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1.
柞蚕核型多角体病毒(AnpeNPV)作为基因表达载体在柞蚕培养细胞(AnPe细胞)和柞蚕蛹中已经成功地表达出了外来基因,并生产出了大量蛋白质。本文比较了AnpeNPV与苜蓿尺蠖核型多角体病毒(AcMNPV)、家蚕核型多角体病毒(BmNPV)和美国白蛾核型多角体病毒(HycuNPV)基因表达载体在培养细胞和昆虫活体组织内的β-半乳糖苷酶基因表达效果。结果显示,5×105个细胞中β-半乳糖苷酶的最高酶活性分别是AnpeNPV在AnPe细胞为40.9 units/ml (TC-100培养液,FBS10%)和59.9 units/ml(SF-900Ⅱ培养液),AcMNPV在Sf9细胞为72.4 units/ml(TC-100,FBS10%)和66.4 units/ml(SF-900Ⅱ)、在High5细胞为326 units/ml(EX-CELL 405培养液),BmNPV在Bm4细胞为15.1 units/ml(TC-100,FBS10%),HycuNPV在SpIm细胞为68.6 units/ml(SF-900Ⅱ)。活体组织内β-半乳糖苷酶的最高酶活性分别是柞蚕雌蛹为14.3 units/g、雄蛹为11.7 units/g,家蚕幼虫是10.1 units/g。实验证明AnpeNPV/AnPe的外来基因表达水平与AcMNPV/ Sf9和HycuNPV/SpIm相似、比BmNPV/ Bm4高、不及AcMNPV/ High5;AnpeNPV/柞蚕蛹,其雌蛹比BmNPV/家蚕5龄幼虫的外来基因表达效果好、雄蛹与之无明显差异,说明AnpeNPV基因表达载体无论是在培养细胞还是昆虫活体组织中均可与其他NPV基因表达载体相媲美。柞蚕蛹由于可以机械化、大规模地操作,显示对于大量生产蛋白质具有更好的应用前景。  相似文献   

2.
辽宁省农科院大连生物技术研究所张春发等人利用柞蚕核型多角体病毒(ApNpV)组建成转移载体,并以此载体携带外源基因(人白细胞介素-4、DE糖蛋白)在草地贪夜蛾Sf9昆虫细胞、柞蚕卵巢细胞以及柞蚕蛹活体中表达成功。实验表明,表达产物的确以非融合蛋白形式出现,从而建立了柞蚕NpV载体—柞蚕蛹活体宿主表达系统。这是继菌苜蓿纹夜蛾核多角体病毒(AcNpV)—Sf9细胞载体表达系统和家蚕核多角体病毒(BmNpV)——家蚕幼虫载体表达系统以后又一个昆虫杆状病毒载体达表系统。由于该系统是利用柞蚕蛹活体为宿主  相似文献   

3.
柞蚕核型多角体病毒(ApNPV)转移载体质粒pAp M2614的组建   总被引:1,自引:0,他引:1  
自从美国科学家G.Smith等首次建立苜蓿尺蠖核型多角体病毒(AcNPV)转移载体表达系统以来,已被广泛用于外源基因的表达,成为世界上一新的具有巨大潜力的载体表达系统。为了进一步提高表达产量,降低成本,日本科学家前田进建立了家蚕核型多角体病毒(BmNPV)载体表达系统,并获得了高效表达。柞蚕是我国特产,以蛹滞育越冬,保存时间长,个体大,可工厂化生产。因此,组建柞蚕NPV转移载体,进而建立该载体表达系统,是目前利用昆虫活体为宿主进行外源基因表达较理想的昆虫杆状病毒载体表达系统。  相似文献   

4.
现行的杆状病毒表达外源基因的方法是将外源基因取代病毒中的多角体基因,因而得到的重组杆状病毒感染活体时不能经口感染,只能进行针刺注射,效率低且易引起活体感染其他疾病。将家蚕核型多角体病毒(Bombyx mor inucleopolyhedrovirus,BmNPV)中的多角体基因(polyhedrin,poly)及其启动子片段克隆到转座子载体pigA3GFP中,将其与辅助质粒pHA3PIG利用脂质体介导法导入家蚕细胞中,经过多次筛选获得稳定的转基因家蚕细胞。之后先将BmPAK6(含LacZ)及BmGFP(含GFP)重组病毒分别感染转基因细胞,再将得到的重组病毒经口感染5龄家蚕幼虫。结果显示,重组杆状病毒可以经口感染家蚕幼虫。这些研究表明来自于转基因家蚕细胞的poly基因表达产物可以提高重组杆状病毒经口感染家蚕率,为解决杆状病毒表达系统中重组病毒不能经口感染家蚕幼虫的问题提供新思路。  相似文献   

5.
昆虫保幼激素促进家蚕杆状病毒系统的基因表达   总被引:9,自引:0,他引:9  
杆状病毒表达载体系统(Baculovirus Expression VecterSvstem,BEVS)的一个最大优点是外源基因的高效表达(Hy-perexpression).但是,不同的外源基因在BEVS系统中的表达水平相差很大,较低的如α-干扰素,表达量为1~5mg/L培养细胞;高的如β-半乳糖苷酶,表达量可达600mg/L培养细胞.外源基因在BEVS系统中表达量受到诸多因素的影响,如细胞的类型与质量,外源基因蛋白的性质,启动子序列的完整性,是否为融合蛋白等[1].如何使外源基因在BEVS系统中高效表达,是近年来该领域中研究最活跃的方向之一.已证实家蚕杆状病毒的表达量受宿主遗传型的影响,最低和最高的遗传型相差达7倍以上[2].林水中等发现家蚕饲料中添食适当浓度的硫酸铜可提高外源基因单位表达量10%左右[3].杆状病毒在复制循环中表现出两种类型:芽生病毒和包涵体病毒,其中芽生病毒引起宿主体内不同组织间的感染,包涵体病毒则引起宿主之间感染[1].杆状病毒基因组中蜕皮激素尿苷二磷酸葡萄糖基转移酶(egt)基因影响激素在宿主体内的平衡[4],egt基因通过糖基化作用使蜕皮激素失活,打破宿主体内的激素平衡,延长幼虫期,以利于病毒的增殖[5].家蚕血淋巴中保幼激素(Juvenile hormone,JH)的滴度同样决定着幼虫发育的进程[6],本文通过体表使用保幼激素,以研究保幼激素对家蚕核型多角体病毒和宿主之间的相互关系及对外源基因表达量的影响.  相似文献   

6.
本文报道了棉铃虫单粒包埋型核型多角体病毒(Heliothis armigera single nucleocapsid nuclear polyhedrosis virus, HaSNPV)在棉铃虫及棉铃虫蛹卵巢细胞系SFE-HA-8212中的复制。HaSNPV的复制和其他的核型多角体病毒大体相符,复制过程也可分为形成出芽型病毒与形成包埋型病毒这两个时相。研究了影响病毒在细胞中复制的诸因素,包括病毒感染复数、细胞接种密度和细胞生长阶段等。在适宜的条件下平均每细胞可生产出芽型病毒14PFU,多角体24个。生成的病毒具有感染力。这些表明SFE-HA-8212细胞可供HaSNPV有效复制。同时,作为细胞群体该细胞系对HaSNPV感染的反应并非均一,其中有89.65±21.4%的感染细胞释放病毒,但仅有37.85±6.7%的细胞形成多角体。表明HaSNPV的感染并不一定导致形成多角体,在大部分感染细胞中病毒复制进行到产生病毒粒子就停止了。初步讨论了这种不均一性的原因。  相似文献   

7.
棉铃虫单粒包埋核型多角体病毒(Helicoverpa armigera single nucleocapsid nucleopolyhedrovirus,HaSNPV)能够在棉铃虫蛹卵巢细胞素SFE-HA-8212中有效复制,引起细胞解体死亡.通过培养HaSNPV感染后残存的细胞,建立了一株持续感染的细胞.该细胞在传代培养的6个月时间内(约25次传代),持续地释放有感染力的病毒粒子,培养液中病毒的效价多在104 TCID50/ml上下,同时有一小部分细胞(1%左右)中形成多角体,释放病毒的细胞占总细胞数的1.0%~3.8%.持续感染细胞的生长特性与原细胞系相比有一定的变化,对HaSNPV感染的敏感性有所降低.另一方面,持续感染细胞所释放的病毒对SFE-HA-8212及棉铃虫幼虫的感染力也有所降低.讨论了持续感染的可能机制.  相似文献   

8.
本文研究了油桐尺蠖核型多角体病毒(简称BsNPV)在油桐尺蠖成虫卵巢细胞系(Bs484)中的以下感染特性:1.病毒接种传代3-4天的细胞时,病毒感染率最高;2.病毒按种量在一定范围内与感染细胞的多角体总产量平行;3.病毒在细胞中连续传代七次后其滴度无明显变化;4,病毒基因组在感染细胞后6小时左右开始合成,并于感染后14小时达到最大。此外,本实验还发展了一种用于检测感染细胞中的病毒核酸的简便方法。  相似文献   

9.
几种昆虫病毒交叉感染玉米螟的研究   总被引:1,自引:0,他引:1  
银纹夜蛾NPV(P_aNPV)、柞蚕NPV(ApNPV)和赤松毛虫CPV(D_aCPV)可感染玉米螟。D_aCPV对玉米螟1龄幼虫的ID_(50)为5.9×10~5PIB/ml饲料,对幼虫的生长发育、蛹重、羽化率和成虫寿命有显著影响。D_aCPV主要侵染幼虫中肠柱状细胞,在细胞质中增殖;P_aNPV和A_pNPV主要侵染幼虫的体壁细胞和气管壁细胞。D_aCPV在玉米螟幼虫体内增殖后,多角体形态由正六角形变为锥形或四方形;成虫羽化时排出的蛹便可观察到多角体,病毒可传递给子代。利用其他昆虫病毒有防治玉米螟的可能性。  相似文献   

10.
柞蚕核型多角体病毒泛素类似基因的克隆与序列分析   总被引:2,自引:0,他引:2  
从感病的柞蚕Antheraea pernyi蛹中分离纯化柞蚕核型多角体病毒 (ApNPV),提取基因组DNA,分别构建ApNPV DNA的HindⅢ和SalⅠ酶切片段文库。对基因文库中1个克隆进行序列分析,得到1个长度为321 bp的序列,其中包含一个编码76个氨基酸的开放阅读框,预测的分子量为8.46 kD,系泛素类似基因。在读码框的上游调控序列中,具有典型的晚期基因启动子序列ataag。氨基酸序列同源性分析结果表明,ApNPV与黄杉毒蛾Orgyia pseudotsugata核型多角体病毒 (OpNPV)的同源性最高 (96.1%),与苜蓿尺蠖Autographa californica核型多角体病毒 (AcNPV) 的同源性为86.8%,与棉褐带卷蛾Adoxophyes orana 颗粒体病毒 (AoGV) 的同源性最低(71.1%),但与人类、线虫和酵母的泛素同源性分别为77.6%、76.3%和76.3%。一些氨基酸残基在真核生物中保守,在杆状病毒中不保守,个别氨基酸残基是杆状病毒所特有的,这些氨基酸序列的改变对杆状病毒泛素基因的作用有待进一步研究。  相似文献   

11.
【目的】克隆柞蚕Antheraea pernyi海藻糖合成酶(trehalose-6-phosphate synthase,TPS)基因,并对其进行组织表达分析,探讨该基因在柞蚕滞育蛹解除滞育过程中的表达规律,为阐明柞蚕滞育期间碳水化合物代谢规律与蛹滞育解除的关系提供数据支持。【方法】利用PCR及3'RACE技术从柞蚕幼虫脂肪体组织中克隆得到TPS基因,并进行生物信息学分析;RT-PCR检测该基因在柞蚕幼虫各组织中的表达分布,进一步采用Real-time PCR分析柞蚕滞育蛹解除滞育过程中该基因在脂肪体组织和血淋巴中的表达量变化。【结果】克隆获得柞蚕海藻糖合成酶基因并命名为ApTPS。其开放阅读框长2 487 bp,编码828个氨基酸,蛋白预测分子量为93.19 k D,等电点(p I)4.61;无信号肽,无跨膜区。蛋白质亚细胞定位预测该蛋白定位于细胞质中;蛋白质结构域分析表明,ApTPS有两个保守功能区:TPS(第22-497位氨基酸)和TPP(第532-772位氨基酸)。组织特异性分析表明,ApTPS基因在柞蚕幼虫脂肪体中表达量最高;柞蚕解除滞育过程中,ApTPS在脂肪体和血淋巴中的表达量均有所升高,且显著高于对照组(P0.05),但血淋巴中表达量的升高滞后于脂肪体。【结论】结果提示ApTPS参与了柞蚕蛹滞育中碳水化合物代谢调控并在其中发挥重要作用,与柞蚕蛹滞育解除关系密切。  相似文献   

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13.
Abstract The apple leaf miner Phyllonorycter ringoniella (Matsumura) (Lepidoptera: Gracillariidae) overwinters as a diapausing pupa. The diapause rate reaches 100% in early October. Diapause intensity decreases gradually from early October and diapause terminates in early February. The fresh body weight of diapausing pupae is 1.6 times that of non-diapausing pupae. The main cryoprotectant in P. ringoniella pupae is trehalose. Three stages are distinguishable as indicated by the correlations between diapause intensity, levels of cold hardiness and the trehalose content: diapause induction occurred in October, diapause development from November to December, and post-diapause quiescence from January to April. During diapause induction, the pupae accumulate low levels of trehalose and do not survive exposure to −15 °C. During diapause development, the pupae gradually accumulate more trehalose and show some ability to survive exposure to −15 °C, but not to −20 °C. During post-diapause quiescence, the pupae accumulate relatively more trehalose and cold hardiness fully develops, but decreases quickly in April. The trehalose content in pupae sampled in December is unaffected by acclimation temperatures in the range 0–30 °C, but decreases in pupae sampled in March after acclimation at temperatures from 5 to 15 °C. These results suggest that overwintering pupae of P. ringoniella have the ability to accumulate trehalose and develop a high level of cold hardiness during diapause development.  相似文献   

14.
Kost;l V 《Cryobiology》1993,30(5):524-531
Supercooling point (SCP) values and cold-hardiness were measured in individual ontogenetic stages of Delia radicum (Diptera:Anthomyiidae) in various physiological states (winter diapause, summer quiescence, and normal development). Winter diapause-destined mature third-instar larvae had a lower SCP (-9.9 degrees C) than their nondiapause counterparts (-5.2 degrees C), and more of them survived exposure to -10 degrees C for 5 h to pupariation and adult emergence. Values of SCPs were equal in both diapause and nondiapause states of prepupal and pupal stages. The lowest SCP (ca. -20 degrees C) was found in the stage of phanerocephalic pupa (PCP) regardless of the physiological state. The cold-hardiness of PCP corresponded with a low SCP value only in diapausing pupae stored for 80 days at 3 degrees C and in pupae which had terminated their diapause and whose further development was inhibited by storage at low temperatures (3 degrees C). Such pupae survived exposure to temperatures close to their SCP (14 days at -17 degrees C). However, this high cold-hardiness was only acquired after some time and/or exposure to 3 degrees C, as the PCP at the beginning of diapause showed significantly impaired cold-hardiness despite the fact that their SCP was low. The cold-hardiness of nondiapausing PCP did not correspond at all to that of low SCP, as no pupa survived the exposure to -17 degrees C for 1 day; survival rates at temperatures of -13.5 and -10 degrees C were also remarkably lower than those in diapausing pupae. Cold-hardiness in D. radicum was closely connected with the diapause syndrome but the changes in SCP value corresponded rather with the ontogeny of this insect. Copyright 1993, 1999 Academic Press.  相似文献   

15.
【目的】柞蚕核型多角体病毒(Antheraea pernyi nucleopolyhedroviruses, AnpeNPV)能引起柞蚕脓病大面积暴发。尽管之前已完成了两株核型多角体病毒的基因组测序,但基于比较基因组的方法调查AnpeNPV间的遗传变异研究则相对较少。【方法】为了研究AnpeNPV不同地理株系间的遗传多样性,我们测序了1株从中国河南省分离的柞蚕NPV(AnpeNPV-H)基因组,并和之前从辽宁省分离的2株柞蚕NPV(AnpeNPV-L和AnpeNPV-Z)进行了比较基因组学分析。【结果】AnpeNPV-H的全基因组大小为125 605 bp,总共预测了146个开放阅读框(ORF),包括95个功能注释蛋白和51个假定蛋白。我们发现这3株AnpeNPV间的基因组成非常相似。在这3个AnpeNPV株系间,有6个开放阅读框存在碱基变异而导致基因的变短。并鉴定超过200个单核苷酸多态性(single nucleotide variations, SNVs),其中85%位于蛋白编码区。同时,odv-e 56, p94-like 和 egt 3个基因的非同义突变较高,表明这3个蛋白质编码基因可能经历了正向选择或纯化选择。我们发现在这3株AnpeNPV间一些基因的氨基酸发生变异,例如编码膜蛋白的基因、抑制凋亡和蜕皮的基因及与DNA复制相关的DNA聚合酶和解旋酶等基因。最后,展示了3株AnpeNPV间遗传重组的证据。【结论】本研究揭示了AnpeNPV种内水平的变异和株系内基因组的动态结构。  相似文献   

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17.
The movement of neurosecretory substances released from the neurosecretory B cell in the pars intercerebralis to the haemolymph was examined with the progress of the termination of diapause in the slug moth pharate pupa, Monema flavescens.The injection of precipitates in the haemolymph of the pharate pupa just before the termination of diapause into diapausing pharate pupae reduced the numbers of days required for them to pupate. In the precipitates, seven types of haemocytes were present. The number of haemocytes, especially the granular cell, increased just before the termination of diapause. AF and CHP positive substances not detected in the haemocytes of diapausing pharate pupae appeared in the granular cells just before the termination of diapause. The period also coincided well with the releasing period of the neurosecretory B cell. Histological examination showed that granular haemocytes gathered around the pars intercerebralis at this period and exchange of neurosecretory substances occurred between granular haemocytes and neurosecretory B cells. Then granular haemocytes migrated to the region of the prothoracic gland. From digestion tests of the neurosecretory substances with rabbit serum and from the implantation tests of the neuroendocrine system, the substances detected in both the neurosecretory B cell and the granular haemocytes seemed to be the same. The dye injection caused a delay in larval-pupal ecdysis emergence. Droplets of black ink are incorporated into the granular haemocytes. This seems to be caused by blocking of the transport of neurosecretory substances released from cytoplasmic processes of the neurosecretory B cell.From these experiments, it is suggested that neurosecretory substances of the prothoracotropic hormone are transported to the prothoracic gland, along with granular haemocytes, after being released directly from the neurosecretory B cell to the haemolymph.  相似文献   

18.
The silkworm, Bombyx mori, enters diapause in the early embryonic stage. Embryonic diapause is induced by incubating eggs of the maternal generation at high temperature (diapause type), whereas incubation at low temperature results in non-diapausing progeny (non-diapause type). Measurement of catecholamine concentrations in haemolymph and brain-subesophageal ganglia (Br-SGs) showed that only dopamine concentrations in both tissues are consistently higher in diapause-type than non-diapause-type larvae and pupae. In particular, the difference in dopamine concentrations in both tissues increases around pupal ecdysis. During the early pupal stage, Dopa decarboxylase activities and mRNA concentrations in Br-SGs were also much higher in diapause-type than non-diapause-type insects. Elevation of dopamine levels induced by feeding Dopa to penultimate-instar and last-instar larvae, and by injecting Dopa or dopamine into pupae 2 days after pupation made the non-diapause-destined insects lay diapause-destined eggs at 59% and approximately 70% frequencies, respectively. Furthermore, injection of Dopa or dopamine elevated mRNA levels of the diapause hormone in the Br-SGs of non-diapause-type pupae 1 day after injection. Incubation of Br-SGs isolated from non-diapause-type day-2 pupae with Dopa or dopamine also stimulated the expression of diapause hormone mRNA. These data indicate that environmental stimuli during embryonic development increase dopamine levels in both hemolymph and Br-SGs from the larval stage to early pupal stage, which results in laying of diapause-destined eggs by female adults through enhanced expression of the diapause hormone gene.  相似文献   

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