How did a duplicated gene copy evolve into a restorer-of-fertility gene in a plant? The case of Oma1

Author:

Arakawa Takumi1,Sugaya Hajime1,Katsuyama Takaya1,Honma Yujiro12,Matsui Katsunori1,Matsuhira Hiroaki3,Kuroda Yosuke3,Kitazaki Kazuyoshi1,Kubo Tomohiko1ORCID

Affiliation:

1. Research Faculty of Agriculture, Hokkaido University, Sapporo, Hokkaido 060-8589, Japan

2. Department of Biotechnology and Environmental Chemistry, Kitami Institute of Technology, Kitami, Hokkaido 090-8507, Japan

3. Hokkaido Agricultural Research Center, National Agriculture and Food Research Organization, Memuro, Hokkaido 082-0081, Japan

Abstract

Restorer-of-fertility ( Rf ) is a suppressor of cytoplasmic male sterility (CMS), a mitochondrion-encoded trait that has been reported in many plant species. The occurrence of CMS is considered to be independent in each lineage; hence, the question of how Rf evolved was raised. Sugar beet Rf resembles Oma1 , a gene for quality control of the mitochondrial inner membrane. Oma1 homologues comprise a small gene family in the sugar beet genome, unlike Arabidopsis and other eukaryotes. The sugar beet sequence that best matched Arabidopsis atOma1 was named bvOma1 ; sugar beet Rf ( RF1-Oma1 ) was another member. During anther development, atOma1 mRNA was detected from the tetrad to the microspore stages, whereas bvOma1 mRNA was detected at the microspore stage and RF1-Oma1 mRNA was detected during the meiosis and tetrad stages. A transgenic study revealed that, whereas RF1-Oma1 can bind to a CMS-specific protein and alter the higher-order structure of the CMS-specific protein complex, neither bvOma1 nor atOma1 show such activity. We favour the hypothesis that an ancestral Oma1 gene duplicated to form a small gene family, and that one of the copies evolved and acquired a novel expression pattern and protein function as an Rf , i.e. RF1-Oma1 evolved via neofunctionalization.

Funder

NARO Bio-oriented Technology Research Advancement Institution

Japan Society for the Promotion of Science

Publisher

The Royal Society

Subject

Multidisciplinary

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