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1.
球形芽抱杆菌C3-41菌株(Bacillussphaericus C3-41)对致倦库蚊(Culexquinquefa-sciatus)幼虫有很高毒效,对2龄和3—4龄幼虫的半致死剂量(LD50)分别为63.1和89.7芽孢/蚊幼虫。处理浓度越高,取食时间越长,蚊幼虫取食到的杀蚊活性物质量越多,死亡率越高。当蚊幼虫取食互致死剂量杀蚊活性物质后,球形芽孢杆菌在感染的活幼虫体内不增殖;但当蚊幼虫取食致死剂量杀蚊活性物质后,蚊幼死亡,球形芽抱杆菌在死蚊幼虫体内增殖明显,6天内芽抱从感染初期的1.86×102/蚊幼虫增加到1.59×106/蚊幼虫。芽抱在死蚊幼虫体内能正常荫发、生长、产孢和形成毒素。增殖的芽抱同样对致倦库蚊幼虫有较高毒力。  相似文献   

2.
球形芽孢杆菌(Bacillus sphaericus)LP1-G菌株在MBS培养基上能正常生长、发育,产生位于芽孢孢外膜外的伴孢晶体。其产生的41.9和51.2kD二元毒素蛋白合成于芽孢形成期,另一分子量约为49kD蛋白和二元毒素同期合成,并随着芽孢的释放而被降解。生物测定结果表明该菌株在营养体生长阶段对致倦库蚊幼虫无毒,孢子囊初期毒力较高,并在整个芽孢形成期都维持较高的毒力水平。其全发酵液对敏感和抗性库蚊幼虫都具有中等的毒杀作用,对3~4龄幼虫48h的LC_50。值分别为0.113和0.137mg/mL。该菌株对敏感和抗性致倦库蚊幼虫的毒杀作用可能同其产生49kD蛋白相关。  相似文献   

3.
球形芽孢杆菌(Bacillus sphaericus)LP1-G菌株在MBS培养基上能正常生长、发育,产生位于芽孢孢外膜外的伴孢晶体。其产生的41.9和51.2kD二元毒素蛋白合成于芽孢形成期,另一分子量约为49kD蛋白和二元毒素同期合成,并随着芽孢的释放而被降解。生物测定结果表明该菌株在营养体生长阶段对致倦库蚊幼虫无毒,孢子囊初期毒力较高,并在整个芽孢形成期都维持较高的毒力水平。其全发酵液对敏感和抗性库蚊幼虫都具有中等的毒杀作用,对3~4龄幼虫48h的LC_50。值分别为0.113和0.1  相似文献   

4.
球形芽孢杆菌C3-41是我国分离的一株对蚊幼虫有毒杀作用的高毒力菌株,对库蚊、按蚊幼虫的毒性高于2362菌株,Southern杂交证明C\-3\|41总DNA中35Kb HindIII片段上带有419和514kD二元毒素基因,该片段由3479个核苷酸组成,核苷酸序列同2362菌株的二元毒素基因序列完全相同。含二元毒素基因的重组质粒pCW\|1和pCW\|2能在大肠杆菌中表达产生二元毒蛋白,但表达量低,重组子杀蚊毒性低。无晶体型苏云金芽孢杆菌以色列亚种重组子在其芽孢形成中能产生以晶体形式存在的二元毒素蛋白,其全发酵液和纯化晶体蛋白的杀蚊活性与C\-3\|41相近。  相似文献   

5.
球形芽孢杆菌LP1—G的发酵特性及杀蚊活性   总被引:2,自引:0,他引:2  
球形芽孢杆菌(Bacillus sphaericus)LP1-G菌株在MBS培养基上能正常生长、发育,产生位于芽孢孢外膜外的伴孢晶体。其产生的41.9和51.2kD二元毒素蛋白合成芽孢形成期,另一分子量约为49kD蛋白和二元毒素同期全成,并随着芽孢的释放而被降解。生物测定结果表明该菌株在营养体生长阶段对致倦库蚊幼虫无毒,孢子种初期毒力较高,关在整个芽孢形成期都维持较高的毒力水平。其全发酶液对敏感和  相似文献   

6.
将对鞘翅目昆虫有特异毒性的苏云芽孢杆菌cry3A基因电转化到只对鳞翅目昆虫有毒性的苏云金芽孢杆菌野隆型菌株YBT803-1中,获得转了BMBY-001。SDS-PAGE分析及镜检结果表明,cry3A基因可在该菌株中高效表达,但出发菌株中原有的cyr1Ab、cry1Ac及cry2的表达则受到不同程度的影响。生物测定结果显示,转子BMBY-001对柳蓝叶甲(鞘翅目)具有较高毒力,LC50为0.413μ  相似文献   

7.
将来源于球形芽孢杆菌SSII-1的mtx1毒素基因克隆至穿梭载体pBU4上,得到mtx1插入方向相反的重组质粒pMT9和pMT4.含有pMT9和pMT4的大肠杆菌转化子能表达产生Mtx1毒素,发酵液对敏感和抗性致倦库蚊幼虫具有中度毒杀作用;含有pMT9和pMT4的苏云金芽孢杆菌转化子B-pMT9和B-pMT4在营养体生长阶段对敏感蚊幼和抗性幼虫也具有毒性,毒力与野生型SSII-1相当,而不同转化子在芽孢形成期的毒力因插入的mtx1基因转录方向不同而表现出差异,其中B-pMT4对目标蚊幼毒力极低(LC50>100mg/mL),而B-pMT9对蚊幼虫具有毒性(LC50=2.49mg/mL).  相似文献   

8.
利用电脉冲将cry1C基因转子苏云金孢杆菌野生菌株YBT1535,筛选得到3个转化子。质粒电泳、PCR扩增及Southern杂交结果均证明,基因cry1C已转入菌株YBT1535。生物测定结果表明,3个转化子对甜菜夜蛾的毒力比出发菌YBT1535均有显著的提高,转化子YBT1535-1和YBT1535-3对小菜蛾和棉铃虫的生物活性与出发菌YBT1535相近,而转子化子YBT1535-2则有一定幅度  相似文献   

9.
球形芽孢杆菌C3-41对致倦库蚊的毒效及在蚊体内的再循环   总被引:1,自引:1,他引:0  
袁志明  张用梅 《昆虫学报》1994,37(4):404-410
球形芽孢杆菌Csub3-41菌株(Bacillus sphaericus C3-41)对致倦库蚊(Culex puinquefa-seiatus)幼虫有很高毒效,对2龄和3-4龄幼虫的半致死剂量(LD50)分别为63.1 和89.7芽孢/蚊幼虫。处理浓度越高,取食时间越长,蚊幼虫取食到的杀蚊活性物质量越多,死亡率越高。当蚊幼虫取食亚致死剂量杀蚊活性物质后,球形芽孢杆菌在感染的活幼虫体内不增殖;但当蚊幼虫取食致死剂量杀蚊活性物质后,蚊幼死亡,球形芽孢杆菌在死蚊幼虫体内增殖明显,6天内芽孢从感染初期的1.86X102蚊幼虫增加到1.59X106/蚊幼虫。芽孢在死蚊幼虫体内能正常萌发、生长、产孢和形成毒素。增殖的芽孢同样对致倦库蚊幼虫有较高毒力。  相似文献   

10.
芽孢杆菌E2菌株纤维素酶性质的研究   总被引:5,自引:0,他引:5  
芽孢杆菌E2菌在55℃下生长良好,在培养液中能大量积累胞外纤维素酶(190mu/mL培养液),所产生的纤维素普单一的羧甲基纤维素酶(CMCase)。羧甲基纤维素钠(CMCNa)为其专一性底物。该酶作用的pH为4.5-8.0;最适pH为6.5-7.0;在pH4.0-8.0范围内较稳定,酶作用的最适温度为55℃;在60℃处理10,30,60,90以及120分钟后,残余酶活分别为95%,80.3%,40  相似文献   

11.
袁志明 LeRo.  CN 《昆虫学报》1998,41(4):337-342
根据Bacillus sphaericus 2362二元毒素基因核苷酸序列合成的一组寡聚核苷酸为引物,通过PCR扩增出1.1 kb的DNA片段作探针检测了C3-41、IAB881、IAB872、BS-197和lPl-G菌株中二元毒素基因。Southern杂交表明C3-41、IAB881、IAB872和BS-197菌株中3.5kb Hind III及LPl-G中4.7kb Hind III的酶切片段分别带有与探针有高度同源性的二元毒素基因。SDS-PAGE和Western印迹杂交表明所有菌株都能产生41.9kD和51.4kD的毒素蛋白。C3.41、IAB881、BS.197和2362的全发酵液和碱抽提液对敏感尖音库蚊Culex pipienssubsp.Pipiens幼虫毒性高,但对抗性幼虫几乎无毒,LPl-G对敏感和抗性蚊幼虫具有相同的中度毒杀作用;IAB872对敏感幼虫毒性高,对抗性幼虫的毒力同LPl-G相似。这两株菌对抗性蚊幼虫的毒性可能是由Mtx毒素蛋白所导致的。  相似文献   

12.
The nucleotide sequences of a 3,479-base-pair HindIII DNA fragment from Bacillus sphaericus 2362 and a 2,940-base-pair fragment from strain 2297 were determined; only minor differences were detected between them. Each contained two open reading frames coding for proteins of 51.4 and 41.9 kilodaltons. Both proteins were required for toxicity to larvae of the mosquito Culex pipiens.  相似文献   

13.
Li T  Sun F  Yuan Z  Zhang Y  Yu J  Pang Y 《Current microbiology》2000,40(5):322-326
The cyt1Aa gene of Bacillus thuringiensis subsp. israelensis and binary toxin gene of Bacillus sphaericus C3-41 were introduced into an acrystalliferous strain of B. thuringiensis independently and in combination by using shuttle vector pBU4. SDS-PAGE and Western blot analysis proved that cyt1Aa and binary toxin genes coexpressed during the sporulation of the recombinant. Transformant strain expressing the Cyt1Aa and binary toxin proteins in combination was more toxic to susceptible and resistant Culex pipiens quinquefasciatus than the transformants expressing Cyt1Aa protein or binary toxin proteins independently. It was suggested that large amount of production of Cyt1Aa protein and binary toxin proteins possibly interacted synergistically, thereby increasing its mosquitocidal toxicity significantly. Received: 22 October 1999 / Accepted: 22 November 1999  相似文献   

14.
Cry11A from Bacillus thuringiensis subsp. israelensis and Cry11Ba from Bacillus thuringiensis subsp. jegathesan were introduced, separately and in combination, into the chromosome of Bacillus sphaericus 2297 by in vivo recombination. Two loci on the B. sphaericus chromosome were chosen as target sites for recombination: the binary toxin locus and the gene encoding the 36-kDa protease that may be responsible for the cleavage of the Mtx protein. Disruption of the protease gene did not increase the larvicidal activity of the recombinant strain against Aedes aegypti and Culex pipiens. Synthesis of the Cry11A and Cry11Ba toxins made the recombinant strains toxic to A. aegypti larvae to which the parental strain was not toxic. The strain containing Cry11Ba was more toxic than strains containing the added Cry11A or both Cry11A and Cry11Ba. The production of the two toxins together with the binary toxin did not significantly increase the toxicity of the recombinant strain to susceptible C. pipiens larvae. However, the production of Cry11A and/or Cry11Ba partially overcame the resistance of C. pipiens SPHAE and Culex quinquefasciatus GeoR to B. sphaericus strain 2297.  相似文献   

15.
Two field-collected Culex quinquefasciatus colonies were subjected to selection pressure by three strains of Bacillus sphaericus, C3-41, 2362, and IAB59, under laboratory conditions. After 13 and 18 generations of exposure to high concentrations of C3-41 and IAB59, a field-collected low-level-resistant colony developed >144,000- and 46.3-fold resistance to strains C3-41 and IAB59, respectively. A field-collected susceptible colony was selected with 2362 and IAB59 for 46 and 12 generations and attained >162,000- and 5.7-fold resistance to the two agents, respectively. The pattern of resistance evolution in mosquitoes depended on continuous selection pressure, and the stronger the selection pressure, the more quickly resistance developed. The resistant colonies obtained after selection with B. sphaericus C3-41 and 2362 showed very high levels of cross-resistance to B. sphaericus 2362 and C3-41, respectively, but they displayed only low-level cross-resistance to IAB59. On the other hand, the IAB59-selected colonies had high cross-resistance to both strains C3-41 and 2362. Additionally, the slower evolution of resistance against strain IAB59 may be explained by the presence of another larvicidal factor. This is in agreement with the nontoxicity of the cloned and purified binary toxin (Bin1) of IAB59 for 2362-resistant larvae. We also verified that all the B. sphaericus-selected colonies showed no cross-resistance to Bacillus thuringiensis subsp. israelensis, suggesting that it would be a promising alternative in managing resistance to B. sphaericus in C. quinquefasciatus larvae.  相似文献   

16.
A 3.7-kilobase (kb) XbaI fragment harboring the cryIVB gene (L. Thorne, F. Garduno, T. Thompson, D. Decker, M. A. Zounes, M. Wild, A. M. Walfield, and T. J. Pollock, J. Bacteriol. 166:801-811, 1986) which encoded a 130-kilodalton (kDa) mosquitocidal toxin from a 110-kb plasmid of Bacillus thuringiensis subsp. israelensis 4Q2-72 was cloned into pUC12 and transformed into Escherichia coli. The clone with a recombinant plasmid (designated pBT8) was toxic to Aedes aegypti larvae. The fragment (3.7 kb) was ligated into pBC16 (tetracycline resistant [Tcr]) and transformed by the method of protoplast transformation into Bacillus sphaericus 1593 and 2362, which were highly toxic to Anopheles and Culex mosquito larvae but less toxic to Aedes larvae. After cell regeneration on regeneration medium, the Tcr plasmids from transformants (pBTC1) of both strains of B. sphaericus were prepared and analyzed. The 3.7-kb XbaI fragment from the B. thuringiensis subsp. israelensis plasmid was shown to be present by agarose gel electrophoresis and Southern blot hybridization. In addition, B. sphaericus transformants produced a 130-kDa mosquitocidal toxin which was detected by Western (immuno-) blot analysis with antibody prepared against B. thuringiensis subsp. israelensis 130-kDa mosquitocidal toxin. The 50% lethal concentrations of the transformants of strains 1593 and 2362 against A. aegypti larvae were 2.7 X 10(2) and 5.7 X 10(2) cells per ml, respectively. This level of toxicity was comparable to the 50% lethal concentration of B. thuringiensis subsp. israelensis but much higher than that of B. sphaericus 1593 and 2362 (4.7 X 10(4) cells per ml) against A. aegypti larvae.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

17.
A 3.7-kilobase (kb) XbaI fragment harboring the cryIVB gene (L. Thorne, F. Garduno, T. Thompson, D. Decker, M. A. Zounes, M. Wild, A. M. Walfield, and T. J. Pollock, J. Bacteriol. 166:801-811, 1986) which encoded a 130-kilodalton (kDa) mosquitocidal toxin from a 110-kb plasmid of Bacillus thuringiensis subsp. israelensis 4Q2-72 was cloned into pUC12 and transformed into Escherichia coli. The clone with a recombinant plasmid (designated pBT8) was toxic to Aedes aegypti larvae. The fragment (3.7 kb) was ligated into pBC16 (tetracycline resistant [Tcr]) and transformed by the method of protoplast transformation into Bacillus sphaericus 1593 and 2362, which were highly toxic to Anopheles and Culex mosquito larvae but less toxic to Aedes larvae. After cell regeneration on regeneration medium, the Tcr plasmids from transformants (pBTC1) of both strains of B. sphaericus were prepared and analyzed. The 3.7-kb XbaI fragment from the B. thuringiensis subsp. israelensis plasmid was shown to be present by agarose gel electrophoresis and Southern blot hybridization. In addition, B. sphaericus transformants produced a 130-kDa mosquitocidal toxin which was detected by Western (immuno-) blot analysis with antibody prepared against B. thuringiensis subsp. israelensis 130-kDa mosquitocidal toxin. The 50% lethal concentrations of the transformants of strains 1593 and 2362 against A. aegypti larvae were 2.7 X 10(2) and 5.7 X 10(2) cells per ml, respectively. This level of toxicity was comparable to the 50% lethal concentration of B. thuringiensis subsp. israelensis but much higher than that of B. sphaericus 1593 and 2362 (4.7 X 10(4) cells per ml) against A. aegypti larvae.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

18.
A novel recombinant Bacillus thuringiensis subsp. israelensis strain that produces the B. sphaericus binary toxin, Cyt1Aa, and Cry11Ba is described. The toxicity of this strain (50% lethal concentration [LC(50)] = 1.7 ng/ml) against fourth-instar Culex quinquefasciatus was higher than that of B. thuringiensis subsp. israelensis IPS-82 (LC(50) = 7.9 ng/ml) or B. sphaericus 2362 (LC(50) = 12.6 ng/ml).  相似文献   

19.
Bacillus sphaericus LP1-G, belonging to flagellar serotype H3, has been found to have moderate toxicity against two resistant Culex quinquefasciatus colonies (RLCq1 and RLCq2) and the susceptible contrast (SLCq). With an aim of screening mosquitocidal acting factor, a partial genome library was prepared from a partial HindIII digest of the total DNA from Bacillus sphaericus LP1-G. Two thousand twenty Escherichia coli clones were screened for toxicity against susceptible SLCq, and a toxic clone, designated E-UL68, was chosen for further study. The recombinant E-UL68 performed toxicity against both susceptible and two resistant colonies, having the same level of toxicity as that of wide-type strain LP1-G. Sequence analysis revealed that the inserted fragment was composed of 3876 nucleotides and contained a complete gene, whose sequence was identical to that of the mtx gene from B. sphaericus SSII-1. Because the binary toxin produced during sporulation of strain LP1-G has no activity against the target mosquitoes, this indicates that the Mtx toxin or other active factors might perhaps be responsible for the toxicity of LP1-G against different colonies of mosquito larvae.  相似文献   

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