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嗜冷性丁香假单胞菌中的顺反异构酶基因在生长期间以及温度和溶剂胁迫条件下持续表达。

Cis-trans isomerase gene in psychrophilic Pseudomonas syringae is constitutively expressed during growth and under conditions of temperature and solvent stress.

作者信息

Kiran Madanahally D, Annapoorni Sampath, Suzuki Iwane, Murata Norio, Shivaji Sisinthy

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, 500 007, India.

出版信息

Extremophiles. 2005 Apr;9(2):117-25. doi: 10.1007/s00792-005-0435-6. Epub 2005 Mar 4.

Abstract

In a recent study, we established that psychrophilic Pseudomonas syringae (Lz4W) requires trans-monounsaturated fatty acid for growth at higher temperatures (Kiran et al. in Extremophiles, 2004). It was also demonstrated that the cti gene was highly conserved and exhibited high sequence identity with cti of other Pseudomonas spp. (Kiran et al. in Extremophiles, 2004). Therefore it would be interesting to understand the expression of the cti gene so as to unravel the molecular basis of adaptation of microorganisms to high temperature. In the present study, the expression of cti was monitored by RT-PCR analysis during different growth stages and under conditions of high temperature and solvent stress in P. syringae. Results indicated that the cti gene is constitutively expressed during different stages of growth and the transcript level is unaltered even under conditions of temperature and solvent stress implying that the observed increase in trans-monounsaturated fatty acids (Kiran et al. in Extremophiles, 2004) is not under transcriptional control. A putative promoter present in the intergenic region of the metH and cti gene has also been characterized. The translation start site ATG, the Shine-Dalgarno sequence AGGA and the transcription start site "C" were also identified. These results provide evidence for the first time that the cti gene is constitutively expressed under normal conditions of growth and under conditions of temperature and solvent stress thus implying that the Cti enzyme is post-transcriptionally regulated.

摘要

在最近的一项研究中,我们确定嗜冷丁香假单胞菌(Lz4W)在较高温度下生长需要反式单不饱和脂肪酸(基兰等人,《极端微生物》,2004年)。研究还表明,cti基因高度保守,与其他假单胞菌属的cti具有高度的序列同一性(基兰等人,《极端微生物》,2004年)。因此,了解cti基因的表达情况以揭示微生物适应高温的分子基础将是很有趣的。在本研究中,通过RT-PCR分析监测了丁香假单胞菌在不同生长阶段以及高温和溶剂胁迫条件下cti的表达。结果表明,cti基因在生长的不同阶段组成性表达,即使在温度和溶剂胁迫条件下转录水平也未改变,这意味着观察到的反式单不饱和脂肪酸增加(基兰等人,《极端微生物》,2004年)不受转录控制。还对metH和cti基因基因间区域中存在的一个推定启动子进行了表征。还确定了翻译起始位点ATG、Shine-Dalgarno序列AGGA和转录起始位点“C”。这些结果首次提供了证据,表明cti基因在正常生长条件以及温度和溶剂胁迫条件下组成性表达,因此意味着Cti酶是转录后调控的。

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