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Inheritance of Pantoea type III secretion systems through both vertical and horizontal transfer

机译:通过垂直和水平转移继承Pantoea III型分泌系统

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The type III secretion system (T3SS) is an extracellular apparatus used by many Gram-negative bacteria to deliver effector proteins directly into plant and animal cells, thereby facilitating host-specific association. Strains of the enterobacterial genus, Pantoea, have been isolated from a wide variety of hosts, including plants, insects, and humans, yet it is unclear whether the T3SS may be involved in these associations. In this study, we use comparative genomics and phylogenetic methods to examine the origin and distribution of T3SSs in 35 sequenced environmental and clinical strains of Pantoea. We began our analysis by examining the distribution of the previously characterized plant cell-specific PSI-1 and animal cell-specific PSI-2 of the plant pathogenic Pantoea stewartii subsp. stewartii DC283 (PstDC283), and showed that both had a somewhat limited distribution. Our analysis, however, identified two variants of a unique plant cell-specific T3SS (PSI-1a and PSI-1b) in six Pantoea strains, including a clinical isolate. Our genome analysis of PstDC283 also identified a third T3SS that we named PSI-3, which has a similar genetic content and organization to the Salmonella, animal cell-specific SPI-2 system. Phylogenetic analysis of all three systems suggests that the PSI-1 system has been inherited vertically, whereas the newly identified PSI-1a and PSI-1b systems have been acquired independently from other genera within the Enterobacteriaceae. PSI-2 appears to have been acquired horizontally as far back as the Erwinia/Pantoea common ancestor, with evidence of more recent horizontal acquisition of the PSI-3 system. Our results suggest that Pantoea is a relatively old plant pathogen that has lost and subsequently regained different plant-associated T3SSs. This work has broad implications for understanding the host-associating capacity of Pantoea strains, and reveals the propensity for Pantoea isolates to exchange pathogenicity determinants with human-pathogenic members of the Enterobacteriaceae.
机译:III型分泌系统(T3SS)是许多革兰氏阴性细菌用来将效应子蛋白直接传递到植物和动物细胞中的细胞外设备,从而促进宿主特异性结合。肠细菌属泛菌已从包括植物,昆虫和人类在内的多种宿主中分离出来,但尚不清楚T3SS是否可能与这些关联有关。在这项研究中,我们使用比较的基因组学和系统发育方法来检查35株定律的环境和临床菌株中T3SS的起源和分布。我们通过检查植物病原性泛菌亚种的先前表征的植物细胞特异性PSI-1和动物细胞特异性PSI-2的分布来开始分析。 stewartii DC283(PstDC283),并显示两者的分布都有些有限。然而,我们的分析在包括临床分离株在内的六种泛菌菌株中鉴定出了独特的植物细胞特异性T3SS的两种变体(PSI-1a和PSI-1b)。我们对PstDC283的基因组分析还确定了第三个T3SS,我们将其命名为PSI-3,该基因具有与沙门氏菌(动物细胞特异性SPI-2系统)相似的遗传成分和组织。对这三个系统的系统进化分析表明,PSI-1系统是垂直遗传的,而新鉴定的PSI-1a和PSI-1b系统是独立于肠杆菌科其他属而获得的。 PSI-2似乎早在Erwinia / Pantoea的共同祖先就已被水平采集,有证据表明最近才对PSI-3系统进行了水平采集。我们的结果表明,泛菌是一种相对较老的植物病原体,已丢失并随后恢复了与植物相关的不同的T3SS。这项工作对了解泛菌菌株的宿主相关能力具有广泛的意义,并揭示了泛菌分离物与肠杆菌科的人类致病因子交换致病性决定簇的倾向。

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