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1.
随着转基因技术的迅猛发展,转基因产品的安全性受到了广泛关注。转基因检测用有证标准物质在确保转基因产品定性、定量检测结果的可比性和可追溯性方面发挥着重要作用。但转基因蛋白质标准物质的开发相对缓慢,其中一个难点是制备高纯度的转基因蛋白质候选物。苏云金芽胞杆菌Bacillus thuringiensis cry1Ah1基因因其对亚洲玉米螟等鳞翅目害虫有很好的杀虫活性,已用于转基因抗虫作物的研制,并获得具有较好抗虫性状的转基因株系。为了研发Cry1Ah蛋白有证标准物质,亟需建立其制备及纯化体系。文中优化了利用Bt表达系统制备Cry1Ah蛋白的体系,利用离子交换色谱法和排阻色谱法逐级纯化的方法,获得了高纯度的Cry1Ah蛋白 (排阻色谱纯度:99.6%)。生物活性测定结果表明,纯化的Cry1Ah蛋白与原毒素对小菜蛾Plutella xylostella的杀虫活性没有显著差异。最后使用Edman降解法和质谱法确定了Cry1Ah蛋白活化后的氨基酸序列。综上所述,获得的Cry1Ah纯蛋白可用于蛋白质标准物质的研制。  相似文献   

2.
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   

3.
苏云金芽孢杆菌(Bt)微生物制剂是农业、林业和饮用水等领域用来控制靶标害虫幼虫的有效工具,至今已经有50余年的使用历史。同时其在美国、欧洲和其他一些国家被广泛用于经过认证的有机农业生产之中。目前已获审批的转基因Bt作物中最常使用的是Cry蛋白。Cry蛋白的作用机制、食品安全性以及致敏性已经经过啮齿类动物、农场动物和人体内试验和生物信息学研究的严格检验。Cry蛋白的杀虫作用只在靶标害虫的碱性消化道内,与中肠上皮细胞的特异蛋白受体结合才能起到杀虫作用,而其他非靶标生物体内(人类、猕猴、小鼠、大鼠和牛等)都被证明没有这种特异蛋白质受体。美国、欧洲和其他国家的管理机构都已经证实了转基因Bt作物和Cry蛋白在农作物和饮用水中残留的安全性。食物加工过程能够最大化地减少转基因作物中功能性Cry蛋白的摄入。转基因抗虫作物有利于降低农药杀虫剂的使用的同时,也能够有效防止玉米中伏马菌毒素的污染。  相似文献   

4.
为了提高杀虫蛋白Cry1和Cry2产量,首先采用Plackett-Burman设计筛选出发酵培养基中影响苏云金芽胞杆菌4.0718表达毒蛋白Cry1的显著性因子为黄豆饼粉和MnSO4·H2O,Cry2的产量在该配方中无显著性影响因子.然后利用最速上升实验逼近Cry1最大产出区域,找到后续试验中心点.最后通过响应面优化得到黄豆饼粉和MnSO4·H2O的最佳浓度为11.5 g/L和0.02 g/L,使Cry1和Cry2产量分别达到0.32 mg/mL和0.11 mg/mL,比原优选配方产量提高了两倍多.该优化配方发酵液对棉铃虫的半致死浓度(LC50)为1.09 μL/mL,杀虫活性比原优化配方显著提高.  相似文献   

5.
将构建的营养期杀虫蛋白基因vip83表达质粒pBMB2 32 8和含杀虫晶体蛋白基因(cry1Ac1 0或cry1Ca)质粒同时电转化无质粒突变株BMB1 71并双抗筛选。经PCR特异引物扩增验证 ,分别得到含cry1Ac1 0和vip83、cry1Cavip83的双基因重组菌BMB2 830 1 71和BMB2 882 1 71。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Cry1Ac1 0和Cry1Ca两组蛋白对 3种重要鳞翅目害  相似文献   

6.
Cry1Ab蛋白对稻纵卷叶螟幼虫体内三种保护酶活性的影响   总被引:1,自引:0,他引:1  
室内采用酶活力测定方法研究转B t基因水稻表达的Cry1Ab蛋白对稻纵卷叶螟幼虫体内3种保护酶(AChE、SOD和CAT)活性的影响。结果表明,用转B t基因水稻处理稻纵卷叶螟幼虫,饲喂4 h、36 h后,其体内AChE活力分别比对照增加了52.09%、128.51%,并且都极显著(P<0.01)高于对照组;取食转基因水稻叶片4 h后,幼虫体内SOD酶活性比对照提高了91.5%,与对照有显著差异;36 h后活性达到最大值,但与对照差异不显著。取食转基因水稻叶片24 h后,幼虫体内CAT酶活性达到最大值且高于对照,但与对照差异不显著;48 h后酶活性受到显著抑制,与对照差异显著。同时,测定了幼虫体内及其粪便中Cry1Ab蛋白含量的变化,结果表明,取食转基因水稻叶片12 h后,进入体内的Cry1Ab蛋白随粪便排出,幼虫体内的Cry1Ab蛋白含量一直低于粪便中的含量,且在24 h时两者差异达到最大。由于Cry1Ab蛋白在幼虫体内的积累,扰乱了稻纵卷叶螟幼虫体内AChE、SOD和C AT保护酶的动态平衡,使虫体内自由基的清除遇到障碍,从而对其产生毒害作用。  相似文献   

7.
为研究苏云金芽胞杆菌杀虫晶体蛋白在细胞中的定位及在细胞中的形成, 构建了Cry1Ac-GFP融合蛋白, 大小约为160 kD. 将携带cry1Ac启动子的cry1Ac-gfp融合基因片段克隆到pHT304载体上, 获得融合表达载体pHTcry1Ac-gfp. pHTcry1Ac-gfp转化到无晶体突变株HD-73 cry-中, 获得融合表达菌株HD-73-(pHTcry1Ac-gfp). gfp基因通过同源重组插入到HD-73内源大质粒pHT73上cry1Ac基因的3′端, 获得原位融合表达菌株HD-73Φ(cry1Ac-gfp)3534. 激光共聚焦显微镜和Western杂交分析表明, 不对称隔膜形成时, HD-73-(pHTcry1Ac-gfp)和HD-73Φ(cry1Ac-gfp)3534细胞中检测到Cry1Ac-GFP融合蛋白的表达. 融合蛋白颗粒在细胞中的聚集存在一定的极性, 分布于母细胞不对称隔膜附近. Cry1Ac-GFP和Cry1Ac蛋白对小菜蛾的杀虫活性在95%置信区间内没有明显差异.  相似文献   

8.
【目的】利用非cry基因启动子PexsY(芽胞外壁基质组成蛋白编码基因启动子)表达Cry1Ac晶体蛋白,发现可用于cry基因表达的新元件,为高效工程菌的构建奠定基础。【方法】采用启动子融合lacZ技术,通过β-半乳糖苷酶活性分析了PexsY启动子和截短的PexsY启动子的转录活性;利用该启动子在苏云金芽胞杆菌(Bacillus thuringiensis,Bt)HD73菌株中表达了cry1Ac基因,通过透射电子显微镜观察晶体形态;蛋白定量、SDS-PAGE比较蛋白产量;生物活性测定进行功能验证。【结果】PexsY启动子在芽胞晚期转录活性很高,透射电镜观察到利用该启动子表达的cry1Ac基因形成了菱形晶体,SDS-PAGE分析可以检测到133kDa的Cry1Ac蛋白,且与cry3A启动子指导表达的蛋白产量相近,少于cry8E启动子指导表达的蛋白产量;生物活性测定表明PexsY指导表达Cry1Ac蛋白对玉米螟(Ostrinia furnacalis)具有杀虫活性。【结论】在Bt无晶体突变体中,非cry基因启动子PexsY可以正常表达133kDa的Cry1Ac蛋白,并形成晶体,具有在芽胞形成晚期表达cry基因的能力,该类启动子将在Bt工程菌构建中发挥重要作用。  相似文献   

9.
S-层(S-layer)普遍存在于古菌、G~+、G~-菌中,由S-层蛋白所构成细菌S-层结构的生物体中,其功能引起了科学家的广泛关注,但目前S-层的功能大都处于推测阶段。究其原因,是因为外源S-层基因可以造成宿主大肠杆菌的致死效应。本研究将一株苏云金芽胞杆菌的两个S-层蛋白基因(GenBank登录号为AJ012290和AY460125)的3’端序列在大肠杆菌BL21(DE3)中成功进行异源表达,在0.8mmol/LIPTG诱导培养6h时,菌体中包涵体表达量达到最高;并对表达蛋白进行了初步分离纯化,以期为后期利用该纯化蛋白进行抗血清制备,进而对该菌的S-层蛋白在宿主菌中的定位、功能分析打下基础。  相似文献   

10.
类钙粘蛋白(cadherin-likeprotein)位于昆虫中肠刷状缘膜囊泡(brushbordermembranevesicles,BBMV)上,是苏云金芽孢杆菌(Bacillusthuringiensis,Bt)产生的杀虫晶体蛋白(BtCry蛋白)的主要受体之一。它能够与BtCry蛋白结合,引起细胞膜的渗透性发生改变,促进BtCry蛋白对敏感昆虫的毒杀作用。类钙粘蛋白基因的突变还能导致敏感昆虫对BtCry蛋白产生抗性。因此,研究昆虫类钙粘蛋白与BtCry蛋白之间的相互作用,将有助于揭示BtCry蛋白杀虫作用机理。文章对昆虫类钙粘蛋白种类、结构特征、在昆虫体内的分布、及其与BtCry蛋白之间的相互作用等方面的研究现状进行详细论述。  相似文献   

11.
通过体外重组的方法,实现了苏云金芽孢杆菌杀虫晶体蛋白Cry1Aa和Cry1Ca的功能性结构域Ⅰ、Ⅱ和Ⅲ的互换,得到了6株苏云金杆菌重组菌株BT-ACC,BT-AAC,BT-ACA,BT-CAA,BT-CCA和BT-CAC。SDS-PAGE和Westernblot分析表明,重组菌株BT-CAA和BT-CCA能表达产生135kDa左右的杂交晶体蛋白Cry1CAA和Cry1CCA,但其蛋白表达量较野生型Cry1Aa和Cry1Ca低。用牛胰蛋白酶对杂交晶体蛋白Cry1CAA、Cry1CCA及野生型Cry1Aa和Cry1Ca进行消化,证明所有晶体蛋白都能产生65kDa的活性毒素。电镜观察发现,野生菌株BT-Cry1Aa和BT-Cry1Ca形成典型的菱形晶体,而重组菌株BT-CCA和BT-CAA则形成球形或颗粒状杂交晶体。纯化晶体的生物测定显示,杂交晶体蛋白Cry1CAA和Cry1CCA对甜菜夜蛾的毒力比野生型晶体蛋白降低3~5倍,对棉铃虫的毒力比野生型晶体蛋白降低了190~260倍。研究结果表明,苏云金杆菌晶体蛋白不同结构域的相互作用会影响杂交晶体蛋白的表达、晶体形态和杀虫活性。  相似文献   

12.
Cry1Ab is one of the most studied insecticidal proteins produced by Bacillus thuringiensis during sporulation. Structurally, this protoxin has been divided in two domains: the N-terminal toxin core and the C-terminal portion. Although many studies have addressed the biochemical characteristics of the active toxin that corresponds to the N-terminal portion, there are just few reports studying the importance of the C-terminal part of the protoxin. Herein, we show that Cry1Ab protoxin has a unique natural cryptic endotoxic property that is evident when their halves are expressed individually. This toxic effect of the separate protoxin domains was found against its original host B. thuringiensis, as well as to two other bacteria, Escherichia coli and Agrobacterium tumefaciens. Interestingly, either the fusion of the C-terminal portion with the insecticidal domain-III or the whole N-terminal region reduced or neutralized such a toxic effect, while a non-Cry1A peptide such as maltose binding protein did not neutralize the toxic effect. Furthermore, the C-terminal domain, in addition to being essential for crystal formation and solubility, plays a crucial role in neutralizing the toxicity caused by a separate expression of the insecticidal domain much like a dot/anti-dot system.  相似文献   

13.
The insecticidal toxin gene of Bacillus thuringiensis (Bt) is the most commonly used to develop insect‐resistant living modified organisms (LMOs). Insecticidal proteins produced in transgenic plants are released into the soil from the roots. In this study, possible effects of crystal 1Ac (Cry1Ac) protein on the soil microbial community in Korea were studied. To purify the insoluble Cry1Ac protein expressing Escherichia coli cells, we performed repeated sonication and PBS washing of the insoluble part and Cry1Ac protein was isolated in soluble form from the insoluble form using 100 mM Na2CO3 buffer (pH 9.6) without affinity bead. Also, size‐exclusion chromatography (SEC) was performed to increase the purity of the isolated Cry1Ac protein. The final protein product was identified as Cry1Ac protein through MALDI‐TOF. Insecticidal activity of Cry1Ac protein was demonstrated through the death of Plutella xylostella treated with Cry1Ac protein. Purely isolated Cry1Ac protein showed the same insecticidal activity as Cry1Ac expressed in LM crops. To investigate the change of soil microbial distribution using maize field soils treated with Cry1Ac protein, we isolated high quality metagenomic DNAs from buffer‐ and Cry1Ac protein‐treated soil groups, and analyzed the distribution of soil microorganisms through next‐generation sequencing (NGS) analysis. NGS results showed a similar microbial distribution in both buffer‐ and Cry1Ac protein‐treated samples. These results suggest a useful risk assessment method for domestic targeted insect and soil microorganisms using the Cry1Ac protein.  相似文献   

14.
苏云金杆菌以色列亚种的p19基因、cry11Aa基因和p20基因位于同一操纵子上,据推测辅助蛋白P19可能与Cry11Aa蛋白的晶体化相关。本研究利用穿梭载体pHT3101构建了两个重组质粒pHcy1和pHcy3,两质粒均携带cry11Aa基因,但后者完全缺失了cry11Aa基因上游的p19基因。将重组质粒电激转化至苏云金杆菌无晶体突变株4Q7中进行蛋白表达,SDS-PAGE结果表明在4Q7(pHcy1)和4Q7(pHcy3)中均能检测到正常表达的Cry11Aa蛋白,但单位体积培养液的Cry11Aa蛋白在辅助蛋白P19存在时的表达量明显高于其单独表达的表达量;透射电镜观察显示两菌株中的Cry11Aa蛋白形成了大小相近、形状相似的双梯形晶体;另外,生物测定结果表明重组菌株4Q7(pHcy1)和4Q7(pHcy3)对三龄致倦库蚊的杀虫活性没有显著性差异。该现象说明辅助蛋白P19的缺失对Cry11Aa蛋白的晶体形成和杀蚊活性没有影响,但P19作为分子伴侣在一定程度上帮助提高了Cry11Aa蛋白的表达水平。  相似文献   

15.
A synthetic Bacillus thuringiensis (Bt) cry1C gene was introduced into broccoli (Brassica oleracea ssp. italica) by Agrobacterium-mediated transformation. Twenty-one Cry1C transgenic plants were regenerated from 400 hypocotyl and petiole explants. Variable amounts of stable steady- state cry1C mRNA accumulated in different transgenic plants. Cry1C protein (up to 0.4% of total soluble protein) was produced in correlation with the cry1C mRNA levels. Leaf section and whole-plant bioassays were done using diamondback moth (DBM) larvae from lines susceptible to Bt or resistant to Cry1A or Cry1C proteins (Cry1AR or Cry1CR, respectively). Plants with high levels of Cry1C protein caused rapid and complete mortality of all three types of DBM larvae with no defoliation. Plants with lower levels of Cry1C protein showed an increasing differential between control of susceptible of Cry1AR DBM. This study demonstrated that high production of Cry1C protein can protect transgenic broccoli not only from susceptible or Cry1AR DBM larvae but also from DBM selected for moderate levels of resistance of Cry1C. The Cry1C- transgenic broccoli were also resistant to two other lepidopteran pests of crucifers (cabbage looper and imported cabbage worm). These plants will be useful in studies of resistance management strategies involving multiple transgenes. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

16.
The aim of this study was to evaluate the effect of feeding Bacillus thuringiensis (Bt) rice expressing the Cry1Ab/1Ac protein on broiler chicken. The genetically modified (GM) Bt rice was compared with the corresponding non-GM rice regarding performance of feeding groups, their health status, relative organ weights, biochemical serum parameters and occurrence of Cry1Ab/1Ac gene fragments. One hundred and eighty day-old Arbor Acres female broilers with the same health condition were randomly allocated to the two treatments (6 replicate cages with 15 broilers in each cage per treatment). They received diets containing GM rice (GM group) or its parental non-GM rice (non-GM group) at 52–57% of the air-dried diet for 42 days. The results show that the transgenic rice had a similar nutrient composition as the non-GM rice and had no adverse effects on chicken growth, biochemical serum parameters and necropsy during the 42-day feeding period. In birds fed the GM rice, no transgenic gene fragments were detected in the samples of blood, liver, kidneys, spleen, jejunum, ileum, duodenum and muscle tissue. In conclusion, the results suggest that Bt rice expressing Cry1Ab/1Ac protein has no adverse effects on broiler chicken. Therefore, it can be considered as safe and used as feed source for broiler chicken.  相似文献   

17.
Gene transfer technology provides an alternativeapproach to breed insect-resistant crops. Insect-resistantgenes from plants or microbes could be introduced intoplants and the expressed insecticidal protein in plantcells could kill the target insects. Transgenic plantsexpressing a corresponding insecticidal crystal protein genefrom Bacillus thuringiensis (Bt) have been developed sincethe early 1980s [1,2]. Analysis of Bt gene sequencesrevealed that they contain numerous motifs seldom foundin p…  相似文献   

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