Choi Seong Yeol, Kim Sooyeon, Lyuck Sungsoo, Kim Seung Bum, Mitchell Robert J
School of Life Sciences, Department of Biological Sciences, Ulsan National Institute of Science and Technology, Ulsan, S. Korea.
School of Life Sciences, Chungnam National University, Daejeon, S. Korea.
Sci Rep. 2015 Oct 22;5:15598. doi: 10.1038/srep15598.
A violacein-producing bacterial strain was isolated and identified as a relative of Duganella violaceinigra YIM 31327 based upon phylogenetic analyses using the 16S rRNA, gyrB and vioA gene sequences and a fatty acid methyl ester (FAME) analysis. This new strain was designated D. violaceinigra str. NI28. Although these two strains appear related based upon these analyses, the new isolate was phenotypically different from the type strain as it grew 25% faster on nutrient media and produced 45-fold more violacein. When compared with several other violacein producing strains, including Janthinobacterium lividum, D. violaceinigra str. NI28 was the best violacein producer. For instance, the crude violacein yield with D. violaceinigra str. NI28 was 6.0 mg/OD at 24 hours, a value that was more than two-fold higher than all the other strains. Finally, the antibacterial activity of D. violaceinigra str. NI28 crude violacein was assayed using several multidrug resistant Staphylococcus aureus. Addition of 30 μM crude violacein led to a 96% loss in the initial S. aureus population while the minimum inhibitory concentration was 1.8 μM. Consequently, this novel isolate represents a phenotypic variant of D. violaceinigra capable of producing much greater quantities of crude violacein, an antibiotic effective against multidrug resistant S. aureus.
通过使用16S rRNA、gyrB和vioA基因序列进行系统发育分析以及脂肪酸甲酯(FAME)分析,分离出了一株产紫菌素的细菌菌株,并鉴定其为紫黑杜氏菌YIM 31327的亲缘菌株。这一新菌株被命名为紫黑杜氏菌菌株NI28。尽管基于这些分析这两个菌株似乎有亲缘关系,但新分离株在表型上与模式菌株不同,因为它在营养培养基上生长速度快25%,并且产生的紫菌素多45倍。与其他几种产紫菌素的菌株(包括淡紫紫杆菌)相比,紫黑杜氏菌菌株NI28是最佳的紫菌素生产者。例如,紫黑杜氏菌菌株NI28在24小时时的粗紫菌素产量为6.0毫克/光密度,该值比所有其他菌株高出两倍多。最后,使用几种耐多药金黄色葡萄球菌测定了紫黑杜氏菌菌株NI28粗紫菌素的抗菌活性。添加30μM粗紫菌素导致初始金黄色葡萄球菌数量减少96%,而最低抑菌浓度为1.8μM。因此,这种新分离株代表了一种能够产生大量粗紫菌素的紫黑杜氏菌表型变体,粗紫菌素是一种对耐多药金黄色葡萄球菌有效的抗生素。