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The Bacillus thuringiensis cyt Genes for Hemolytic Endotoxins Constitute a Gene Family

机译:苏云金芽胞杆菌胞溶内毒素的cyt基因组成一个基因家族

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摘要

In the same way that cry genes, coding for larvicidal delta endotoxins, constitute a large and diverse gene family, the cyt genes for hemolytic toxins seem to compose another set of highly related genes in Bacillus thuringiensis. Although the occurrence of Cyt hemolytic factors in B. thuringiensis has been typically associated with mosquitocidal strains, we have recently shown that cyt genes are also present in strains with different pathotypes; this is the case for the morrisoni subspecies, which includes strains biologically active against dipteran, lepidopteran, and coleopteran larvae. In addition, while one Cyt type of protein has been described in all of the mosquitocidal strains studied so far, the present study confirms that at least two Cyt toxins coexist in the more toxic antidipteran strains, such as B. thuringiensis subsp. israelensis and subsp. morrisoni PG14, and that this could also be the case for many others. In fact, PCR screening and Western blot analysis of 50 B. thuringiensis strains revealed that cyt2-related genes are present in all strains with known antidipteran activity, as well as in some others with different or unknown host ranges. Partial DNA sequences for several of these genes were determined, and protein sequence alignments revealed a high degree of conservation of the structural domains. These findings point to an important biological role for Cyt toxins in the final in vivo toxic activity of many B. thuringiensis strains.
机译:与编码幼虫三角洲内毒素的哭泣基因构成一个庞大而多样的基因家族一样,溶血毒素的cyt基因似乎构成了苏云金芽胞杆菌中的另一组高度相关的基因。尽管苏云金芽孢杆菌中Cyt溶血因子的发生通常与灭蚊菌株有关,但我们最近发现,在不同病原体菌株中也存在cyt基因。 morrisoni亚种就是这种情况,其中包括对二萜,鳞翅目和鞘翅目幼虫具有生物活性的菌株。此外,尽管到目前为止研究的所有灭蚊菌株都描述了一种Cyt类型的蛋白质,但本研究证实,毒性更高的抗二萜类菌株(如苏云金芽孢杆菌B亚种)中至少存在两种​​Cyt毒素。以色列及其亚种morrisoni PG14,其他许多人也可能会遇到这种情况。实际上,对50种苏云金芽孢杆菌菌株的PCR筛选和Western blot分析表明,cyt2相关基因存在于所有具有已知抗双萜活性的菌株中,以及一些其他具有不同或未知宿主范围的菌株。确定了其中几个基因的部分DNA序列,并且蛋白质序列比对揭示了结构域的高度保守性。这些发现表明,Cyt毒素在许多苏云金芽胞杆菌菌株的最终体内毒性活性中具有重要的生物学作用。

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