首页> 外文OA文献 >The \u3ci\u3ePseudomonas syringae\u3c/i\u3e Hrp pathogenicity island has a tripartite mosaic structure composed of a cluster of type III secretion genes bounded by exchangeable effector and conserved effector loci that contribute to parasitic fitness and pathogenicity in plants
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The \u3ci\u3ePseudomonas syringae\u3c/i\u3e Hrp pathogenicity island has a tripartite mosaic structure composed of a cluster of type III secretion genes bounded by exchangeable effector and conserved effector loci that contribute to parasitic fitness and pathogenicity in plants

机译:Hrp致病岛的\ u3ci \ u3e pseudomonas syringae \ u3c / i \ u3e 有一个由三方组成的三方拼接结构 由III型分泌基因组成的簇 可交换的效应子和保守的效应子 导致寄生适应性的基因座 植物的致病性

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摘要

The plant pathogenic bacterium Pseudomonas syringae is divided into pathovars differing in host specificity, with P. syringae pv. syringae (Psy) and P. syringae pv. tomato (Pto) representing particularly divergent pathovars. P. syringae hrp/hrc genes encode a type III protein secretion system that appears to translocate Avr and Hop effector proteins into plant cells. DNA sequence analysis of the hrp/hrc regions in Psy 61, Psy B728a, and Pto DC3000 has revealed a Hrp pathogenicity island (Pai) with a tripartite mosaic structure. The hrp/hrc gene cluster is conserved in all three strains and is flanked by a unique exchangeable effector locus (EEL) and a conserved effector locus (CEL). The EELs begin 3 nt downstream of the stop codon of hrpK and end, after 2.5–7.3 kb of dissimilar intervening DNA with tRNALeu–queA–tgt sequences that are also found in Pseudomonas aeruginosa but without linkage to any Hrp Pai sequences. The EELs encode diverse putative effectors, including HopPsyA (HrmA) in Psy 61 and proteins similar to AvrPphE and the AvrByAvrCyAvrPphC and AvrBsTyAvrRxvyYopJ protein families in Psy B728a. The EELs also contain mobile genetic element sequences and have a G 1 C content significantly lower than the rest of the Hrp Pai or the P. syringae genome. The CEL carries at least seven ORFs that are conserved between Psy B728a and Pto DC3000. Deletion of the Pto DC3000 EEL slightly reduces bacterial growth in tomato, whereas deletion of a large portion of the CEL strongly reduces growth and abolishes pathogenicity in tomato.
机译:植物致病性丁香假单胞菌被分为宿主特异性不同的致病菌,即丁香假单胞菌PV。丁香(Psy)和丁香P.番茄(Pto)代表特别不同的感伤。丁香假单胞菌的hrp / hrc基因编码一种III型蛋白质分泌系统,该系统似乎将Avr和Hop效应蛋白转运到植物细胞中。对Psy 61,Psy B728a和Pto DC3000中hrp / hrc区域的DNA序列分析显示了具有三重镶嵌结构的Hrp致病岛(Pai)。 hrp / hrc基因簇在所有三个菌株中均保守,其侧翼是独特的可互换效应子基因座(EEL)和保守的效应子基因座(CEL)。 EELs在hrpK终止密码子下游3 nt处开始,并在2.5-7.3 kb具有tRNALeu–queA–tgt序列的互不相同的插入DNA之后终止,tRNALeu–queA–tgt序列也存在于铜绿假单胞菌中,但未与任何Hrp Pai序列连锁。 EELs编码多种假定的效应子,包括Psy 61中的HopPsyA(HrmA)以及类似于Psy B728a中的AvrPphE和AvrByAvrCyAvrPphC和AvrBsTyAvrRxvyYopJ蛋白家族的蛋白质。 EELs还包含可移动的遗传元件序列,并且其G 1 C含量明显低于Hrp Pai或丁香假单胞菌基因组的其余部分。 CEL携带至少七个在Psy B728a和Pto DC3000之间保留的ORF。删除Pto DC3000 EEL会稍微减少番茄中的细菌生长,而删除大部分CEL会强烈地减少番茄的生长并消除番茄的致病性。

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