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The solubility of inclusion proteins from Bacillus thuringiensis is dependent upon protoxin composition and is a factor in toxicity to insects.

机译:苏云金芽孢杆菌包涵体蛋白的溶解度取决于原毒素的组成并且是对昆虫毒性的一个因素。

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摘要

Bacillus thuringiensis subsp. aizawai HD133 is one of several strains particularly effective against Plodia interpunctella selected for resistance to B. thuringiensis subsp. kurstaki HD1 (Dipel). B. thuringiensis subsp. aizawai HD133 produces inclusions containing three protoxins, CryIA(b), CryIC, and CryID, and the CryIC protoxin has been shown to be active on resistant P. interpunctella as well as on Spodoptera larvae. The CryIA(b) protoxin is very similar to the major one in B. thuringiensis subsp. kurstaki HD1, and as expected, this protoxin was inactive on resistant P. interpunctella. A derivative of B. thuringiensis subsp. aizawai HD133 which had been cured of a 68-kb plasmid containing the cryIA(b) gene produced inclusions comprising only the CryIC and CryID protoxins. Surprisingly, these inclusions were much less toxic for resistant P. interpunctella and two other Lepidoptera than those produced by the parental strain, whereas the soluble protoxins from these strains were equally effective. In contrast, inclusions from the two strains were about as active as soluble protoxins for Spodoptera frugiperda larvae, so toxicity differences between inclusions may be due to the solubilizing conditions within particular larval guts. Consistent with this hypothesis, it was found that a higher pH was required to solubilize protoxins from inclusions from the plasmid-cured strain than from B. thuringiensis subsp. aizawai HD133, a difference which is probably attributable to the absence of the CryIA(b) protoxin in the former. The interactions of structurally related protoxins within an inclusion are probably important for solubility and are thus another factor in the effectiveness of B. thuringiensis isolates for particular insect larvae.
机译:苏云金芽孢杆菌亚种。 aizawai HD133是对因苏云金芽孢杆菌亚种抗性而选出的对穿梭菌特别有效的几种菌株之一。库尔斯塔基HD1(Dipel)。苏云金芽孢杆菌亚种。 aizawai HD133产生的内含物包含三种毒素,即CryIA(b),CryIC和CryID,并且CryIC毒素已被证明对点状间日疟原虫和斜纹夜蛾幼虫具有活性。 CryIA(b)毒素与苏云金芽孢杆菌亚种中的主要毒素非常相似。 kurstaki HD1,并且正如预期的那样,这种毒素对抗性间质假单胞菌无效。苏云金芽孢杆菌亚种的衍生物。已经固化了含有cryIA(b)基因的68-kb质粒的aizawai HD133产生了仅包含CryIC和CryID毒素的内含物。出人意料的是,这些包涵体对抗性间质假单胞菌和另外两种鳞翅目的毒性要比亲本菌株产生的低得多,而来自这些菌株的可溶性毒素却同样有效。相比之下,这两个菌株的内含物活性与甜菜夜蛾幼虫的可溶性毒素相当,因此内含物之间的毒性差异可能是由于特定幼虫内脏中的溶解条件所致。与该假设相一致,发现从质粒固化菌株的包涵物中溶解原毒素所需的pH要高于苏云金芽孢杆菌亚种。 aizawai HD133,差异可能归因于前者中没有CryIA(b)毒素。内含物中与结构相关的毒素的相互作用可能对溶解度很重要,因此是苏云金芽孢杆菌分离物对特定昆虫幼虫有效性的另一个因素。

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