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Photorhabdus Virulence Cassettes Confer Injectable Insecticidal Activity against the Wax Moth

机译:Photorhabdus毒力盒提供了针对蜡蛾的可注射杀虫活性

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摘要

Two recently sequenced genomes of the insect-pathogenic bacterium Photorhabdus and a large Serratia entomophila plasmid, pADAP, have phage-related loci containing putative toxin effector genes, designated the “Photorhabdus virulence cassettes” (PVCs). In S. entomophila, the single plasmid PVC confers antifeeding activity on larvae of a beetle. Here, we show that recombinant Escherichia coli expressing PVC-containing cosmids from Photorhabdus has injectable insecticidal activity against larvae of the wax moth. Electron microscopy showed that the structure of the PVC products is similar to the structure of the antibacterial R-type pyocins. However, unlike these bacteriocins, the PVC products of Photorhabdus have no demonstrable antibacterial activity. Instead, injection of Photorhabdus PVC products destroys insect hemocytes, which undergo dramatic actin cytoskeleton condensation. Comparison of the genomic organizations of several PVCs showed that they have a conserved phage-like structure with a variable number of putative anti-insect effectors encoded at one end. Expression of these putative effectors directly inside cultured cells showed that they are capable of rearranging the actin cytoskeleton. Together, these data show that the PVCs are functional homologs of the S. entomophila antifeeding genes and encode physical structures that resemble bacteriocins. This raises the interesting hypothesis that the PVC products are bacteriocin-like but that they have been modified to attack eukaryotic host cells.
机译:昆虫致病性细菌Photorhabdus的两个最近测序的基因组和一个大型沙雷氏菌食虫质粒pADAP具有噬菌体相关的基因座,其中含有推定的毒素效应基因,称为“ Photorhabdus毒力盒”(PVC)。在食虫链球菌中,单个质粒PVC对甲虫的幼虫具有反喂食活性。在这里,我们显示了表达来自Photorhabdus的含PVC粘粒的重组大肠杆菌具有针对蜡蛾幼虫的可注射杀虫活性。电子显微镜显示,PVC产品的结构类似于抗菌R型囊球蛋白的结构。但是,与这些细菌素不同,Photorhabdus的PVC产品没有明显的抗菌活性。相反,注射Photorhabdus PVC产品会破坏昆虫血细胞,后者会经历剧烈的肌动蛋白细胞骨架缩合。几种PVC的基因组组织的比较表明,它们具有保守的噬菌体样结构,在一端编码有可变数量的推定的抗昆虫效应子。这些推定的效应子直接在培养细胞内表达表明它们能够重新排列肌动蛋白的细胞骨架。总之,这些数据表明,PVC是嗜食链球菌反饲基因的功能同源物,并且编码类似于细菌素的物理结构。这就提出了一个有趣的假设,即PVC产物是细菌素样的,但它们已经被修饰以攻击真核宿主细胞。

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