Concerted and birth-and-death evolution of 26S ribosomal DNA in Camellia L.

Author:

Zhang Min12,Tang Yi-Wei2,Xu Ying23,Yonezawa Takahiro4,Shao Yang2,Wang Yu-Guo2,Song Zhi-Ping2,Yang Ji2,Zhang Wen-Ju2

Affiliation:

1. Co-Innovation Center for Sustainable Forestry in Southern China, College of Biology and the Environment, Nanjing Forestry University, Nanjing, China

2. Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, Institute of Biodiversity Science, School of Life Sciences, Fudan University, Shanghai, China

3. Shanghai Railway Entry-Exit Inspection and Quarantine Bureau, Shanghai, China

4. Faculty of Agriculture, Tokyo University of Agriculture, Funako, Atsugi, Kanagawa, Japan

Abstract

Abstract Background and Aims The ribosomal DNA (rDNA) gene family, encoding ribosomal RNA (rRNA), has long been regarded as an archetypal example illustrating the model of concerted evolution. However, controversy is arising, as rDNA in many eukaryotic species has been proved to be polymorphic. Here, a metagenomic strategy was applied to detect the intragenomic polymorphism as well as the evolutionary patterns of 26S rDNA across the genus Camellia. Methods Degenerate primer pairs were designed to amplify the 26S rDNA fragments from different Camellia species. The amplicons were then paired-end sequenced on the Illumina MiSeq platform. Key Results An extremely high level of rDNA polymorphism existed universally in Camellia. However, functional rDNA was still the major component of the family, and was relatively conserved among different Camellia species. Sequence variations mainly came from rRNA pseudogenes and favoured regions that are rich in GC. Specifically, some rRNA pseudogenes have existed in the genome for a long time, and have even experienced several expansion events, which has greatly enriched the abundance of rDNA polymorphism. Conclusions Camellia represents a group in which rDNA is subjected to a mixture of concerted and birth-and-death evolution. Some rRNA pseudogenes may still have potential functions. Conversely, when released from selection constraint, they can evolve in the direction of decreasing GC content and structural stability through a methylation-induced process, and finally be eliminated from the genome.

Funder

National Natural Science Foundation of China

Key Research and Development Program of Guangdong Province

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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4. Search and clustering orders of magnitude faster than BLAST;Edgar;Bioinformatics,2010

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