属细菌域的嗜热菌中长线性和支化多胺的分布

K. Hamana, Ryuichi Hosoya, A. Yokota, M. Niitsu, H. Hayashi, T. Itoh
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引用次数: 7

摘要

采用高效液相色谱法和气相色谱法对生长在45 ~ 80℃环境下的44株嗜热真细菌进行了细胞多胺分析。一种季支化五胺,n4 -双(氨丙基)去亚精胺,在氢亚精目和硫酸氢亚精目中发现。在Thermovibrio、Desulfurobacterium (Aquificales)、Moorella、desulsofovirgula (thermoan厌氧细菌)、Thermaerobacter (Clostridiales)、Caldalkalibacillus、Thermobacillus (Bacillales)和Desulfothermus (Proteobacteria门Desulfovibrionales)中均检测到N4-bis(氨基丙基)亚精胺。两支五胺以及线性五胺和六胺是由热目热蝇种产生的。maritoga和Fervidobacterium (Thermotogales)含有线性五胺。这些长多胺的产生依赖于培养温度,在70-80°C的极端/超嗜热菌和在pH 8.5-9.0的碱性培养基中,中等嗜热杆菌的产量显著。在中度嗜热性厌氧菌(绿藻门厌氧菌)中未检测到长多胺。长线性多胺和/或季支多胺在极端/超嗜热生物中的分布也反映在它们的系统进化位置上。
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Distribution of long linear and branched polyamines in the thermophiles belonging to the domain Bacteria
Cellular polyamines of 44 newly validated eubacterial thermophiles growing at 45-80°C, belonging to eight orders (six phyla) of the domain Bacteria, were analyzed by HPLC and GC. A quaternary branched penta-amine, N4-bis(aminopropyl)norspermidine, was found in Hydrogenivirga and Sulfurihydrogenibium belonging to the order of Aquificales. Another quaternary branched penta-amine, N4-bis(aminopropyl) spermidine, was detected in Thermovibrio, Desulfurobacterium (Aquificales), Moorella, Desul-fovirgula (Thermoanaerobacteriales), Thermaerobacter (Clostridiales), Caldalkalibacillus, Thermobacillus (Bacillales), and Desulfothermus (Desulfovibrionales of the phylum Proteobacteria). The two branched penta- amines as well as linear penta- and hexa-amines were produced by Thermus species of the order Thermales. Marinitoga and Fervidobacterium (Thermotogales) contained linear penta-amines. The production of these long polyamines was dependent on culture temperature and remarkable at 70-80°C in the extreme/ hyper-thermophiles and to alkaline medium pH 8.5-9.0 in moderately thermophilic bacilli. The long polyamines were not detected in moderately thermophilic Anaerolinea (Anaerolineales of the phylum Chloroflexi). Distribution of either or both long linear polyamines and/or quaternary branched polyamines in the extreme/hyper-thermophiles is also reflected in their phylogenetical evolved locations.
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