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Studies on existing and new isolates of Cryptophlebia leucotreta granulovirus (CrieGV) on Thaumatotibia leucotreta populations from a range of geographic regions in South Africa

机译:研究现存和新的Cryptophlebia leucotreta粒状病毒(CrieGV)分离株对来自南非一系列地理区域的Thaumatotibia leucotreta种群的研究

摘要

Baculoviruses are arthropod-specific DNA viruses that are highly virulent to most lepidopteran insects. Their host specificity and compatibility with IPM programmes has enabled their usage as safe microbial insecticides (biopesticides). Two baculovirus-based biopesticides, Cryptogran and Cryptex, which have been formulated with Cryptophlebia leucotreta granulovirus (CrleGV) have been registered for the control of false codling moth (FCM), Thaumatotibia (=Cryptophlebia) leucotreta (Meyrick) (Lepidoptera: Tortricidae) in South Africa and have been successfully incorporated into IPM programmes. However, several studies have indicated that insects can develop resistance to baculovirus-based biopesticide as was shown with field populations of codling moth (CM), Cydia pomonella (L.), which developed resistance to the biopesticide Cydia pomonella granulovirus (CpGV-M) in Europe. Other studies have shown that, under laboratory conditions, FCM populations differ in their susceptibility to Cryptogran and Cryptex. In order to investigate difference in susceptibility as well as protect against any future resistance by FCM to Cryptogran and Cryptex, a search for novel CrleGV-SA isolates from diseased insects from different geographic regions in South Africa was performed. Six geographic populations (Addo, Citrusdal, Marble Hall, Nelspruit, Baths and Mixed colonies) of FCM were established and maintained in the laboratory. Studies on the comparative biological performance based on pupal mass, female fecundity, egg hatch, pupal survival, adult eclosion and duration of life cycle of the Addo, Citrusdal, Marble Hall, Nelspruit and Mixed colonies revealed a low biological performance for the Citrusdal colony. This was attributed to the fact that FCM populations found in the Citrusdal area are not indigenous and may have been introduced from a very limited gene pool from another region. When insects from five colonies, excluding the Baths colony, were subjected to stress by overcrowding , a latent baculovirus resident in the Addo, Nelspruit, Citrusdal, Marble Hall and Mixed colonies was brought into an overt lethal state. Transmission electron micrographs revealed the presence of GV occlusion bodies (OBs) in diseased insects. DNA profiles obtained by single restriction endonuclease analysis of viral genomic DNA using BamH 1, Sa/1, Xba1 , Pst1, Xh01 , Kpn1, Hindlll and EcoR1 revealed five CrleGV-SA isolates latent within the insect populations. The new isolates were named CrleGV-SA Ado, CrleGV-SA Cit, CrleGV-SA Mbl, CrleGVSA Nels and CrleGV-SA Mix isolates. The novelty of the five CrleGV-SA isolates was confirmed by the presence of unique submolar bands, indicating that each isolate was genetically different. PCR amplification and sequencing of the granulin and egt genes from the five isolates revealed several single nucleotide polymorph isms (SNPs) which, in some cases, resulted in amino acid substitutions. DNA profiles from RFLPs, as well as phylogenetic analysis based on granulin and egt sequencing showed the presence of two CrleGV-SA genome types for the CrleGV-SA isolate. Cryptex and CrleGV-SA Ado, CrleGV-SA Cit, CrleGV-SA Mbl and CrleGV-SA Mix were placed as members of Group one CrleGV-SA, and Cryptogran and CrleGV-SA Nels isolate were placed into Group two CrleGV-SA. In droplet feeding bioassays, the median survival time (STso) for neonate larvae inoculated with Group one and two CrleGV-SA were determined to range from 80 - 88 hours (3.33 - 3.67 days), for all five colonies. LDso values for Group one and two CrleGV-SA against neonates from the Addo, Citrusdal, Marble Hall, Nelspruit and Mixed colonies varied between some populations and ranged from 0.80 - 3.12 OBs per larva, indicating some level of variation in host susceptibility. This is the first study reporting the existence of genetically distinct CrleGV baculovirus isolates infecting FCM in different geographical areas of South Africa. The results of this study have broad-ranging implications for our understanding of baculovirus-host interactions and for the application of baculovirus basedbiopesticides.
机译:杆状病毒是节肢动物特有的DNA病毒,对大多数鳞翅目昆虫具有高度毒性。它们的宿主特异性和与IPM程序的兼容性使它们可用作安全的微生物杀虫剂(生物农药)。已经注册了两种用杆状隐孢子虫颗粒病毒(CrleGV)配制的基于杆状病毒的生物杀虫剂Cryptogran和Cryptex,用于控制假co蛾(FCM),丘毛足纲(= Cryptophlebia)隐叶蛾(Meyrick)(鳞翅目)南非,并已成功纳入IPM计划。但是,一些研究表明,昆虫可以对杆状病毒为基础的生物农药产生抗药性,如field蛾(CM),小dia虫(Cydia pomonella)(L。)的野外种群所显示的,小developed蛾对生物农药小dia藻颗粒病毒(CpGV-M)产生了抗药性。在欧洲。其他研究表明,在实验室条件下,FCM种群对隐花and和隐孢子虫的敏感性不同。为了调查易感性差异并防止FCM对Cryptogran和Cryptex的任何未来耐药性,从南非不同地理区域的患病昆虫中寻找新型CrleGV-SA分离株。在实验室中建立并维持了FCM的六个地理种群(阿多,柑橘,大理石厅,内尔斯普雷特,巴斯和混合殖民地)。对基于Addo,Citrusdal,Marble Hall,Nelspruit和混合菌落的p质量,雌性繁殖力,卵孵化,p存活,成虫的成虫和生命周期的持续时间的比较生物学性能的研究表明,Citrusdal菌落的生物学性能较低。这归因于以下事实:在柑桔地区发现的FCM种群不是本地的,可能是从另一个地区的非常有限的基因库中引入的。当来自巴斯殖民地以外的五个殖民地的昆虫因人满为患而受到压力时,驻留在阿多,内尔斯普雷特,柑橘,大理石堂和混合殖民地的潜伏杆状病毒被带入了一个致命的致命状态。透射电子显微照片显示在病虫中存在GV闭塞体(OB)。通过使用BamH 1,Sa / 1,Xba1,Pst1,Xh01,Kpn1,HindIII和EcoR1对病毒基因组DNA进行单限制性核酸内切酶分析获得的DNA谱图揭示了昆虫种群中潜在的5个CrleGV-SA分离株。新分离株被命名为CrleGV-SA Ado,CrleGV-SA Cit,CrleGV-SA Mbl,CrleGVSA Nels和CrleGV-SA Mix分离株。五个CrleGV-SA分离物的新颖性通过独特的亚磨牙条带的存在得到证实,表明每个分离物在遗传上均不同。对五个分离物的颗粒蛋白和egt基因进行PCR扩增和测序,发现几个单核苷酸多态性(SNP),在某些情况下会导致氨基酸置换。来自RFLP的DNA谱以及基于颗粒蛋白和egt测序的系统发育分析表明,存在CrleGV-SA分离株的两种CrleGV-SA基因组类型。将Cryptex和CrleGV-SA Ado,CrleGV-SA Cit,CrleGV-SA Mbl和CrleGV-SA Mix放入第一组CrleGV-SA,并将Cryptogran和CrleGV-SA Nels隔离株放入第二组CrleGV-SA。在飞沫喂养生物测定中,对于所有五个菌落,接种第一组和第二组CrleGV-SA的新生幼虫的中位生存时间(STso)确定为80-88小时(3.33-3.67天)。第一组和第二组CrleGV-SA对来自Addo,Citrusdal,Marble Hall,Nelspruit和混合菌落的新生儿的LDso值在某些人群之间有所不同,范围为每个幼虫0.80-3.12 OB,表明宿主易感性有所不同。这是第一项报道了在南非不同地理区域感染FCM的遗传上不同的CrleGV杆状病毒分离株的研究。这项研究的结果对我们对杆状病毒-宿主相互作用的理解以及基于杆状病毒的生物农药的应用具有广泛的意义。

著录项

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    Opoku-Debrah John Kwadwo;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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