Assembly and comparative analysis of the complete mitochondrial genome of three Macadamia species (M. integrifolia, M. ternifolia and M. tetraphylla)

基因组 生物 系统发育树 基因 GC含量 植物 线粒体DNA
作者
Yingfeng Niu,Yongjie Lu,Weicai Song,Xiyong He,Ziyan Liu,Cheng Zheng,Shuo Wang,Chao Shi,Jin Liu
标识
DOI:10.1101/2022.01.24.477484
摘要

Background: Macadamia is a true dicotyledonous plant that thrives in a mild, humid, low wind environment. It is cultivated and traded internationally due to its high-quality nuts thus, has significant development prospects and scientific research value. However, information on the genetic resources of Macadamia spp. remains scanty. Results: The mitochondria (mt) genomes of three economically important Macadamia species, Macadamia integrifolia , M. ternifolia and M. tetraphylla , were assembled through the Illumina sequencing platform. The results showed that each species has 71 genes, including 42 protein-coding genes, 26 tRNAs, and 3 rRNAs. Repeated sequence analysis, RNA editing site prediction, and analysis of genes migrating from chloroplast (cp) to mt were performed in the mt genomes of the three Macadamia species. Phylogenetic analysis based on the mt genome of the three Macadamia species and 35 other species was conducted to reveal the evolution and taxonomic status of Macadamia . Furthermore, the characteristics of the plant mt genome, including genome size and GC content, were studied through comparison with 36 other plant species. The final non-synonymous (Ka) and synonymous (Ks) substitution analysis showed that most of the protein-coding genes in the mt genome underwent negative selections, indicating their importance in the mt genome. Conclusion: The findings of this study provide a better understanding of the M acadamia genome and will inform future research on the genus.
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