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Lax, G.

Publications and source records attributed to Lax, G..

2 recordsLinked to original sources

Phylogenomic placement and morphological description of a novel phagotrophic euglenid from Hawaii: Hokulea waialensis n. gen. et sp.

Euglenids are a diverse group of flagellated protists that include phagotrophic, osmotrophic, and phototrophic lineages. Understanding the phylogenetic relationships of phagotrophic euglenids is crucial in understanding euglenid evolution as a whole. Yet many relationships within euglenids remain unclear, and further resolution requires extensive sampling, particularly from the deep-branching, paraphyletic group known as ploeotids. Improved resolution of evolutionary relationships among ploeotid taxa is necessary to elucidate the origin and diversification of complex ultrastructural traits (e.g., pellicle, feeding apparatus). Here, we isolated, cultivated and characterized a novel ploeotid species named Hokulea waialensis n. gen. et sp. using light and scanning electron microscopy, single-cell sequencing, and phylogenomic analyses. This new species is relatively small (10-12 {micro}m long) compared to related euglenids, and shares several morphological traits with related species of Alistosa. Both single and multigene phylogenetic reconstructions from single amplified genome data show that Hokulea waialensis n. gen. et sp. is closely related to several environmental small subunit ribosomal DNA (SSU rDNA) sequences, and more broadly to Lentomonas and Decastava.

evolutionary biology↗

Phylogenetic position and mitochondrial genome evolution of 'orphan' eukaryotic lineages

The phylogenetic tree of eukaryotes is divided into a handful of highly diverse supergroups; only a few so-called orphan lineages branch in uncertain positions outside of these large clades. We found that the mitochondrial genome of one such lineage, the telonemids, is considerably gene-rich, a feature observed in other orphans as well, raising the possibility that these organisms share a common history. On the contrary, our phylogenomic analyses show that orphans with gene-rich mitochondria branch into two different positions: telonemids actually belong to the established supergroup Haptista, while provorans and meteorids form a strongly supported clade with hemimastigophorans, in a novel ancient supergroup that we dub here Promethea. Comparative genomics shows that this split reflects differences between mitochondrial gene sets. Thanks to the increased number of available representatives analyzed together, our results further simplify and illuminate the evolutionary relationships between eukaryotes.

microbiology↗