Summer Elizabeth J, Gonzalez Carlos F, Bomer Morgan, Carlile Thomas, Embry Addie, Kucherka Amalie M, Lee Jonte, Mebane Leslie, Morrison William C, Mark Louise, King Maria D, LiPuma John J, Vidaver Anne K, Young Ry
Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843-2128, USA.
J Bacteriol. 2006 Jan;188(1):255-68. doi: 10.1128/JB.188.1.255-268.2006.
We have determined the genomic sequences of four virulent myophages, Bcep1, Bcep43, BcepB1A, and Bcep781, whose hosts are soil isolates of the Burkholderia cepacia complex. Despite temporal and spatial separations between initial isolations, three of the phages (Bcep1, Bcep43, and Bcep781, designated the Bcep781 group) exhibit 87% to 99% sequence identity to one another and most coding region differences are due to synonymous nucleotide substitutions, a hallmark of neutral genetic drift. Phage BcepB1A has a very different genome organization but is clearly a mosaic with respect to many of the genes of the Bcep781 group, as is a defective prophage element in Photorhabdus luminescens. Functions were assigned to 27 out of 71 predicted genes of Bcep1 despite extreme sequence divergence. Using a lambda repressor fusion technique, 10 Bcep781-encoded proteins were identified for their ability to support homotypic interactions. While head and tail morphogenesis genes have retained canonical gene order despite extreme sequence divergence, genes involved in DNA metabolism and host lysis are not organized as in other phages. This unusual genome arrangement may contribute to the ability of the Bcep781-like phages to maintain a unified genomic type. However, the Bcep781 group phages can also engage in lateral gene transfer events with otherwise unrelated phages, a process that contributes to the broader-scale genomic mosaicism prevalent among the tailed phages.
我们已经确定了四种烈性肌噬菌体Bcep1、Bcep43、BcepB1A和Bcep781的基因组序列,其宿主是洋葱伯克霍尔德菌复合体的土壤分离株。尽管最初分离的时间和空间不同,但其中三种噬菌体(Bcep1、Bcep43和Bcep781,称为Bcep781组)彼此之间的序列同一性为87%至99%,并且大多数编码区差异是由于同义核苷酸取代,这是中性遗传漂变的一个标志。噬菌体BcepB1A具有非常不同的基因组组织,但就Bcep781组的许多基因而言,它显然是一个镶嵌体,发光杆菌中的一个缺陷前噬菌体元件也是如此。尽管序列差异极大,但Bcep1的71个预测基因中有27个被赋予了功能。使用λ阻遏物融合技术,鉴定了10种Bcep781编码的蛋白质支持同型相互作用的能力。尽管序列差异极大,但头部和尾部形态发生基因仍保留了典型的基因顺序,参与DNA代谢和宿主裂解的基因不像其他噬菌体那样组织。这种不寻常的基因组排列可能有助于Bcep781样噬菌体维持统一基因组类型的能力。然而,Bcep781组噬菌体也可以与其他不相关的噬菌体进行横向基因转移事件,这一过程导致了尾噬菌体中普遍存在的更广泛的基因组镶嵌现象。