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通过比较分析确定嗜热蓝藻长链嗜热栖热菌BP-1生活方式变化的决定因素。

Comparative analysis to identify determinants of changing life style in Thermosynechococcus elongatus BP-1, a thermophilic cyanobacterium.

作者信息

Prabha Ratna, Singh Dhananjaya P, Gupta Shailendra K, de Farias Sávio Torres, Rai Anil

机构信息

National Bureau of Agriculturally Important Microorganisms, Indian Council of Agricultural Research, Kushmaur, Maunath Bhanjan 275101, India ; Department of Biotechnology, Mewar University, Gangrar, Chittorgarh, Rajasthan, India.

出版信息

Bioinformation. 2013;9(6):299-308. doi: 10.6026/97320630009299. Epub 2013 Mar 19.

Abstract

A comparative genomics analysis among all forty whole genome sequences available for cyanobacteria (3 thermophiles- Thermosynechococcus elongatus BP-1, Synechococcus sp. JA-2-3B'a (2-13), Synechococcus sp. JA-3-3Ab and 37 mesophiles) was performed to identify genomic and proteomic factors responsible for the behaviour of T. elongatus BP-1, a thermophilic unicellular cyanobacterium with optimum growth temperature [OGT] of 55°C. Majority of genomic and proteomic characteristics for this cyanobacterium indicated contrasting features indicating its mesophilic behaviour while the role of mutational biasness and selection pressure is thought to be responsible for high OGT. Contradictory results were obtained for T. elongatus for synonymous codon usage, CvP-bias and amino acid composition with respect to thermophilic behaviour. Calculated J2 index is lowest among all cyanobacterial genomes. Except for proline and termination codons, T. elongatus showed synonymous codon usage pattern which is expected for mesophiles. Results indicated that among cyanobacterial genomes, majority of genomic and proteomic determinants put T. elongatus very close to mesophiles and the whole genome of this organism represents continuous gain of mesophilic rather than thermophilic behavior.

摘要

对所有四十个可获得的蓝藻全基因组序列(3个嗜热菌——嗜热栖热蓝细菌BP-1、聚球藻属JA-2-3B'a (2-13)、聚球藻属JA-3-3Ab和37个嗜温菌)进行了比较基因组学分析,以确定导致嗜热栖热蓝细菌BP-1行为的基因组和蛋白质组因素,该嗜热单细胞蓝藻的最适生长温度[OGT]为55°C。该蓝藻的大多数基因组和蛋白质组特征显示出对比特征,表明其嗜温行为,而突变偏向性和选择压力的作用被认为是导致高最适生长温度的原因。关于嗜热栖热蓝细菌在同义密码子使用、CvP偏向性和氨基酸组成方面的嗜热行为,得到了相互矛盾的结果。计算得出的J2指数在所有蓝藻基因组中是最低的。除了脯氨酸和终止密码子外,嗜热栖热蓝细菌显示出嗜温菌所预期的同义密码子使用模式。结果表明,在蓝藻基因组中,大多数基因组和蛋白质组决定因素使嗜热栖热蓝细菌与嗜温菌非常接近,并且该生物体的全基因组代表了嗜温行为而非嗜热行为的持续获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/366b/3607189/72b037b88363/97320630009299F1.jpg

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