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A mitochondrial remnant in the microsporidian Trachipleistophora hominis
Bryony A P Williams1, Robert P Hirt, John M Lucocq
1Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK.
Abstract:
Microsporidia are obligate intracellular parasites of several eukaryotes. They have a highly complex and unique infection apparatus but otherwise appear structurally simple. Microsporidia are thought to lack typical eukaryotic organelles, such as mitochondria and peroxisomes. This has been interpreted as support for the hypothesis that these peculiar eukaryotes diverged before the mitochondrial endosymbiosis, which would make them one of the earliest offshoots in eukaryotic evolution. But microsporidial nuclear genes that encode orthologues of typical mitochondrial heatshock Hsp70 proteins have been detected, which provides evidence for secondary loss of the organelle or endosymbiont. In addition, gene trees and more sophisticated phylogenetic analyses have recovered microsporidia as the relatives of fungi, rather than as basal eukaryotes. Here we show that a highly specific antibody raised against a Trachipleistophora hominis Hsp70 protein detects the presence, under light and electron microscopy, of numerous tiny ( approximately 50 x 90 nm) organelles with double membranes in this human microsporidial parasite. The finding of relictual mitochondria in microsporidia provides further evidence of the reluctance of eukaryotes to lose the mitochondrial organelle, even when its canonical function of aerobic respiration has been apparently lost.
Insights
This study reveals relictual mitochondria in microsporidia, obligate intracellular parasites. This finding challenges their status as early-branching eukaryotes and supports their fungal relationship, despite apparent loss of canonical mitochondrial function.
Area of Science:
- Eukaryotic Cell Biology
- Parasitology
- Evolutionary Biology
Background:
- Microsporidia are obligate intracellular parasites lacking typical eukaryotic organelles like mitochondria.
- Their apparent organelle loss was interpreted as evidence for early divergence before mitochondrial endosymbiosis.
- However, nuclear genes encoding mitochondrial proteins and phylogenetic analyses suggest a relationship with fungi.
Purpose of the Study:
- To investigate the presence of mitochondria in microsporidia.
- To re-evaluate the evolutionary position of microsporidia within eukaryotes.
Main Methods:
- Utilized a specific antibody against a Trachipleistophora hominis Hsp70 protein.
- Employed light and electron microscopy to detect organelles within the parasite.
- Conducted phylogenetic analyses based on gene trees.
Main Results:
- Detected numerous tiny (approximately 50 x 90 nm) double-membraned organelles in T. hominis.
- These organelles were identified as relictual mitochondria.
- Phylogenetic analyses consistently place microsporidia as relatives of fungi.
Conclusions:
- Microsporidia possess relictual mitochondria, demonstrating eukaryotes' reluctance to lose this organelle.
- The findings support the secondary loss of mitochondria in microsporidia, not their absence since early evolution.
- This reinforces the classification of microsporidia within the fungal kingdom.
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