Origin of minicircular mitochondrial genomes in red algae

Author:

Lee YongsungORCID,Cho Chung HyunORCID,Noh ChanyoungORCID,Yang Ji Hyun,Park Seung In,Lee Yu Min,West John A.,Bhattacharya Debashish,Jo KyubongORCID,Yoon Hwan SuORCID

Abstract

AbstractEukaryotic organelle genomes are generally of conserved size and gene content within phylogenetic groups. However, significant variation in genome structure may occur. Here, we report that the Stylonematophyceae red algae contain multipartite circular mitochondrial genomes (i.e., minicircles) which encode one or two genes bounded by a specific cassette and a conserved constant region. These minicircles are visualized using fluorescence microscope and scanning electron microscope, proving the circularity. Mitochondrial gene sets are reduced in these highly divergent mitogenomes. Newly generated chromosome-level nuclear genome assembly of Rhodosorus marinus reveals that most mitochondrial ribosomal subunit genes are transferred to the nuclear genome. Hetero-concatemers that resulted from recombination between minicircles and unique gene inventory that is responsible for mitochondrial genome stability may explain how the transition from typical mitochondrial genome to minicircles occurs. Our results offer inspiration on minicircular organelle genome formation and highlight an extreme case of mitochondrial gene inventory reduction.

Funder

National Research Foundation of Korea

Ministry of Oceans and Fisheries

United States Department of Agriculture | National Institute of Food and Agriculture

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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