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嗜蓝藻菌PCC 7421(一种缺乏类囊体的蓝细菌)的完整基因组结构

Complete genome structure of Gloeobacter violaceus PCC 7421, a cyanobacterium that lacks thylakoids.

作者信息

Nakamura Yasukazu, Kaneko Takakazu, Sato Shusei, Mimuro Mamoru, Miyashita Hideaki, Tsuchiya Tohru, Sasamoto Shigemi, Watanabe Akiko, Kawashima Kumiko, Kishida Yoshie, Kiyokawa Chiaki, Kohara Mitsuyo, Matsumoto Midori, Matsuno Ai, Nakazaki Naomi, Shimpo Sayaka, Takeuchi Chie, Yamada Manabu, Tabata Satoshi

机构信息

Kazusa DNA Research Institute, 2-6-7 Kazusa-kamatari, Kisarazu, Chiba 292-0818, Japan.

出版信息

DNA Res. 2003 Aug 31;10(4):137-45. doi: 10.1093/dnares/10.4.137.

Abstract

The nucleotide sequence of the entire genome of a cyanobacterium Gloeobacter violaceus PCC 7421 was determined. The genome of G. violaceus was a single circular chromosome 4,659,019 bp long with an average GC content of 62%. No plasmid was detected. The chromosome comprises 4430 potential protein-encoding genes, one set of rRNA genes, 45 tRNA genes representing 44 tRNA species and genes for tmRNA, B subunit of RNase P, SRP RNA and 6Sa RNA. Forty-one percent of the potential protein-encoding genes showed sequence similarity to genes of known function, 37% to hypothetical genes, and the remaining 22% had no apparent similarity to reported genes. Comparison of the assigned gene components with those of other cyanobacteria has unveiled distinctive features of the G. violaceus genome. Genes for PsaI, PsaJ, PsaK, and PsaX for Photosystem I and PsbY, PsbZ and Psb27 for Photosystem II were missing, and those for PsaF, PsbO, PsbU, and PsbV were poorly conserved. cpcG for a rod core linker peptide for phycobilisomes and nblA related to the degradation of phycobilisomes were also missing. Potential signal peptides of the presumptive products of petJ and petE for soluble electron transfer catalysts were less conserved than the remaining portions. These observations may be related to the fact that photosynthesis in G. violaceus takes place not in thylakoid membranes but in the cytoplasmic membrane. A large number of genes for sigma factors and transcription factors in the LuxR, LysR, PadR, TetR, and MarR families could be identified, while those for major elements for circadian clock, kaiABC were not found. These differences may reflect the phylogenetic distance between G. violaceus and other cyanobacteria.

摘要

测定了蓝藻聚球藻7421(Gloeobacter violaceus PCC 7421)全基因组的核苷酸序列。聚球藻的基因组是一条长度为4,659,019 bp的单环染色体,平均GC含量为62%。未检测到质粒。该染色体包含4430个潜在的蛋白质编码基因、一组rRNA基因、代表44种tRNA种类的45个tRNA基因以及tmRNA、核糖核酸酶P的B亚基、信号识别颗粒RNA和6Sa RNA的基因。41%的潜在蛋白质编码基因与已知功能的基因具有序列相似性,37%与假定基因相似,其余22%与已报道基因无明显相似性。将已确定的基因组分与其他蓝藻的进行比较,揭示了聚球藻基因组的独特特征。光系统I的PsaI、PsaJ、PsaK和PsaX基因以及光系统II的PsbY、PsbZ和Psb27基因缺失,PsaF、PsbO、PsbU和PsbV基因的保守性较差。藻胆体杆状核心连接肽的cpcG基因和与藻胆体降解相关的nblA基因也缺失。可溶性电子传递催化剂petJ和petE推定产物的潜在信号肽的保守性低于其余部分。这些观察结果可能与聚球藻的光合作用不是发生在类囊体膜而是发生在细胞质膜这一事实有关。可以鉴定出大量属于LuxR、LysR、PadR、TetR和MarR家族的sigma因子和转录因子基因,而未发现昼夜节律钟主要元件kaiABC的基因。这些差异可能反映了聚球藻与其他蓝藻之间的系统发育距离。

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