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1.
A synergistic factor (SF), which is present in the capsule matrix protein of a granulosis virus of the armyworm, Pseudaletia unipuncta, enhances baculovirus infection in armyworm larvae. The site of action of the SF was investigated. The oral inoculation of SF did not enhance the infectious hemolymph virions which had been inoculated into the hemocoel. The SF also did not enhance the infection of purified enveloped virions when both virus and SF were inoculated into the hemocoel, but enhancement occurred when they were inoculated orally. Thus, the activity of the SF was confined to the midgut lumen. Observations with ferritin-conjugated antibody indicated that the site of action of SF was the cell membrane of the microvillus. There were more ferritin particles attached to midgut cell membranes of larvae inoculated orally with SF than to those of control larvae inoculated with buffer.  相似文献   

2.
Capsules of a granulosis virus of the codling moth were never found in codling moth eggs, although they were observed in the larval, pupal, and adult stages. However, eggs obtained from a British Columbia codling moth colony were found to have virus on the egg surface.Transstadial transmission of the virus from the larval to the pupal stage occasionally occurred after intact capsules had been inoculated per os into the larva. The virus was also occasionally transmitted from the pupal to the adult stage, but only after virions had been injected into the hemocoel of the pupa.Fertile eggs obtained from virus-injected insects were not shown to contain active virus. Eggs were tested by maceration in antiserum, by the fluorescent-antibody technique, and by bioassay of their contents.Only one larva of the F1 and F2 generations obtained from virus-injected insects succumbed to granulosis even when the larvae were exposed to various types of stressors.Circumstantial evidence supports the hypothesis of transovum transmission, but such transmission cannot be attributed to injections of virus into larvae and pupae in this study.  相似文献   

3.
A granulosis virus infecting the potato tuber moth, Phthorimaea operculella, has been identified, isolated and purified from diseased potato tuber moth larvae collected from potato fields in the highland basin Qa al-Boun of the Republic of Yemen. The granulosis virus was propagated by feeding potato tuber moth larvae with potatoes treated with a concentration of one granulosis virus-infected fourth instar larva to 5l of water (corresponding to an occlusion body (OB) concentration of 2 106 OB ml-1). Restriction enzyme analysis of viral DNA revealed that the isolated virus seemed to correspond to an isolate from the Lima region of Peru. A median LC 50 value of 7.3 104 OB ml-1 was calculated for a purified virus preparation. Different preparations of the granulosis virus were investigated for their persistence in the field on tubers and leaves. A purified virus preparation (PoGV) applied to potato tubers and exposed in the open had a half-life of 1.3 days. On leaves, the activity of granulosis virus spray deposits of an unpurified virus preparation (PoGV I) and of a glycerine-formulated preparation (PoGV II) also declined with exposure time. Mortalities of potato tuber moth larvae of 43% for PoGV I and 49% for PoGV II were recorded when first instar larvae were fed with potato leaves collected 2 days after treatment. After 8 days, 25.8% of the larvae had died from PoGV I treatment and 19.4% from PoGV II. Neither preparation displayed any effect 17 days after application.  相似文献   

4.
The dosage-mortality response of Hyphantria cunea larvae to a granulosis virus isolated from Diacrisia virginica was studied. Serial decimal dilutions of the D. virginica granulosis virus were fed to early second-instar H. cunea larvae. the LD50 for this virus (7.9 × 105 capsules/larva) was significantly greater than the LD50 calculated for the H. cunea granulosis virus (7.06 × 104 capsules/larva) against the same instar of H. cunea. Time mortality studies demonstrated that the LT50 values for the D. virginica granulosis were four to six times greater than for comparable dosages of H. cunea granulosis virus. Based on the mortality response of assayed H. cunea, it is possible to distinguish between the D. virginica granulosis virus and the H. cunea granulosis virus.  相似文献   

5.
颗粒体病毒在小菜蛾种群中的垂直传播方式的初步观察   总被引:1,自引:0,他引:1  
吕利华  何余容 《昆虫知识》2004,41(6):559-562
在室内观察了小菜蛾颗粒体病毒PlutellaxylostellaGranulosisVirus(RxGV)在小菜蛾种群水平上可能的垂直传播途径。结果表明 :(1 )上代小菜蛾Plutellaxylostella(L .)幼虫期饲毒不能将小菜蛾颗粒体病垂直传递到下代 ;(2 )取食病毒的雌蛾产的卵所孵化的幼虫中 ,没病毒感染出现 ,说明病毒不能经小菜蛾成虫体内传播到下一代。 (3 )用小菜蛾颗粒体病毒处理卵卡时 ,其初孵幼虫有少量被病毒感染死亡 ,浓度高时感染率也较高 ,但感染率均在 1 0 %以下 ,说明小菜蛾颗粒体病毒能经卵表垂直传递给下代 ,但传递效率不高。但当用病毒处理叶片上的卵时 ,初孵幼虫死亡率高达 77 73 % ,而且孵化出的幼虫大多数染病且死于 3龄以前 ,因此田间病毒的施用时间可提早到卵高峰期。  相似文献   

6.
Late second-instar Heliothis armigera larvae were infected with a granulosis and a nuclear polyhedrosis virus, and all the externally visible symptoms for each virus are described. The effects of the virus infections on the feeding habits of the insects are also described, and it was found that a granulosis infection can prolong the larval period by up to 100%. The larvae continue feeding during this prolonged larval period, and can reach almost double the size and mass of normal larvae.It was further found that each of the viruses displays a distinct set of symptoms which could indicate beyond any doubt which of the two viruses induced death in the host.  相似文献   

7.
The interactions between the Diacrisia virginica granulosis virus (DGV) and the Hyphantria cunea baculovirus isolates were determined, utilizing defined differences between the time-mortality responses of these viruses fed to H. cunea larvae. The DGV, having a prolonged incubation period, when given an advantage in time or in the number of capsules, was able to prevent the expression of the more lethal H. cunea granulosis virus (HcGV) isolate. The time-mortality response of test larvae simultaneously fed equivalent dosages of HcGV and DGV was intermediate to that achieved with HcGV alone or DGV alone. Larvae infected with the DGV isolate were still susceptible to double infection by the nucleopolyhedrosis virus. The time-mortality response demonstrated that the development of nucleopolyhedrosis was only partly inhibited by preinfecting the test larvae with the DGV isolate.  相似文献   

8.
Comparative interinstar susceptibility of the fall webworm, Hyphantria cunea, to granulosis and nucleopolyhedrosis viruses was quantitated. As the larvae matured, susceptibility to either baculovirus preparation decreased. Mortality data converted to a dose per milligram body weight basis demonstrated that this decrease in susceptibility was only in part due to the difference in weight of the larvae tested. Lethal time data showed that incubation time for either baculovirus was dependent on the age of the larvae and the dose of virus assayed. A difference in interinstar susceptibility was observed between the granulosis virus and nucleopolyhedrosis virus.  相似文献   

9.
Different doses of a granulosis virus were administered to first- and fifth-instar larvae of the codling moth Laspeyresia pomonella. Virus was very pathogenic for both larval instars. The LD50 values for first- and fifth-instar larvae were 5 and 49 capsules/larva, respectively. However, fifth-instar larvae were much more variable in their response to virus than first-instar larvae. Using probit methods it was calculated that 1 capsule could cause death in about 25% of both larval instars but 1578 capsules were required to cause 70% mortality of fifth-instar larvae as compared to 12 capsules for first-instar larvae. This is the first report of a decided difference in variability of response to virus by two larval instars of the same species. A bimodal response by both larval instars was observed in time-mortality studies. Apparently, about 20% of the larvae were very resistant to virus infections.  相似文献   

10.
Young larvae of Adoxophyes orana (apple race) were infected with a granulosis virus by feeding them artificial diet containing the virus suspension. The susceptibility decreased remarkably after the fourth to fifth instar. Infected larvae survived the end of the fifth (last) instar, even when they were infected at an early developmental stage. Inoculation of egg masses by dipping them into a virus suspension gave a high percentage of infection when larvae were reared en masse.  相似文献   

11.
The presence of polyamines in the granulosis virus and its larval host, Plodia interpunctella, was examined using thin-layer chromatography of the dansylated compounds. The uninfected and infected larvae contain the three polyamines, putrescine, spermidine, and spermine. Although purified granulosis virus infecting this host does not contain any typical polyamines, an acidsoluble dansylated compound with properties indicative of a polyamine was observed.  相似文献   

12.
The biochemical and biophysical characteristics of the closely related Diacrisia virginica and Hyphantria cunea granulosis virus isolates were examined. Sucrose gradient sedimentation patterns of alkali-solubilized DGV and HcGV capsules were identical. The top, middle, and bottom fractions from either viral isolate were infectious when injected into susceptible host larvae. Electrophoretic analysis of alkaline-solubilized granulin extracts demonstrated that both viruses contain alkaline proteolytic activity. The major granulin protein (~28,000 daltons) of both isolates comigrated in a SDS-PAGE. Electrophoretic separation of the virus proteins demonstrated some quantitative differences between the two granulosis viruses. The enveloped nucleocapsids and the nucleocapsids of the two viruses were morphologically indistinguishable.  相似文献   

13.
The potato tuberworm Phthorimaea operculella (Zeller) is an important agricultural pest that causes significant economic losses to potato growers worldwide. The addition of an effective method of biological control for the potato tuberworm is greatly needed, and is currently unavailable in Brazil. The granulosis virus (Baculoviridae) is a promising biological control agent to protect post-harvest potatoes and in storage from the potato tuberworm. However, the control measure must be economically feasible. Liquid suspensions of a granulosis virus applied alone or in mixture with two commercial neem oil-based products (DalNeem? and NeemAzal?), and a dry powder formulation of viral granules were evaluated for control of potato tuberworm larvae by treating potato tubers under laboratory conditions. High larval mortality (86.7%) was achieved when DalNeem and virus were applied together at 4?mg of azadirachtin/L and 104 occlusion bodies (OBs)/mL, respectively. This combination resulted in ??50% efficacy in relation to their counterparts alone. Conversely, NeemAzal did not enhance virus effectiveness against larvae of the potato tuberworm. The talc-based virus formulation was used for dusting seed tubers at different concentrations and resulted in 100% larval mortality at 5?×?108 OBs/g. Formulated and unformulated virus provided 50% mortality at 166 OBs/g and at 5.0?×?105 OBs/mL, respectively. As a result, talc-based virus formulation had a better control efficiency on potato tuberworm than the aqueous virus suspension. The granulosis virus combined with DalNeem at low rates or formulated with talc powder is a viable option to control the potato tuberworm under storage conditions.  相似文献   

14.
We have a detailed understanding of invertebrate immune responses to bacteria and fungal pathogens, but we know less about how insects respond to virus challenge. Phenoloxidase (PO) functions as an important immune response against many parasites and pathogens and is routinely used as a measure of immune competance. We examine the role of haemolymph PO activity in Plodia interpuncetella's response to its natural granulosis virus (PiGV). Larvae were challenged with virus by both oral inoculation of occluded virus (the natural infection route) and direct intrahaemocoelic injection of budded virus. Haemolymph was collected at time points post-viral challenge using a novel method that allows the volume of haemolymph to be quanitified. The haemolmyph was collected without killing the larvae so that haemolymph samples from individuals that developed viral disease could be distinguished from samples collected from those that fought off infection. The level of haemolymph PO activity in resistant larvae did not differ from control larvae. Therefore we have no evidence that PO is involved in resistance to virus in the haemocoel whether larvae are challenged naturally by oral innoculation or directly by intraheamocoelic injection. Phenoloxidase may therefore not be a relevant metric of immunocompetence for viral infection.  相似文献   

15.
A six-step sequence of selection of the granulosis virus of Laspeyresia pomonella led to a strain with increased resistance to sunlight. Each step consisted of irradiation of dry deposits of the virus on apples with near range ultraviolet light, infection of freshly eclosed codling moth larvae with the irradiated virus, and propagation of the virus thus produced in large fifth-instar larvae. Compared with the original virus, the new strain was 5.6 times more resistant to artificial ultraviolet irradiation in the laboratory and remained twice as long infective in the field.  相似文献   

16.
The DNA of three baculoviruses propagated in larvae of a common host species (Heliothis zea) were easily distinguished from each other by their restriction endonuclease patterns. Molecular weights of 79.7 ± 7.3, 119.6 ± 5.1, and 86.6 ± 6.3 × 106 daltons were estimated for the viral genome of a single-embedded nucleopolyhedrosis virus isolated from Heliothis zea, a multiple-embedded nucleopolyhedrosis virus isolated from Heliothis armigera, and a granulosis virus isolated from Heliothis armigera, respectively.  相似文献   

17.
A granulosis virus (PoGV) infecting the potato tuber moth, Phthorimaea operculella, in the Republic of Yemen was evaluated for its use in an inundative approach to control this pest. In field trials on potatoes, the effectiveness of the virus was examined on-farm and on-station using an unpurified preparation (PoGV I) and a purified glycerine-formulated virus preparation (PoGV II). The virus infection and mortality of potato tuber moth larvae were dependent on the virus concentration applied. After application of 5 1012 occlusion bodies (OB) ha-1 of PoGV I, the proportion of virus-infected larvae increased, fluctuating between 26 and 39% 14-35 days after treatment. At a granulosis virus concentration of 5 1013 OB ha-1, clear symptoms of granulosis virus infection (milky white coloration and reduced vitality) were observed in larvae collected 11 days after treatment. A total of 70% of the fourth instar larvae collected 19 days after treatment with PoGV I were infected. Further observations revealed very high rates of effectiveness in terms of larval mortality. The preparations PoGV I and PoGV II were not found to differ in their degree of effectiveness, which resulted in a mortality of potato tuber moth larvae of 85.3% for PoGV I and 82.5% for PoGV II respectively.  相似文献   

18.
A disease causing death in Lacanobia oleracea (Lepidoptera: Noctuidae) occurring in glasshouses in Scotland was shown to be caused by a granulosis virus (GV). Structural properties of the virus were examined by electron microscopy, immunodiffusion, polyacrylamide gel electrophoresis, and restriction endonuclease analysis and compared with an isolate of GV from L. oleracea obtained from France. The two isolates were structurally very similar but could be distinguished by analysis of EcoRI digests of their DNAs. Bioassays of the virus gave LD50 values from 104.3 capsules for second-instar larvae to 106.6 capsules for fifth-instar larvae. The French isolate was bioassayed in third-instar larvae and was not found to differ significantlyfrom the Scottish isolate. Two small glasshouse trials using the virus to control artificial infestations of L. oleracea indicated that high-volume sprays of virus at 108 to 109 capsules/ml achieved good control. An alternative strategy using much smaller amounts of virus to control the insect is discussed.  相似文献   

19.
Contrary to reports from elsewhere, Streptococcus faecalis or Bacillus alvei did not cause European foulbrood in bee larvae also inoculated with sacbrood virus. The larvae died of sacbrood, by which time S. faecalis had mostly disappeared, although B. alvei multiplied saprophytically, as in European foulbrood, in some of the remains. Larvae that died of sacbrood already contained much sacbrood virus before they were sealed in their cells, when they appeared unaffected by the virus, but when they are most likely to die of European foulbrood, which is caused by Streptococcus pluton, often accompanied by secondary invaders, such as S. faecalis. Therefore, larvae killed by European foulbrood can be expected sometimes to contain much sacbrood virus, particularly as this virus is common.  相似文献   

20.
THE STRUCTURE OF INSECT VIRUS PARTICLES   总被引:1,自引:1,他引:0       下载免费PDF全文
Thin sections have been cut of the virus particles from four types of insect virus diseases: cytoplasmic polyhedroses of lepidopterous larvae, a nuclear polyhedrosis of Tipula paludosa (Diptera), a granulosis from Melanchra persicariae (Lepidoptera), and a new virus disease without polyhedra from T. paludosa. The cytoplasmic polyhedral viruses are thought to have composite particles in some cases. The shape and enveloping membranes of the different virus particles are compared. In the new virus disease of T. paludosa some of the virus particles appear to be empty; inclusion bodies surrounded by complicated membranes are also demonstrated.  相似文献   

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