Zhan Yuanchao, Buchan Alison, Chen Feng
Institute of Marine and Environmental Technology, University of Maryland Center for Environmental Science, Baltimore, Maryland, USA.
Department of Microbiology, University of Tennessee, Knoxville, Tennessee, USA.
Appl Environ Microbiol. 2015 Aug;81(15):5196-202. doi: 10.1128/AEM.00832-15. Epub 2015 May 29.
Coliphage N4 is a lytic bacteriophage discovered nearly half a century ago, and it was considered to be a "genetic orphan" until very recently, when several additional N4-like phages were discovered to infect nonenteric bacterial hosts. Interest in this genus of phages is stimulated by their unique genetic features and propagation strategies. To better understand the ecology of N4-like phages, we investigated the diversity and geographic patterns of N4-like phages by examining 56 Chesapeake Bay viral communities, using a PCR-clone library approach targeting a diagnostic N4-like DNA polymerase gene. Many new lineages of N4-like phages were found in the bay, and their genotypes shift from the lower to the upper bay. Interestingly, signature sequences of N4-like phages were recovered only from winter month samples, when water temperatures were below 4°C. An analysis of existing metagenomic libraries from various aquatic environments supports the hypothesis that N4-like phages are most prolific in colder waters. In particular, a high number of N4-like phages were detected in Organic Lake, Antarctica, a cold and hypersaline system. The prevalence of N4-like phages in the cold biosphere suggests these viruses possess yet-to-be-determined mechanisms that facilitate lytic infections under cold conditions.
大肠杆菌噬菌体N4是近半个世纪前发现的一种烈性噬菌体,直到最近发现了几种额外的感染非肠道细菌宿主的N4样噬菌体之前,它一直被视为“基因孤儿”。这类噬菌体独特的遗传特征和繁殖策略激发了人们对它们的兴趣。为了更好地了解N4样噬菌体的生态,我们采用针对诊断性N4样DNA聚合酶基因的PCR克隆文库方法,通过检测56个切萨皮克湾病毒群落,研究了N4样噬菌体的多样性和地理分布模式。在该海湾发现了许多新的N4样噬菌体谱系,其基因型从海湾下游向上游转变。有趣的是,仅从水温低于4°C的冬季月份样本中回收了N4样噬菌体的特征序列。对来自各种水生环境的现有宏基因组文库的分析支持了这样一种假设,即N4样噬菌体在较冷的水域中最为丰富。特别是,在南极的有机湖(一个寒冷且高盐的系统)中检测到了大量的N4样噬菌体。N4样噬菌体在寒冷生物圈中的普遍存在表明,这些病毒拥有尚未确定的机制,可在寒冷条件下促进裂解感染。