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1.
【目的】鉴定我国自行分离的苏云金芽孢杆菌(Bacillus thuringiensis, Bt)菌株中vip3A基因的分布和基因型,从其中对鳞翅目幼虫表现高毒力的Bt菌株中克隆vip3Aa基因。【方法】利用PCR-RFLP方法确定vip3A基因的分布和鉴定基因型,利用PCR方法克隆vip3A全长基因。【结果】171株野生型Bt菌株中共鉴定出63株含有vip3A基因,均与vip3Aa1类基因相似。从TF9和Bt16菌株中克隆得到2个vip3Aa基因,分别构建了携带vip3Aa基因的表达载体p30vip-26和p30vip-27,SDS-PAGE和Western Blot分析表明,IPTG诱导后均可表达88 kDa左右的Vip3A蛋白,蛋白可溶性分析表明约10%可溶。这两种基因序列已被国际Bt基因命名委员会分别正式命名为vip3Aa26和vip3Aa27。生物测定结果显示,Vip3Aa27蛋白对粉纹夜蛾(Trichoplusia ni)、甜菜夜蛾(Spodoptera exigua)和棉铃虫(Helicoverpa armigera)3种重要鳞翅目害虫初孵幼虫的毒力较高,LC50值分别为0.125 μg/mL,0.238 μg/mL和9.238 μg/mL。而Vip3Aa26蛋白仅对粉纹夜蛾有活性,LC50值为4.423 μg/mL。【结论】本研究中的Vip3Aa27蛋白对粉纹夜蛾、甜菜夜蛾和棉铃虫幼虫均能表现高杀虫活性,而Vip3Aa26蛋白仅对粉纹夜蛾幼虫有活性,实验结果表明Vip3A蛋白个别氨基酸的变化对其杀虫活性影响很大。  相似文献   

2.
苏云金芽孢杆菌vip3A基因的检测及保守性分析   总被引:5,自引:0,他引:5  
Vip3A蛋白是苏云金芽孢杆菌(Bacillus thuringiensis,Bt)在营养期分泌的一类新型杀虫蛋白。用PCR方法从114个Bl菌株和41个Bl标准菌株中筛选到39株即约25%的菌株含有vip3A基因。利用所制备的Vip3A蛋白的多克隆抗体对以上含有vip3A基因的Bt菌株进行Western印迹分析,发现多数PCR反应为阳性的菌株都产生89kD大小的蛋白,其中有4株没有Vip3A蛋白的表达。从以上菌株中挑选2个对夜蛾科害虫具有较高和较低毒力的菌株,即S101和6ll,并分别进行vip3A基因的克隆和测序,再与GenBank上所登录的其它6个全长vip3A基因和2个已报道的但未登录GenBank的vip3A基因进行核苷酸和氨基酸序列比较,结果表明,vip3A是一个极其保守的基因。将以上所克隆的2个却3A基因即vip3A—S101和vip3A-611分别插入表达载体pQE30构建了表达质粒pOTP-S101和pOTP-6ll,转化到大肠杆菌M15,经lmmol/L IPTG诱导后均表达89kD大小的Vip3A蛋白。蛋白可溶性试验表明,Vip3A-S101和Vip3A-611分别有48%和35%的蛋白是可溶的。将Vip3A-S101和Vip3A-6ll蛋白和已报道的Vip3A—S184蛋白对初孵斜纹夜蛾(Spodoptera litura)幼虫进行生物测定,结果表明,3个Vip3A蛋白对斜纹夜蛾幼虫毒力没有显著性差异,这说明了Vip3A个别氨基酸的变化对蛋白的杀虫活性没有影响。  相似文献   

3.
【目的】获得对二点委夜蛾Athetis lepigone(M(o|¨)schler)高毒力的苏云金芽胞杆菌(Bt)菌株,寻找对该虫具有特异杀虫活性的蛋白毒素,探索Bt菌株或其杀虫基因应用于二点委夜蛾防治的可行性。【方法】通过生物测定方法比较了36株苏云金芽胞杆菌和一株恶臭假单胞工程菌PHB-cry1Ab对二点委夜蛾幼虫的杀虫活性,同时利用PCR-RFLP方法对这些菌株的基因型进行了分析。【结果】不同Bt菌株对二点委夜蛾幼虫的杀虫活性差别很大,杀虫活性高的菌株都含有cry1Ac基因。饲毒72 h后含单基因的BtHD-73菌株(cry1Ac)对二点委夜蛾2龄幼虫的毒力(LC_(50)值为188.51μg/g)明显高于含多基因的Bt SC-40菌株(cry1Ac,cry2Ac,cry1I,vip3A)的毒力(LC_(50)值为418.13μg/g)。含有vip3A基因的Bt SC-40和BtHD-13营养期上清液对二点委夜蛾2龄幼虫表现出一定的杀虫活性(72 h死亡率分别达到42.5%和57.4%),而无vip3A基因的Bt HD-73营养期上清液未表现出明显的杀虫活性。【结论】由cry1Ac基因编码的Cry1Ac蛋白对二点委夜蛾幼虫具有特异杀虫活性,Vip3A蛋白对二点委夜蛾幼虫可能也有一定的杀虫活性。  相似文献   

4.
枯草芽胞杆菌Bacillus subtilis常被用于表达杀虫和抗菌蛋白.为了探讨苏云金芽胞杆菌B. thuringiensis营养期杀虫蛋白基因(vip3A)在枯草芽胞杆菌中的表达情况,促进杀虫防病工程菌构建,将枯草芽胞杆菌168菌株核糖体小亚基S4蛋白基因的启动子与苏云金芽胞杆菌WB7菌株vip3A基因的编码序列连接,插入大肠杆菌Escherichia coli与枯草芽胞杆菌穿梭载体pAD123,得到重组原核表达质粒pADpvip,将重组质粒转化枯草芽胞杆菌标准菌株168和分离自辣椒体内的生防内生枯草芽胞杆菌BS-2菌株中,获得工程菌株.SDS-PAGE分析表明在枯草芽胞杆菌168菌株的部分工程菌株中有约88 kDa大小的VIP条带,而BS-2的工程菌株中未见相应的条带,表明Vip3A蛋白仅在168菌株中表达.生物测定表明有5株168的工程菌株(168vip1-4,6)表现较高的杀虫活性,工程菌株发酵稀释液(约107CFU/mL)处理的小白菜叶片饲喂斜纹夜蛾2龄幼虫72 h的杀虫效果可达87.64%~92.13%,但vip3A基因转入内生枯草芽胞杆菌BS-2中不表现杀虫作用.毒力测定表明168vip2菌株对斜纹夜蛾2龄幼虫72 h的LC50为0.0194 mL/mL.这些结果为进一步研究基因在枯草芽胞杆菌中的表达构建杀虫防病工程菌打下了基础.  相似文献   

5.
克隆了Bt9816C的vip3A基因,并将测序结果提交到GenBank(序列号:AY945939)。该基因是一个新的vip3Aa基因,Bt杀虫晶体蛋白命名委员会将其命名为vip3Aa18。在大肠杆菌BL21中表达了该基因,生物测定结果表明纯化的Vip3Aa18蛋白对棉铃虫和甜菜夜蛾具有很高的杀虫活性。序列分析结果显示Vip3Aa18C端536至667位氨基酸残基间是一个糖类结合域,推测可能参与Vip3Aa18与敏感昆虫中肠受体结合;N端272至292位氨基酸残基间存在一个跨膜螺旋,可能与Vip3Aa18形成穿孔有关。此外,Vip3Aa18还可能具有一个二硫键。这些特殊区域和位点可能与其功能密切相关。  相似文献   

6.
苏云金杆菌vip3A基因的克隆、表达及杀虫活性分析   总被引:5,自引:0,他引:5  
用全长PCR方法从野生型苏云金杆菌(Bacillus thuringiensis ,Bt)菌株S184中克隆了2.3kb大 vip3A基因并进行了序列分析。将vip3A-S184基因插入表达载体pQE30构建了表达质粒pOTP,转化大肠杆菌M15,转化子经1mmol/L IPTG诱导后可表达89kD大小的Vip3A-S184蛋白,并得到Western blot证实。蛋白可溶性试验表明,目的蛋白中约有19%是可溶的,用透射电镜观察到大多数蛋白是以包涵体形式存在的。因此,可以在自然条件下进行目的蛋白的纯化和对家兔进行免疫制备多克隆抗体,用于苏云金杆菌Vip3A蛋白表达的检测。利用IPTG进行诱导培养的菌液对甜菜夜蛾(Spodoptera exigua),斜纹夜蛾(S.litura)和棉铃虫(Helicoverpa armigera)等3种害虫的初孵幼虫进行生物测定,结果表明,Vip3A-S184蛋白对夜蛾科害虫具有较高的杀虫活性。  相似文献   

7.
Bt98 1 6C的培养上清对棉铃虫和甜菜夜蛾具有很高的杀虫活性。热敏实验表明 β -外毒素和ZwittermicinA不是其主要杀虫活性成分。Bt981 6C的无晶体株保留有卵磷酯酶C和溶血素活性 ,但是不再具有vip3A基因 ,其培养上清也丧失了杀虫活性。SDS -PAGE结果显示Bt981 6C培养上清中有Vip3A蛋白特征大小的 89kD的蛋白 ,而其无晶体株正好缺失了该蛋白。以上结果表明Bt981 6C培养上清中主要的杀虫活性成分是Vip3A蛋白。  相似文献   

8.
将构建的营养期杀虫蛋白基因vip3表达质粒pBMB2328和含杀虫晶体蛋白基因(crylAc10或crylCa)质粒同时电转化无质粒突变株BMB171并双抗筛选。经PCR特异引物扩增验证,分别得到含crylAc10和vip83、crylCa和vip83的双基因重组菌BMB2830-171和BMB2882-171。用单基因重组菌作对照,分别测定了营养期杀虫蛋白Vip83与杀虫晶体蛋白CrylAc10和Cry1Ca两组蛋白对3种重要鳞翅目害虫毒力。经统计分析,结果表明两组杀虫蛋白Vip83与CrylAc10和Vip83与CrylCa之间对棉铃虫均存在拮抗作用,对甜菜夜蛾协同作用不明显;但对小菜蛾前协同作用不明显,而后则有增效作用,其共毒系数为32.6。双基因的遗传稳定性检测表明这种正负协同关系具有一定的分子遗传稳定性,可为高效广谱工程菌的构建提供依据。  相似文献   

9.
[目的]鉴定苏云金芽孢杆菌野生型菌株Bt S2480-1的杀虫活性并挖掘该菌株含有的杀虫基因资源。[方法]采用Illumina Hiseq2000测序平台对Bt S2480-1菌株进行全基因组测序,通过生物信息学方法获得该菌株的基因组信息、基因预测以及毒蛋白基因预测识别;随后,利用LTQ-Obitrap nano-LC-MS/MS系统对该菌株的总蛋白进行了质谱分析;最后以致倦库蚊幼虫和甜菜夜蛾幼虫为靶标昆虫对该菌株进行了生物活性测定。[结果]Bt S2480-1基因组大小为6.2 Mb,GC含量为35.11%,拼接得到1个拟核和3个大质粒的可视化草图,预测编码基因6 297个,其中含有12个预测毒蛋白基因。Bt S2480-1菌株总蛋白在LTQ-Orbitrap MS/MS质谱分析中共有 1500个蛋白质获得鉴定,鉴定获得11个毒蛋白。Bt S2480-1菌株总蛋白对致倦库蚊幼虫表现出非常高的杀蚊活性,而对甜菜夜蛾幼虫杀虫活性相对偏弱,其LC50分别为27.636 μg/mL (95% FL:12.559‒61.707μg/mL)和496.833 μg/mg (95% FL:320.134-776.964μg/mg)。[结论]Bt S2480-1菌株基因组分析显示共含有12个预测毒蛋白基因,LTQ-Orbitrap MS/MS鉴定获得11个毒蛋白,Bt S2480-1菌株总蛋白对致倦库蚊和甜菜夜蛾幼虫都具有杀虫活性。  相似文献   

10.
Vip3A蛋白是苏云金芽孢杆菌(Bacillus thuringiensis,Bt)在营养期分泌的一类新型杀虫蛋白。用PCR方法从114个Bt菌株和41个Bt标准菌株中筛选到39株即约25%的菌株含有vip3A基因。利用所制备的Vip3A蛋白的多克隆抗体对以上含有vip3A基因的Bt菌株进行Western印迹分析,发现多数PCR反应为阳性的菌株都产生89 kD大小的蛋白,其中有4株没有Vip3A蛋白的表达。从以上菌株中挑选2个对夜蛾科害虫具有较高和较低毒力的菌株,即S101和611,并分别进行vip3A基因的克隆和测序,再与GenBank上所登录的其它6个全长vip3A基因和2个已报道的但未登录GenBank的vip3A基因进行核苷酸和氨基酸序列比较,结果表明,vip3A是一个极其保守的基因。将以上所克隆的2个vip3A基因即vip3AS101和vip3A611分别插入表达载体pQE30构建了表达质粒pOTP-S101和pOTP-611,转化到大肠杆菌M15,经1 mmol/L IPTG诱导后均表达89 kD大小的Vip3A蛋白。蛋白可溶性试验表明,Vip3A-S101和Vip3A-611分别有48%和35%的蛋白是可溶的。将Vip3A-S101和Vip3A-611蛋白和已报道的Vip3A-S184蛋白对初孵斜纹夜蛾 (Spodoptera litura) 幼虫进行生物测定,结果表明,3个Vip3A蛋白对斜纹夜蛾幼虫毒力没有显著性差异,这说明了Vip3A个别氨基酸的变化对蛋白的杀虫活性没有影响。  相似文献   

11.
The Vegetative insecticidal Vip3A proteins display a wide range of insecticidal spectrum against several agricultural insect pests. The fact that the expression of vip3 genes occurs only during the vegetative growth phase of Bacillus thuringiensis is a limiting factor in term of production level. Therefore, extending the synthesis of the Vip proteins to the sporulation phase is a good alternative to reach high levels of toxin synthesis. In this study, we have demonstrated that the maximal production of the secreted Vip3LB (also called Vip3Aa16) during the growth of the wild-type strain B. thuringiensis BUPM 95 is reached at the end of the vegetative growth phase, and that the protein remains relatively stable in the culture supernatant during the late sporulation stages. The vip3LB gene was cloned and expressed under the control of the sporulation dependant promoters BtI and BtII in B. thuringiensis BUPM 106 (Vip3(-)) and BUPM 95 (Vip3(+)) strains. The examination of the culture supernatants during the sporulation phase evidenced the synthesis of Vip3LB and its toxicity against the second-instars larvae of the Lepidopteron insect Spodoptera littoralis for the recombinant BUPM 106. Moreover, there was an increase of the Vip3LB synthesis level and an enhancement of the oral toxicity for the recombinant BUPM 95 resulting from the expression of the vip3LB gene during both the vegetative and sporulation phases and the relative stability of the Vip3LB protein.  相似文献   

12.
AIMS: To determine the expression time courses and high expression level of Vip2A(c) and Vip1A(c) in Bacillus thuringiensis, and survey their insecticidal toxicity and insecticidal spectrum. METHODS AND RESULTS: A kind of new vegetative insecticidal toxin genes encoded by a single operon from B. thuringiensis had been cloned and sequenced. The individual genes, 5-terminus truncated genes and the operon were respectively expressed in Escherichia coli. Only N-terminus deleted Vip2A(c) and Vip1A(c) proteins could be purified by Ni-NTA agarose, while others were processed and their N-terminal signal peptides were cleaved. The individual genes and the operon were also expressed in B. thuringiensis. Both proteins were mostly secreted into the cell supernatants. The expression level of Vip1A(c) was influenced because of the interruption of vip2A(c) gene on the operon. Bioassays showed that neither separate protein nor both performed any toxicity against tested lepidopteran and coleopteran insects. CONCLUSIONS: Vip2A(c) and Vip1A(c) have similar secretion mechanism in E. coli and B. thuringiensis. Vip1A(c) remained its high expression level only when being expressed with vip2A(c) gene as an operon in B. thuringiensis. SIGNIFICANCE AND IMPACT OF THE STUDY: Expression of vip2A(c) and vip1A(c) genes in E. coli and B. thuringiensis were investigated. This would help to make clear the secretion mechanism of VIP proteins and study the function of ADP-ribosyltransferase Vip2.  相似文献   

13.
AIMS: To compare vip184DeltaP gene expression time course and Vip184 protein yield under the control of promoters and Shine-Dalgarno (SD) sequences of vip184, cry3A and cry1A gene from Bacillus thuringiensis respectively. METHODS AND RESULTS: Derived from the shuttle vector pHT3101, recombinant plasmids pHPT3, pHTP3A(Delta)P and pHTP1A(Delta)P were constructed with the native vip184 gene and the vip184(Delta)P gene, either under the control of promoters and SD sequences of cry3A or cry1A genes. When the above plasmids were transformed into an acrystalliferous B. thuringiensis strain Cry(-)B, their expression time course were consistent with those of vip184, cry3A and cry1A gene respectively. The maximum yields of Vip184 protein were increased when under the control of promoters plus SD sequences of cry3A and cry1A gene. CONCLUSIONS: The results showed that both cry3A and cry1A promoter/SD sequence combinations were able to enhance synthesis of Vip184 and change its expression time course. SIGNIFICANCE AND IMPACT OF THE STUDY: Both cry3A and cry1A promoter/SD systems offer a method for improving the expression efficacy of the vip184 gene in B. thuringiensis and it is possible to co-express the vip184 gene and cry genes and accumulate Vip184 in the form of inclusion bodies by these systems in order to construct novel useful B. thuringiensis engineered strains.  相似文献   

14.
15.
A novel vip3-type gene named vip3LB has been isolated from Bacillus thuringiensis strain BUPM95. The corresponding secreted vegetative insecticidal protein was active against the lepidopteran insect Ephestia kuehniella. The vip3LB gene was shown, for the first time, to be carried by the large plasmid containing the cry1Ia genes of B. thuringiensis. The nucleotide sequence predicted a protein of 789 amino acids residues with a calculated molecular mass of 88.5kDa. Both nucleotide and amino acid sequences similarity analysis revealed that vip3LB is a new vip3-type gene, presenting several differences with the other vip3-type genes. Heterologous expression of the vip3LB under the control of the strong promoter P(BAD) was performed in Escherichia coli and the produced protein conferred insecticidal activity against Ephestia kuehniella. This novel vegetative insecticidal protein Vip3LB could be a very useful biological control agent.  相似文献   

16.
AIMS: The objective of this work was to enhance the insecticidal activity or widen the pesticidal spectrum of a commercial Bacillus thuringiensis strain YBT1520. METHODS AND RESULTS: A vegetative insecticidal protein gene vip3Aa7, under the control of its native promoter and cry3A promoter, was subcloned into B. thuringiensis acrystalliferous BMB171 to generate BMB8901 and BMBvip respectively. It was found that the amount of Vip3Aa7 protein produced by BMBvip was 3.2-fold more than that produced by BMB8901. Therefore, the vip3Aa7 gene under the control of cry3A promoter was transformed into strain YBT1520. The toxicity of the resulting strain BMB218V against Spodoptera exigua was 10-fold more than that of YBT1520, and that the toxicity of BMB218V against Helicoverpa armigera retained the same level as that of strain YBT1520. CONCLUSIONS: Strain YBT1520 obtained high toxicity against S. exigua after it was transformed and expressed the foreign vip3Aa7 gene. SIGNIFICANCE AND IMPACT OF THE STUDY: Commercial B. thuringiensis strain YBT1520 has high toxicity against H. armigera and Plutella xylostella, but almost no activity against S. exigua, which is a major crop pest in China. This work provides a new strategy for widening the activity spectrum of B. thuringiensis against agriculture pests.  相似文献   

17.
Twenty-four serovars of Bacillus thuringiensis (Bt) were screened by polymerase chain reaction to detect the presence of vegetative insecticidal protein gene (vip)-like sequences by using vip3Aa1-specific primers. vip-like gene sequences were identified in eight serovars. These genes were cloned and sequenced. The deduced amino acid sequence of the vip3Aa14 gene from Bacillus thuringiensis tolworthi showed considerable differences as compared to those of Vips reported so far. The vip3Aa14 gene from Bt tolwarthi was expressed in Escherichia coli using expression vector pET29a. The expressed Vip3Aa14 protein was found in cytosolic supernatant as well as pellet fraction, but the protein was more abundant in the cytosolic supernatant fraction. Both full-length and truncated (devoid of signal sequence) Vips were highly toxic to the larvae of Spodoptera litura and Plutella xylostella. Truncation of Vip3Aa14 protein at N-terminus did not affect its insecticidal activity.  相似文献   

18.
Vip3A is an 89-kDa protein secreted by Bacillus thuringiensis during vegetative growth. To determine the importance of Vip3A for the insect pathogenicity of B. thuringiensis the vip3A gene was deleted from strain HD1, yielding strain HD1Deltavip3A. Compared with HD1, strain HD1Deltavip3A was one-fourth as toxic to Agrotis ipsilon larvae and less than one-tenth as toxic to Spodoptera exigua larvae. When streptomycin was included in the S. exigua diet the toxicity of HD1Deltavip3A was approximately half that of HD1. Addition of HD1 spores increased the toxicity of purified Cry1 protein more than 600-fold against S. exigua, whereas addition of HD1Deltavip3A spores increased toxicity of Cry1 protein approximately 10-fold. These results demonstrate that an important component of B. thuringiensis insecticidal activity against S. exigua is the synthesis of Vip3A protein by B. thuringiensis cells after ingestion of spores and crystal proteins by insect larvae.  相似文献   

19.
Of 188 Australian Bacillus thuringiensis strains screened for genes encoding soluble insecticidal proteins by polymerase chain reaction/restriction-length fragment polymorphism (RFLP) analysis, 87% showed the presence of such genes. Although 135 isolates (72%) produced an RFLP pattern identical to that expected for vip3A genes, 29 isolates possessed a novel vip-like gene. The novel vip-like gene was cloned from B. thuringiensis isolate C81, and sequence analysis demonstrated that it was 94% identical to the vip3Ba1 gene. The new gene was designated vip3Bb2. Cell-free supernatants from both the B. thuringiensis strain C81 and from Escherichia coli expressing the Vip3Bb2 protein were toxic for the cotton bollworm, Helicoverpa armigera.  相似文献   

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