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Examination of Xenorhabdus nematophila Lipases in Pathogenic and Mutualistic Host Interactions Reveals a Role for xlpA in Nematode Progeny Production

机译:致病性和相互宿主相互作用中的Xenorhabdus nematophila脂肪酶的检查揭示了线虫子代生产中xlpA的作用。

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Xenorhabdus nematophila is a gammaproteobacterium and broad-host-range insect pathogen. It is also a symbiont of Steinernema carpocapsae , the nematode vector that transports the bacterium between insect hosts. X. nematophila produces several secreted enzymes, including hemolysins, lipases, and proteases, which are thought to contribute to virulence or nutrient acquisition for the bacterium and its nematode host in vivo. X. nematophila has two lipase activities with distinct in vitro specificities for Tween and lecithin. The gene encoding the Tween-specific lipase, xlpA , has been identified and is not required for X. nematophila virulence in one insect host, the tobacco hornworm Manduca sexta . However, the gene encoding the lecithin-specific lipase activity is not currently known. Here, we identify X. nematophila estA , a gene encoding a putative lecithinase, and show that an estA mutant lacks in vitro lipase activity against lecithin but has wild-type virulence in Manduca sexta. X. nematophila secondary-form phenotypic variants have higher in vitro lecithinase activity and estA transcript levels than do primary-form variants, and estA transcription is negatively regulated by NilR, a repressor of nematode colonization factors. We establish a role for xlpA , but not estA , in supporting production of nematode progeny during growth in Galleria mellonella insects. Future research is aimed at characterizing the biological roles of estA and xlpA in other insect hosts.
机译:Xenorhabdus nematophila是一种γ-变形杆菌和广泛宿主昆虫病原体。它也是Steinernema carpocapsae的共生体,Steinernema carpocapsae是一种在昆虫宿主之间运输细菌的线虫载体。线虫杆菌产生几种分泌的酶,包括溶血素,脂肪酶和蛋白酶,它们被认为有助于细菌及其线虫宿主在体内的毒性或营养获取。嗜油线虫具有两种脂酶活性,对吐温和卵磷脂具有不同的体外特异性。已经确定了编码吐温特异性脂肪酶xlpA的基因,并且在一种昆虫宿主(烟草天蛾曼杜卡六分体)中,对于嗜线虫X. nematophila毒力而言并非必需。但是,目前尚不知道编码卵磷脂特异性脂肪酶活性的基因。在这里,我们确定X. nematophila estA,编码推定的卵磷脂酶的基因,并表明estA突变体缺乏体外对卵磷脂的脂肪酶活性,但在六倍体Manduca sexta中具有野生型毒力。嗜油线虫的次级形式表型变异体比初级形式的变异体具有更高的体外卵磷脂酶活性和estA转录水平,且estA转录受线虫定殖因子阻遏物NilR负调控。我们建立了xlpA而不是estA的作用,以支持在马勒菌廊昆虫生长期间的线虫子代生产。未来的研究旨在表征estA和xlpA在其他昆虫宿主中的生物学作用。

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