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氯线粒体CU:细胞器基因组中的密码子模式在功能基因组学和进化应用中的研究

ChloroMitoCU: Codon patterns across organelle genomes for functional genomics and evolutionary applications.

作者信息

Sablok Gaurav, Chen Ting-Wen, Lee Chi-Ching, Yang Chi, Gan Ruei-Chi, Wegrzyn Jill L, Porta Nicola L, Nayak Kinshuk C, Huang Po-Jung, Varotto Claudio, Tang Petrus

机构信息

Department of Biodiversity and Molecular Ecology, Research and Innovation Centre, Fondazione Edmund Mach, Via E. Mach 1, 38010 S. Michele all'Adige (TN), Italy.

Bioinformatics Core Laboratory, Molecular Medicine Research Center, Chang Gung University, Kweishan, Taoyuan 333, Taiwan.

出版信息

DNA Res. 2017 Jun 1;24(3):327-332. doi: 10.1093/dnares/dsw044.

Abstract

Organelle genomes are widely thought to have arisen from reduction events involving cyanobacterial and archaeal genomes, in the case of chloroplasts, or α-proteobacterial genomes, in the case of mitochondria. Heterogeneity in base composition and codon preference has long been the subject of investigation of topics ranging from phylogenetic distortion to the design of overexpression cassettes for transgenic expression. From the overexpression point of view, it is critical to systematically analyze the codon usage patterns of the organelle genomes. In light of the importance of codon usage patterns in the development of hyper-expression organelle transgenics, we present ChloroMitoCU, the first-ever curated, web-based reference catalog of the codon usage patterns in organelle genomes. ChloroMitoCU contains the pre-compiled codon usage patterns of 328 chloroplast genomes (29,960 CDS) and 3,502 mitochondrial genomes (49,066 CDS), enabling genome-wide exploration and comparative analysis of codon usage patterns across species. ChloroMitoCU allows the phylogenetic comparison of codon usage patterns across organelle genomes, the prediction of codon usage patterns based on user-submitted transcripts or assembled organelle genes, and comparative analysis with the pre-compiled patterns across species of interest. ChloroMitoCU can increase our understanding of the biased patterns of codon usage in organelle genomes across multiple clades. ChloroMitoCU can be accessed at: http://chloromitocu.cgu.edu.tw/.

摘要

人们普遍认为,细胞器基因组起源于涉及叶绿体的蓝细菌基因组和古细菌基因组,或线粒体的α-变形菌基因组的简化事件。碱基组成和密码子偏好的异质性长期以来一直是从系统发育畸变到转基因表达过表达盒设计等各种主题的研究对象。从过表达的角度来看,系统分析细胞器基因组的密码子使用模式至关重要。鉴于密码子使用模式在高表达细胞器转基因开发中的重要性,我们推出了ChloroMitoCU,这是首个精心策划的基于网络的细胞器基因组密码子使用模式参考目录。ChloroMitoCU包含328个叶绿体基因组(29,960个编码序列)和3,502个线粒体基因组(49,066个编码序列)的预编译密码子使用模式,能够对物种间的密码子使用模式进行全基因组探索和比较分析。ChloroMitoCU允许对细胞器基因组的密码子使用模式进行系统发育比较,根据用户提交的转录本或组装的细胞器基因预测密码子使用模式,并与感兴趣物种的预编译模式进行比较分析。ChloroMitoCU可以增进我们对多个进化枝细胞器基因组中密码子使用偏差模式的理解。可通过以下网址访问ChloroMitoCU:http://chloromitocu.cgu.edu.tw/

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b174/5499650/3932daf080fe/dsw044f1.jpg

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