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Mos1 Mutagenesis Reveals a Diversity of Mechanisms Affecting Response of Caenorhabditis elegans to the Bacterial Pathogen Microbacterium nematophilum

机译:Mos1诱变揭示影响秀丽隐杆线虫对细菌性病原微线虫的反应机制的多样性。

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摘要

A specific host–pathogen interaction exists between Caenorhabditis elegans and the gram-positive bacterium Microbacterium nematophilum. This bacterium is able to colonize the rectum of susceptible worms and induces a defensive tail-swelling response in the host. Previous mutant screens have identified multiple loci that affect this interaction. Some of these loci correspond to known genes, but many bus genes [those with a bacterially unswollen (Bus) mutant phenotype] have yet to be cloned. We employed Mos1 transposon mutagenesis as a means of more rapidly cloning bus genes and identifying new mutants with altered pathogen response. This approach revealed new infection-related roles for two well-characterized and much-studied genes, egl-8 and tax-4. It also allowed the cloning of a known bus gene, bus-17, which encodes a predicted galactosyltransferase, and of a new bus gene, bus-19, which encodes a novel, albeit ancient, protein. The results illustrate advantages and disadvantages of Mos1 transposon mutagenesis in this system.
机译:秀丽隐杆线虫和革兰氏阳性细菌线虫微细菌之间存在特定的宿主-病原体相互作用。这种细菌能够在易感蠕虫的直肠中定居,并在宿主中引起防御性的尾巴肿胀反应。先前的突变体筛选已鉴定出影响该相互作用的多个基因座。这些基因座中的一些对应于已知基因,但是许多克隆基因[具有细菌溶胀的(Bus)突变表型的那些基因]尚未克隆。我们采用Mos1转座子诱变作为更快速克隆总线基因和鉴定病原体反应改变的新突变体的手段。该方法揭示了两个特征明确且研究充分的基因(egl-8和tax-4)的新的与感染相关的作用。它还允许克隆已知的总线基因bus-17(其编码预测的半乳糖基转移酶)和新的总线基因bus-19(其编码一种新的尽管古老的蛋白质)。结果说明了该系统中的Mos1转座子诱变的优缺点。

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