State Key Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology, State Key Laboratory of Ocean Engineering, Shanghai Jiao Tong University, Shanghai, People's Republic of China.
Appl Environ Microbiol. 2013 Nov;79(22):7101-9. doi: 10.1128/AEM.01675-13. Epub 2013 Sep 13.
Low-temperature ecosystems represent the largest biosphere on Earth, and yet our understanding of the roles of bacteriophages in these systems is limited. Here, the influence of the cold-active filamentous phage SW1 on the phenotype and gene transcription of its host, Shewanella piezotolerans WP3 (WP3), was investigated by construction of a phage-free strain (WP3ΔSW1), which was compared with the wild-type strain. The expression of 49 genes, including 16 lateral flagellar genes, was found to be significantly influenced by SW1 at 4°C, as demonstrated by comparative whole-genome microarray analysis. WP3ΔSW1 was shown to have a higher production of lateral flagella than WP3 and enhanced swarming motility when cultivated on solid agar plates. Besides, SW1 has a remarkable impact on the expression of a variety of host genes in liquid culture, particularly the genes related to the membrane and to the production of lateral flagella. These results suggest that the deep-sea bacterium WP3 might balance the high-energy demands of phage maintenance and swarming motility at low temperatures. The phage SW1 is shown to have a significant influence on the swarming ability of the host and thus may play an important role in adjusting the fitness of the cells in the deep-sea environment.
低温生态系统代表了地球上最大的生物圈,但我们对噬菌体在这些系统中的作用的理解还很有限。在这里,通过构建噬菌体缺失株(WP3ΔSW1),研究了冷活性丝状噬菌体 SW1 对其宿主 Shewanella piezotolerans WP3(WP3)表型和基因转录的影响,并将其与野生型菌株进行了比较。通过比较全基因组微阵列分析,发现 49 个基因(包括 16 个侧鞭毛基因)的表达受到 SW1 的显著影响。结果表明,WP3ΔSW1 比 WP3 产生更多的侧鞭毛,并在固体琼脂平板上增强了泳动运动。此外,SW1 对液体培养中多种宿主基因的表达有显著影响,特别是与膜和侧鞭毛产生有关的基因。这些结果表明,深海细菌 WP3 可能在低温下平衡噬菌体维持和泳动运动的高能量需求。噬菌体 SW1 对宿主的泳动能力有显著影响,因此可能在调节深海环境中细胞的适应性方面发挥重要作用。