An unprecedented combination of metabolic pathways in the cryptic plastid of a non-photosynthetic euglenophyte
Füssy, Z.; Zahonova, K.; Tomcala, A.; Krajcovic, J.; Yurchenko, V.; Obornik, M.; Elias, M.
Show abstract
Most secondarily non-photosynthetic eukaryotes have retained residual plastids whose physiological role is often still unknown. One such example is Euglena longa, a close non-photosynthetic relative of Euglena gracilis harbouring a plastid organelle of enigmatic function. By mining transcriptome data from E. longa we finally provide an overview of metabolic processes localized to its elusive plastid. The organelle plays no role in biosynthesis of isoprenoid precursors and fatty acids, and has a very limited repertoire of pathways concerning nitrogen-containing metabolites. In contrast, the synthesis of phospholipids and glycolipids has been preserved, curiously with the last step of sulfoquinovosyldiacylglycerol synthesis being catalysed by the SqdX form of the enzyme so far known only from bacteria. Notably, we show that the E. longa plastid synthesizes tocopherols and a phylloquinone derivative, the first such report for non-photosynthetic plastids studied so far. The most striking attribute of the organelle is the presence of a linearized Calvin-Benson (CB) pathway including RuBisCO yet lacking the gluconeogenetic part of the standard cycle, together with ferredoxin-NADP+ reductase (FNR) and the ferredoxin/thioredoxin systems. We hypothesize that FNR passes electrons to the ferredoxin/thioredoxin systems from NADPH to activate the linear CB pathway in response to the redox status of the E. longa cell. In effect, the pathway may function as a redox valve bypassing the glycolytic oxidation of glyceraldehyde-3-phosphate to 3-phosphoglycerate. Altogether, the E. longa plastid defines a new class of relic plastids that is drastically different from the best studied organelle of this category, the apicoplast. ImportanceColourless plastids incapable of photosynthesis evolved in many plant and algal groups, but what functions they perform is still unknown in many cases. Here we study the elusive plastid of Euglena longa, a non-photosynthetic cousin of the familiar green flagellate Euglena gracilis. We document an unprecedented combination of metabolic functions that the E. longa plastid exhibits in comparison with previously characterized non-photosynthetic plastids. For example, and truly surprisingly, it has retained the synthesis of tocopherols (vitamin E) and a phylloquinone (vitamin K) derivative. In addition, we offer a possible solution of the long-standing conundrum of the presence of the CO2-fixing enzyme RuBisCO in E. longa. Our work provides a detailed account on a unique variant of relic plastids, the first among non-photosynthetic plastids that evolved by secondary endosymbiosis from a green algal ancestor, and suggests that it has persisted for reasons not previously considered in relation to non-photosynthetic plastids.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The genome of a nonphotosynthetic diatom provides insights into the metabolic shift to heterotrophy and constraints on the loss of photosynthesis 96%
- Impaired photoprotection in Phaeodactylum tricornutum KEA3 mutants reveals the proton regulatory circuit of diatoms light acclimation. 96%
- Chromosome-level genome assembly of the photobiont alga Trebouxia sp. 'A48' from Xanthoria parietina provides new insight into the lichen symbiosis 95%
Similar papers in this journal
- Molecular phylogeny of the SELMA translocation machinery recounts the evolution of complex photosynthetic eukaryotes. 97%
- Tightly constrained genome reduction and relaxation of purifying selection during secondary plastid endosymbiosis 94%
- In the spotlight, losing IR region: insights from euglenophytes challenge the importance of inverted repeats in the genomes of secondary plastids 94%
Similar papers in this journal
- Correlated evolutionary rates reveal novel components and cross-compartment connectivity in plant proteostasis systems 95%
- Positive selection of a starch synthesis gene and phenotypic differentiation of starch accumulation in symbiotic and free-living coral symbiont dinoflagellate species 94%
- Utilization of cobalamin is ubiquitous in early-branching fungal phyla 93%
Similar papers in this journal
- Respiratory and C4-photosynthetic NAD-malic enzyme coexist in bundle sheath cells mitochondria and evolved via association of differentially adapted subunits 94%
- Comparative genomics of Chlamydomonas 94%
- Tethering ferredoxin-NADP+ reductase to photosystem I promotes photosynthetic cyclic electron transfer 94%
Similar papers in this journal
- Evolution of chlorophyll degradation is associated with plant transition to land 97%
- The evolution of the phenylpropanoid pathway entailed pronounced radiations and divergences of enzyme families 96%
- The Building Blocks of Early Land Plants: Glycosyltransferases and Cell Wall Architecture in the model liverwort Marchantia polymorpha 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.