteristics of the mitochondria in the ciliate C. uncinata. Using fluorescence staining and transmission electron microscopy, the researchers observed the morphology of the mitochondria and constructed metabolic pathways based on transcriptome data. They found that the mitochondria in C. uncinata possess enzymes for the tricarboxylic acid cycle, fatty acid metabolism, amino acid metabolism, and cytochrome-based electron transport chain. However, only partial enzymes are involved in iron-sulfur clusters. These findings improve our knowledge of mitochondrial metabolism in C. uncinata and provide molecular data for future studies of this parasite.
Background Chilodonella uncinata is an aerobic ciliate capable of switching between being free-living and parasitic on fish fins and gills, causing tissue damage and host mortality. It is widely used as a model organism for genetic studies, but its mitochondrial metabolism has never been studied. Therefore, we aimed to describe the morphological features and metabolic characteristics of its mitochondria.Methods Fluorescence staining and transmission electron microscopy (TEM) were used to observe the morphology of mitochondria. Single-cell transcriptome data of C. uncinata were annotated by the Clusters of Orthologous Genes (COG) database. Meanwhile, the metabolic pathways were constructed based on the transcriptomes. The phylogenetic analysis was also made based on the sequenced cytochrome c oxidase subunit 1 (COX1) gene.Results Mitochondria were stained red using Mito-tracker Red staining and were stained slightly blue by DAPI dye. The cristae and double membrane structures of the mitochondria were observed by TEM. Besides, many lipid droplets were evenly distributed around the macronucleus. A total of 2594 unigenes were assigned to 23 functional classifications of COG. Mitochondrial metabolic pathways were depicted. The mitochondria contained enzymes for the complete tricarboxylic acid (TCA) cycle, fatty acid metabolism, amino acid metabolism, and cytochrome-based electron transport chain (ETC), but only partial enzymes involved in the iron-sulfur clusters (ISCs).Conclusions Our results showed that C. uncinata possess typical mitochondria. Stored lipid droplets inside mitochondria may be the energy storage of C. uncinata that helps its transmission from a free-living to a parasitic lifestyle. These findings also have improved our knowledge of the mitochondrial metabolism of C. uncinata and increased the volume of molecular data for future studies of this facultative parasite.

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