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对鳞翅目或双翅目昆虫有毒的苏云金芽孢杆菌莫里森亚种(PG-14)杀蚊突变体的开发。

Development of mutants of the mosquitocidal bacterium Bacillus thuringiensis subspecies morrisoni (PG-14) toxic to lepidopterous or dipterous insects.

作者信息

Padua L E, Federici B A

机构信息

Department of Entomology, University of California, Riverside 92521.

出版信息

FEMS Microbiol Lett. 1990 Jan 1;54(1-3):257-62. doi: 10.1016/0378-1097(90)90293-y.

DOI:10.1016/0378-1097(90)90293-y
PMID:1969828
Abstract

The parasporal body of the mosquitocidal isolate (PG-14) of Bacillus thuringiensis subsp. morrisoni (BTM) contains five major proteins with molecular masses of, respectively, 27.3, 65, 128, 135, and 144 kDa. Proteins corresponding in mass to the first four of these also occur in the mosquitocidal strain, B. thuringiensis subsp. israelensis (BTI), and it is thought therefore that the mosquitocidal activity of both strains is due to these four proteins. In other studies it has been shown that each of these proteins exhibits from moderate to high toxicity to mosquitoes, though the specific toxicity of the 144 kDa protein in PG-14 to mosquitoes remains unknown. In the present study, two parasporal body mutants (M146 and M242) of PG-14 were developed growing the wild-type strain at 42 degrees C. The parasporal body of M146 contained less of the 65-kDa protein and was less toxic (LC50 = 108 ng/ml) to mosquitoes than the wild-type strain (LC50 = 8.3 ng/ml). The parasporal body of M242 consisted of a bipyramidal crystal composed of a 144-kDa protein that was not toxic to the mosquito, Aedes aegypti, but exhibited substantial toxicity (LC50 = 2.5 micrograms/ml) to the lepidopteran. Trichoplusia ni. Because the parasporal bodies of BTI and BTM PG-14 are similar in mosquitocidal toxicity on a weight basis, the latter results suggest the 144-kDa protein, though not mosquitocidal alone, can contribute to mosquitocidal, activity when in the presence of other mosquitocidal proteins.

摘要

苏云金芽孢杆菌莫里森亚种(BTM)的杀蚊分离株(PG-14)的伴孢晶体含有五种主要蛋白质,分子量分别为27.3、65、128、135和144 kDa。质量与其中前四种相对应的蛋白质也存在于杀蚊菌株苏云金芽孢杆菌以色列亚种(BTI)中,因此人们认为这两种菌株的杀蚊活性都归因于这四种蛋白质。在其他研究中已经表明,这些蛋白质中的每一种对蚊子都表现出中等至高毒性,尽管PG-14中144 kDa蛋白质对蚊子的具体毒性尚不清楚。在本研究中,通过在42℃培养野生型菌株,获得了PG-14的两个伴孢晶体突变体(M146和M242)。M146的伴孢晶体中65 kDa蛋白质含量较少,对蚊子的毒性(LC50 = 108 ng/ml)低于野生型菌株(LC50 = 8.3 ng/ml)。M242的伴孢晶体由一个双金字塔形晶体组成,该晶体由一种对埃及伊蚊无毒但对鳞翅目昆虫粉纹夜蛾表现出显著毒性(LC50 = 2.5微克/毫升)的144 kDa蛋白质构成。由于BTI和BTM PG-14的伴孢晶体在重量基础上的杀蚊毒性相似,后一结果表明,144 kDa蛋白质虽然单独不具有杀蚊活性,但在存在其他杀蚊蛋白质时可有助于杀蚊活性。

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