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首页> 外文期刊>Genomics >A high-throughput genomic screen identifies a role for the plasmid-borne type II secretion system of Escherichia coli O157:H7 (Sakai) in plant-microbe interactions
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A high-throughput genomic screen identifies a role for the plasmid-borne type II secretion system of Escherichia coli O157:H7 (Sakai) in plant-microbe interactions

机译:高通量基因组筛网鉴定了植物微生物相互作用中大肠杆菌O157:H7(Sakai)的质粒型II型分泌系统的作用

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Shiga-toxigenic Escherichia coli (STEC) is often transmitted into food via fresh produce plants, where it can cause disease. To identify early interaction factors for STEC on spinach, a high-throughput positive-selection system was used. A bacterial artificial chromosome (BAC) clone library for isolate Sakai was screened in four successive rounds of short-term (2?h) interaction with spinach roots, and enriched loci identified by microarray. A Bayesian hierarchical model produced 115 CDS credible candidates, comprising seven contiguous genomic regions. Of the two candidate regions selected for functional assessment, the pO157 plasmid-encoded type two secretion system (T2SS) promoted interactions, while a chaperone-usher fimbrial gene cluster (loc6) did not. The T2SS promoted bacterial binding to spinach and appeared to involve the EtpD secretin protein. Furthermore, the T2SS genes, etpD and etpC, were expressed at a plant-relevant temperature of 18?°C, and etpD was expressed in planta by E. coli Sakai on spinach plants.
机译:Shiga-toxigenic大肠杆菌(STEC)通常通过新鲜农产品传播到食物中,在那里它会引起疾病。为了识别STEC对菠菜的早期相互作用因子,使用了一种高通量正选择系统。在与菠菜根的四轮连续四轮短期(2·H)相互作用中筛选分离型Sakai的细菌人工染色体(BAC)克隆文库,并富集由微阵列鉴定的基因座。贝叶斯等级模型产生了115个CDS可信的候选人,包括七个连续的基因组区域。在选择用于功能评估的两个候选区域中,PO157质粒编码的两种分泌系统(T2SS)促进相互作用,而伴侣源 - 留下粘合基因簇(LOC6)没有。 T2SS促进细菌结合菠菜,并似乎涉及ETPD棘蛋白蛋白。此外,T2SS基因,ETPD和ETPC在18℃的植物相关温度下表达,ETPD在菠菜植物上在Planta中表达。

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