Ogembo Javier Gordon, Caoili Barbara L, Shikata Masamitsu, Chaeychomsri Sudawan, Kobayashi Michihiro, Ikeda Motoko
Laboratory of Biodynamics, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.
Virus Genes. 2009 Oct;39(2):261-72. doi: 10.1007/s11262-009-0389-3.
A newly cloned Helicoverpa armigera nucleopolyhedrovirus (HearNPV) from Kenya, HearNPV-NNg1, has a higher insecticidal activity than HearNPV-G4, which also exhibits lower insecticidal activity than HearNPV-C1. In the search for genes and/or nucleotide sequences that might be involved in the observed virulence differences among Helicoverpa spp. NPVs, the entire genome of NNg1 was sequenced and compared with previously sequenced genomes of G4, C1 and Helicoverpa zea single-nucleocapsid NPV (Hz). The NNg1 genome was 132,425 bp in length, with a total of 143 putative open reading frames (ORFs), and shared high levels of overall amino acid and nucleotide sequence identities with G4, C1 and Hz. Three NNg1 ORFs, ORF5, ORF100 and ORF124, which were shared with C1, were absent in G4 and Hz, while NNg1 and C1 were missing a homologue of G4/Hz ORF5. Another three ORFs, ORF60 (bro-b), ORF119 and ORF120, and one direct repeat sequence (dr) were unique to NNg1. Relative to the overall nucleotide sequence identity, lower sequence identities were observed between NNg1 hrs and the homologous hrs in the other three Helicoverpa spp. NPVs, despite containing the same number of hrs located at essentially the same positions on the genomes. Differences were also observed between NNg1 and each of the other three Helicoverpa spp. NPVs in the diversity of bro genes encoded on the genomes. These results indicate several putative genes and nucleotide sequences that may be responsible for the virulence differences observed among Helicoverpa spp., yet the specific genes and/or nucleotide sequences responsible have not been identified.
从肯尼亚新克隆的棉铃虫核型多角体病毒(HearNPV),即HearNPV-NNg1,其杀虫活性高于HearNPV-G4,而HearNPV-G4的杀虫活性也低于HearNPV-C1。为了寻找可能与棉铃虫属核型多角体病毒(NPVs)间观察到的毒力差异相关的基因和/或核苷酸序列,对NNg1的全基因组进行了测序,并与先前测序的G4、C1以及玉米棉铃虫单粒包埋核型多角体病毒(Hz)的基因组进行了比较。NNg1基因组长度为132,425 bp,共有143个推定的开放阅读框(ORFs),与G4、C1和Hz在总体氨基酸和核苷酸序列同一性上具有较高水平。NNg1的三个ORFs,即ORF5、ORF100和ORF124,与C1共有,而在G4和Hz中不存在,同时NNg1和C1缺少G4/Hz ORF5的同源物。另外三个ORFs,即ORF60(bro-b)、ORF119和ORF120,以及一个直接重复序列(dr)是NNg1特有的。相对于总体核苷酸序列同一性,尽管NNg1的hrs与其他三种棉铃虫属NPVs中的同源hrs数量相同且在基因组上位置基本相同,但二者间的序列同一性较低。在基因组编码的bro基因多样性方面,NNg1与其他三种棉铃虫属NPVs中的每一种也存在差异。这些结果表明了几个可能导致棉铃虫属NPVs间观察到的毒力差异的推定基因和核苷酸序列,但尚未确定具体负责的基因和/或核苷酸序列。