Horizontal Gene Transfer and Fusion Spread Carotenogenesis Among Diverse Heterotrophic Protists

Author:

Rius Mariana1ORCID,Rest Joshua S2ORCID,Filloramo Gina V3,Novák Vanclová Anna M G45,Archibald John M3ORCID,Collier Jackie L1ORCID

Affiliation:

1. School of Marine and Atmospheric Sciences, Stony Brook University

2. Department of Ecology and Evolution, Stony Brook University

3. Department of Biochemistry and Molecular Biology, Dalhousie University , Halifax, Nova Scotia , Canada

4. Faculty of Science, Charles University, BIOCEV , Vestec , Czechia

5. Present address: Institut de Biologie de l'École Normale Supérieure , Paris 75005 , France

Abstract

AbstractThraustochytrids (phylum: Labyrinthulomycota) are nonphotosynthetic marine protists. Some thraustochytrids have crtIBY, a trifunctional fusion gene encoding a protein capable of β-carotene biosynthesis from geranylgeranyl pyrophosphate. Here we show that crtIBY is essential in, and encodes the sole pathway for, carotenoid biosynthesis in the thraustochytrid Aurantiochytrium limacinum ATCC MYA-1381. We explore the evolutionary origins of CrtIBY and discover that the closest related protein domains are present in a small but diverse group of other heterotrophic protists, including the apusomonad Thecamonas trahens and the dinoflagellates Oxyrrhis marina and Noctiluca scintillans. Each organism within this cluster also contains one or more β-carotene 15-15′ oxygenase genes (blh and rpe65), suggesting that the acquisition of β-carotene biosynthesis genes may have been related to the production of retinal. Our findings support a novel origin of eukaryotic (apo)carotenoid biosynthesis by horizontal gene transfer from Actinobacteria, Bacteroidetes, and/or Archaea. This reveals a remarkable case of parallel evolution of eukaryotic (apo)carotenogenesis in divergent protistan lineages by repeated gene transfers.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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