Distinctive evolutionary pattern of organelle genomes linked to the nuclear genome in Selaginellaceae
Kang, Jong-Soo; Zhang, Hong-Rui; Wang, Ya-Rong; Liang, Si-Qi; Mao, Zhi-Yuan; Zhang, Xian-Chun; Xiang, Qiao-Ping
刊名PLANT JOURNAL
2020
卷号104期号:6页码:1657-1672
关键词Selaginella plastid genome mitochondrial genome genome evolution convergent evolution RecA
ISSN号0960-7412
DOI10.1111/tpj.15028
文献子类Article
英文摘要Plastids and mitochondria are endosymbiotic organelles that store genetic information. The genomes of these organelles generally exhibit contrasting patterns regarding genome architecture and genetic content. However, they have similar genetic features in Selaginellaceae, and little is known about what causes parallel evolution. Here, we document the multipartite plastid genomes (plastomes) and the highly divergent mitochondrial genomes (mitogenomes) from spikemoss obtained by combining short- and long-reads. The 188-kb multipartite plastome has three ribosomal operon copies in the master genomic conformation, creating the alternative subgenomic conformation composed of 110- and 78-kb subgenomes. The long-read data indicated that the two different genomic conformations were present in almost equal proportions in the plastomes of Selaginella nipponica. The mitogenome of S. nipponica was assembled into 27 contigs with a total size of 110 kb. All contigs contained directly arranged repeats at both ends, which introduced multiple conformations. Our results showed that plastomes and mitogenomes share high tRNA losses, GC-biased nucleotides, elevated substitution rates and complicated organization. The exploration of nuclear-encoded organelle DNA replication, recombination and repair proteins indicated that, several single-targeted proteins, particularly plastid-targeted recombinase A1, have been lost in Selaginellaceae; conversely, the dual-targeted proteins remain intact. According to the reported function of recombinase A1, we propose that the plastomes of spikemoss often fail to pair homologous sequences during recombination, and the dual-targeted proteins play a key role in the convergent genetic features of plastomes and mitogenomes. Our results provide a distinctive evolutionary pattern of the organelle genomes in Selaginellaceae and evidence of their convergent evolution.
学科主题Plant Sciences
电子版国际标准刊号1365-313X
出版地HOBOKEN
WOS关键词CHLOROPLAST DNA ; MITOCHONDRIAL GENOME ; INVERTED REPEAT ; PLANT MITOCHONDRIAL ; COMPLETE SEQUENCE ; LINEAR-MOLECULES ; PLASTID GENOMES ; COPY NUMBER ; GENE ; RECOMBINATION
WOS研究方向Plant Sciences
语种英语
出版者WILEY
WOS记录号WOS:000589870500001
资助机构National Science Foundation of ChinaNational Natural Science Foundation of China (NSFC) [31770237, 31670205]
内容类型期刊论文
源URL[http://ir.ibcas.ac.cn/handle/2S10CLM1/21520]  
专题系统与进化植物学国家重点实验室
作者单位1.Chinese Acad Sci, Inst Bot, Photosynth Res Ctr, Key Lab Photobiol, Beijing 100093, Peoples R China
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
3.Chinese Acad Sci, Inst Bot, State Key Lab Systemat & Evolutionary Bot, Beijing 100093, Peoples R China
4.Liang, Si-Qi
5.Zhang, Xian-Chun
6.Wang, Ya-Rong
7.Zhang, Hong-Rui
8.[Kang, Jong-Soo
推荐引用方式
GB/T 7714
Kang, Jong-Soo,Zhang, Hong-Rui,Wang, Ya-Rong,et al. Distinctive evolutionary pattern of organelle genomes linked to the nuclear genome in Selaginellaceae[J]. PLANT JOURNAL,2020,104(6):1657-1672.
APA Kang, Jong-Soo.,Zhang, Hong-Rui.,Wang, Ya-Rong.,Liang, Si-Qi.,Mao, Zhi-Yuan.,...&Xiang, Qiao-Ping.(2020).Distinctive evolutionary pattern of organelle genomes linked to the nuclear genome in Selaginellaceae.PLANT JOURNAL,104(6),1657-1672.
MLA Kang, Jong-Soo,et al."Distinctive evolutionary pattern of organelle genomes linked to the nuclear genome in Selaginellaceae".PLANT JOURNAL 104.6(2020):1657-1672.
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