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首页> 外文期刊>BMC Genomics >The genome sequence of Pseudoplusia includens single nucleopolyhedrovirus and an analysis of p26 gene evolution in the baculoviruses
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The genome sequence of Pseudoplusia includens single nucleopolyhedrovirus and an analysis of p26 gene evolution in the baculoviruses

机译:假血管病毒的基因组序列包括单一核多核病毒和杆状病毒中P26基因演化的分析

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Pseudoplusia includens single nucleopolyhedrovirus (PsinSNPV-IE) is a baculovirus recently identified in our laboratory, with high pathogenicity to the soybean looper, Chrysodeixis includens (Lepidoptera: Noctuidae) (Walker, 1858). In Brazil, the C. includens caterpillar is an emerging pest and has caused significant losses in soybean and cotton crops. The PsinSNPV genome was determined and the phylogeny of the p26 gene within the family Baculoviridae was investigated. The complete genome of PsinSNPV was sequenced (Roche 454 GS FLX – Titanium platform), annotated and compared with other Alphabaculoviruses, displaying a genome apparently different from other baculoviruses so far sequenced. The circular double-stranded DNA genome is 139,132?bp in length, with a GC content of 39.3 % and contains 141 open reading frames (ORFs). PsinSNPV possesses the 37 conserved baculovirus core genes, 102 genes found in other baculoviruses and 2 unique ORFs. Two baculovirus repeat ORFs (bro) homologs, bro-a (Psin33) and bro-b (Psin69), were identified and compared with Chrysodeixis chalcites nucleopolyhedrovirus (ChchNPV) and Trichoplusia ni single nucleopolyhedrovirus (TnSNPV) bro genes and showed high similarity, suggesting that these genes may be derived from an ancestor common to these viruses. The homologous repeats (hrs) are absent from the PsinSNPV genome, which is also the case in ChchNPV and TnSNPV. Two p26 gene homologs (p26a and p26b) were found in the PsinSNPV genome. P26 is thought to be required for optimal virion occlusion in the occlusion bodies (OBs), but its function is not well characterized. The P26 phylogenetic tree suggests that this gene was obtained from three independent acquisition events within the Baculoviridae family. The presence of a signal peptide only in the PsinSNPV p26a/ORF-20 homolog indicates distinct function between the two P26 proteins. PsinSNPV has a genomic sequence apparently different from other baculoviruses sequenced so far. The complete genome sequence of PsinSNPV will provide a valuable resource, contributing to studies on its molecular biology and functional genomics, and will promote the development of this virus as an effective bioinsecticide.
机译:假血症含有单核多肽(PSINSNPV-IE)是最近在我们实验室中鉴定的杆状病毒,对大豆蛹的高致病性,Chrysodexis includens(鳞翅目:Noctuidae)(Walker,1858)。在巴西,C.包括毛虫是一种新兴害虫,在大豆和棉质作物中造成了显着的损失。研究了psinsnpv基因组,研究了P26基因内的p26基因的系统发育。 psinsnpv的完整基因组被测序(roche 454gs flx - 钛平台),与其他alphabacul病毒进行注释,并与其他抗杆菌病毒显示出与其他杆状病毒的基因组相比。圆形双链DNA基因组的长度为139,132磅基因组,GC含量为39.3%,含有141个开放阅读框架(ORF)。 psinsnpv拥有37个保守的杆状病毒核基因,在其他杆状病毒中发现的102个基因和2个独特的ORF。鉴定了两种杆状病毒重复ORF(博罗)同源物,BrO-A(Psin33)和Bro-B(Psin69),并与Chrysodexis Chalcite核多肽(ChChnPV)和Trichoplusia Ni单核多核酶(TNSNPV)博罗基因进行比较,并显示出高相似性,提示这些基因可以源自这些病毒共同的祖先。 PsinsnPV基因组不存在同源重复(HRS),这也是CHCHNPV和TNSNPV的情况。在psinsnpv基因组中发现了两个p26基因同源物(p26a和p26b)。认为P26被认为是闭塞体(OBS)中的最佳病毒疮闭塞所必需的,但其功能并不具备很好的表征。 P26系统发育树表明该基因是从杆状病患者家族内的三个独立的采购事件中获得。仅在PSINSNPV P26A / ORF-20同源中存在信号肽的存在表明两种P26蛋白之间的不同功能。 psinsnpv具有基因组序列,显然与到目前为止测序的其他杆状病毒血管病毒。 PSINSNPV的完整基因组序列将提供有价值的资源,有助于研究其分子生物学和功能基因组学,并将促进该病毒的发展作为有效的生物终聚旋。

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