The Sainsbury Laboratory, University of Cambridge, Cambridge, CB2 1LR, UK.
School of Biosciences, University of Birmingham, Birmingham, B15 2TT, UK.
Nat Commun. 2018 Dec 13;9(1):5308. doi: 10.1038/s41467-018-07775-w.
The propensity of viruses to acquire genetic material from relatives and possibly from infected hosts makes them excellent candidates as vectors for horizontal gene transfer. However, virus-mediated acquisition of host genetic material, as deduced from historical events, appears to be rare. Here, we report spontaneous and surprisingly efficient generation of hybrid virus/host DNA molecules in the form of minicircles during infection of Beta vulgaris by Beet curly top Iran virus (BCTIV), a single-stranded DNA virus. The hybrid minicircles replicate, become encapsidated into viral particles, and spread systemically throughout infected plants in parallel with the viral infection. Importantly, when co-infected with BCTIV, B. vulgaris DNA captured in minicircles replicates and is transcribed in other plant species that are sensitive to BCTIV infection. Thus, we have likely documented in real time the initial steps of a possible path of virus-mediated horizontal transfer of chromosomal DNA between plant species.
病毒从亲缘病毒或可能从受感染的宿主获取遗传物质的倾向,使它们成为水平基因转移的理想载体。然而,根据历史事件推断,病毒介导的宿主遗传物质的获取似乎很少见。在这里,我们报告了在感染甜菜曲顶病毒(BCTIV)时,以微小环的形式自发且令人惊讶地高效生成杂交病毒/宿主 DNA 分子的情况。这些杂交微小环会进行复制,并被包装到病毒粒子中,与病毒感染一起在受感染的植物中进行系统传播。重要的是,当与 BCTIV 共同感染时,微小环中捕获的 B. vulgaris DNA 会进行复制,并在对 BCTIV 感染敏感的其他植物物种中转录。因此,我们可能实时记录了病毒介导的不同植物物种间染色体 DNA 水平转移的可能途径的初始步骤。