New Insights into the Evolutionary History of Type 1 Rhodopsins |
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Authors: | Mario?X.?Ruiz-González,Ignacio?Marín mailto:ignacio.marin@uv.es" title=" ignacio.marin@uv.es" itemprop=" email" data-track=" click" data-track-action=" Email author" data-track-label=" " >Email author |
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Affiliation: | (1) Departamento de Genética, Universidad de Valencia, Calle Doctor Moliner 50, Burjassot 46100, Valencia, Spain;(2) Department of Zoology, Trinity College, Dublin, Ireland |
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Abstract: | Type 1 (archaeal) rhodopsins and related rhodopsin-like proteins had been described in a few halophile archaea, -proteobacteria, a single cyanobacteria, some fungi, and a green alga. In exhaustive database searches, we detected rhodopsin-related sequences derived not only from additional fungal species but also from organisms belonging to three groups in which opsins had hitherto not been described: the -proteobacterium Magnetospirillum magnetotacticum, the cryptomonad alga Guillardia theta, and the dinoflagellate Pyrocystis lunula. Putative plant and human type 1 rhodopsin sequences found in the databases are demonstrated to be contaminants of fungal origin. However, a highly diverged sequence supposedly from the plant Oryza sativa was found that is, together with the Pyrocystis sequence, quite similar to -proteobacterial rhodopsins. These close relationships suggest that at least one horizontal gene transfer event involving rhodopsin genes occurred between prokaryotes and eukaryotes. Alternative hypotheses to explain the current phylogenetic range of type 1 rhodopsins are suggested. The broader phylogenetic range found is compatible with an ancient origin of type 1 rhodopsins, their patchy distribution being caused by losses in multiple lineages. However, the possibility of ancient horizontal transfer events between distant relatives cannot be dismissed. |
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Keywords: | Rhodopsin Cryptomonad Dinoflagellate Horizontal transfer |
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