From Green to Red: Horizontal Gene Transfer of the Phycoerythrin Gene Cluster between Planktothrix Strains

Author:

Tooming-Klunderud Ave1,Sogge Hanne12,Rounge Trine Ballestad13,Nederbragt Alexander J.1,Lagesen Karin1,Glöckner Gernot45,Hayes Paul K.6,Rohrlack Thomas78,Jakobsen Kjetill S.12

Affiliation:

1. University of Oslo, Centre for Ecological and Evolutionary Synthesis (CEES), Department of Biosciences, Oslo, Norway

2. University of Oslo, Microbial Evolution Research Group (MERG), Department of Biosciences, Oslo, Norway

3. Cancer Registry of Norway, Oslo, Norway

4. Institute for Biochemistry I, Medical Faculty, University of Cologne, Cologne, Germany

5. Leibniz Institute of Freshwater Ecology and Inland Fisheries, IGB, Berlin, Germany

6. Faculty of Science, University of Portsmouth, Portsmouth, United Kingdom

7. NIVA, Norwegian Institute for Water Research, Oslo, Norway

8. Norwegian University of Life Sciences, Department of Plant and Environmental Sciences, Ås, Norway

Abstract

ABSTRACT Horizontal gene transfer is common in cyanobacteria, and transfer of large gene clusters may lead to acquisition of new functions and conceivably niche adaption. In the present study, we demonstrate that horizontal gene transfer between closely related Planktothrix strains can explain the production of the same oligopeptide isoforms by strains of different colors. Comparison of the genomes of eight Planktothrix strains revealed that strains producing the same oligopeptide isoforms are closely related, regardless of color. We have investigated genes involved in the synthesis of the photosynthetic pigments phycocyanin and phycoerythrin, which are responsible for green and red appearance, respectively. Sequence comparisons suggest the transfer of a functional phycoerythrin gene cluster generating a red phenotype in a strain that is otherwise more closely related to green strains. Our data show that the insertion of a DNA fragment containing the 19.7-kb phycoerythrin gene cluster has been facilitated by homologous recombination, also replacing a region of the phycocyanin operon. These findings demonstrate that large DNA fragments spanning entire functional gene clusters can be effectively transferred between closely related cyanobacterial strains and result in a changed phenotype. Further, the results shed new light on the discussion of the role of horizontal gene transfer in the sporadic distribution of large gene clusters in cyanobacteria, as well as the appearance of red and green strains.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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