首页> 外文期刊>Applied Microbiology >A Novel Antidipteran Bacillus thuringiensis Strain: Unusual Cry Toxin Genes in a Highly Dynamic Plasmid Environment
【24h】

A Novel Antidipteran Bacillus thuringiensis Strain: Unusual Cry Toxin Genes in a Highly Dynamic Plasmid Environment

机译:一种新型抗痘痘芽孢杆菌菌株:高动态质粒环境中不寻常的毒素基因

获取原文
       

摘要

Bacillus thuringiensis has emerged as a major bioinsecticide on the global market. It offers a valuable alternative to chemical products classically utilized to control pest insects. Despite the efficiency of several strains and products available on the market, the scientific community is always on the lookout for novel toxins that can replace or supplement the existing products. In this study, H3, a novel B. thuringiensis strain showing mosquitocidal activity, was isolated from Lebanese soil and characterized in vivo at genomic and proteomic levels. H3 parasporal crystal is toxic on its own but displays an unusual killing profile with a higher 50% lethal concentration (LC_(50)) than the reference B. thuringiensis serovar israelensis crystal proteins. In addition, H3 has a different toxicity order: it is more toxic to Aedes albopictus and Anopheles gambiae than to Culex pipiens . Whole-genome sequencing and crystal analysis revealed that H3 can produce 11 novel Cry proteins, 8 of which are assembled in genes with an orf1-gap-orf2 organization, where orf2 is a potential Cry4-type crystallization domain. Moreover, pH3-180, the toxin-carrying plasmid, holds a wide repertoire of mobile genetic elements that amount to ca. 22% of its size., including novel insertion sequences and class II transposable elements. Two other large plasmids present in H3 carry genetic determinants for the production of many interesting molecules—such as chitinase, cellulase, and bacitracin—that may add up to H3 bioactive properties. This paper therefore reports a novel mosquitocidal Bacillus thuringiensis strain with unusual Cry toxin genes in a rich mobile DNA environment.IMPORTANCE Bacillus thuringiensis , a soil entomopathogenic bacterium, is at the base of many sustainable eco-friendly bioinsecticides. Hence stems the need to continually characterize insecticidal toxins. H3 is an antidipteran B. thuringiensis strain, isolated from Lebanese soil, whose parasporal crystal contains 11 novel Cry toxins and no Cyt toxins. In addition to its individual activity, H3 showed potential as a coformulant with classic commercialized B. thuringiensis products, to delay the emergence of resistance and to shorten the time required for killing. On a genomic level, H3 holds three large plasmids, one of which carries the toxin-coding genes, with four occurrences of the distinct orf1 -gap- orf2 organization. Moreover, this plasmid is extremely rich in mobile genetic elements, unlike its two coresidents. This highlights the important underlying evolutionary traits between toxin-carrying plasmids and the adaptation of a B. thuringiensis strain to its environment and insect host spectrum.
机译:Bacillus thuringiensis已成为全球市场的主要生物结合。它为经典用于控制害虫昆虫的化学产品提供了有价值的替代品。尽管市场上提供了几种菌株和产品的效率,但科学界始终在寻找可以取代或补充现有产品的新型毒素。在该研究中,H3是一种新的B.图uardiensis菌株,其显示蚊子活性,从黎巴嫩土壤中分离出来并在基因组和蛋白质组学水平的体内表征。 H3扑轮晶体是自身的毒性,但显示出不寻常的杀死型材,比参考B. Thuringiensis Serovar以色列的晶体蛋白质呈现出更高的50%致死浓度(LC_(50))。此外,H3具有不同的毒性顺序:对AEDES Albopictus和AnophelesGambiae的毒性更毒性,而不是Culex Pipiens。全基因组测序和晶体分析显示H3可以产生11个新的乳胶蛋白,其中8个,其中8个与ORF1-GAP-ORF2组织组装在基因中,其中ORF2是潜在的Cry4型结晶结构域。此外,pH3-180,携带毒素携带的质粒,具有宽的移动遗传元素,其数量为CA。其尺寸的22%。,包括新型插入序列和II类转换元素。存在于H3中存在的另外两种大质粒携带遗传决定簇,用于生产许多有趣的分子 - 例如几丁质酶,纤维素酶和Bacitracin - 这可以加入H3生物活性性质。因此,本文报告了一种新型蚊子芽孢杆菌在富含移动DNA环境中具有不寻常的哭泣毒素基因的蚊子菌株。分析芽孢杆菌的芽孢杆菌,土壤肺疗法细菌,是在许多可持续生态友好的生物终止虫的基础上。因此,源于不断表征杀虫毒素的需要。 H3是从黎巴嫩土壤中分离的抗痘痘B.图林森菌株,其诱导晶体含有11个新颖的哭泣毒素,没有Cyt毒素。除了个体活性外,H3还表现出具有经典商业化B.图林森产品的Coformulant的潜力,以推迟抵抗的出现并缩短杀戮所需的时间。在基因组水平上,H3含有三种大质粒,其中一种大质粒携带毒素编码基因,具有四种不同的ORF1-GAP-ORF2组织。此外,与其两个核苷酸不同,这种质粒非常丰富。这突出了毒素携带质粒的重要潜在的进化性状,以及对其环境和昆虫宿主谱的B. thuringiensis菌株的适应性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号