Charity James C, Pak Kyong, Delwiche Charles F, Hutcheson Steven W
Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD 20742, USA.
Mol Plant Microbe Interact. 2003 Jun;16(6):495-507. doi: 10.1094/MPMI.2003.16.6.495.
Pseudomonas syringae strains use a type III secretion system (TTSS) to translocate effector proteins that assist in the parasitism of host plant cells. Some genes for effector proteins are clustered in the exchangeable effector locus (EEL) associated with the hrp pathogenicity island. A polymerase chain reaction-based screen was developed to amplify the EEL from P. syringae strains. Of the 86 strains screened, the EEL was successfully amplified from 30 predominately North American P. syringae pv. syringae strains using hrpK and queA-derived primers and from an additional three strains using hrpL and queA-derived primers. Among the amplified EEL, ten distinct types of EEL were identified that could be classified into six families distinguishable by genetic composition, but other types of EEL may be present in strains isolated in other geographical regions. No linkage with the host range of the source strain was apparent. Gene cassettes carrying conserved flanking, coding, and intergenic sequences, present in different combinations, were identified in the characterized EEL. Six new alleles of known effectors were identified that differed from the homolog in sequence, size, or both of the gene. One of these apparently novel effector proteins, HopPsyB, retained a strongly conserved amino terminus similar to that of HopPsyA, but other regions of the two polypeptides were only weakly similar. hopPsyB was expressed from an apparent operon that included hrpK and a shcA homolog, shcB. Escherichia coli MC4100 expressing the hrp TTSS, ShcB, and HopPsyB elicited the hypersensitive response (HR) in tobacco, consistent with effector production. Indicative of translocation as an effector, P. syringae pv. tomato DC3000 expressing a HopPsyB':'AvrRpt2 fusion elicited the HR in RPS2+ Arabidopsis thaliana. P. syringae pv. tomato DC3000 carrying HopPsyB exhibited slightly enhanced virulence in several Brassica spp. These results are consistent with the hypotheses that the EEL is a source of disparate effectors functioning in pathogenicity of P. syringae strains and that it evolved independently of the hrp pathogenicity island central conserved region, most likely through integron-like assembly of transposed gene cassettes.
丁香假单胞菌菌株利用III型分泌系统(TTSS)来转运效应蛋白,这些效应蛋白有助于寄生宿主植物细胞。一些效应蛋白的基因聚集在与hrp致病岛相关的可交换效应子位点(EEL)中。开发了一种基于聚合酶链反应的筛选方法,用于从丁香假单胞菌菌株中扩增EEL。在筛选的86个菌株中,使用hrpK和queA衍生引物成功地从30个主要来自北美的丁香假单胞菌丁香致病变种菌株中扩增出EEL,使用hrpL和queA衍生引物从另外3个菌株中扩增出EEL。在扩增的EEL中,鉴定出10种不同类型的EEL,可根据基因组成分为6个家族,但在其他地理区域分离的菌株中可能存在其他类型的EEL。与来源菌株的宿主范围没有明显的连锁关系。在已鉴定的EEL中,发现了携带保守侧翼、编码和基因间序列的基因盒,它们以不同的组合存在。鉴定出6个已知效应子的新等位基因,它们在序列、大小或两者上与同源物不同。这些明显新颖的效应蛋白之一,HopPsyB,保留了与HopPsyA相似的高度保守的氨基末端,但这两种多肽的其他区域只有微弱的相似性。hopPsyB从一个明显的操纵子表达,该操纵子包括hrpK和一个shcA同源物shcB。表达hrp TTSS、ShcB和HopPsyB的大肠杆菌MC4100在烟草中引发了过敏反应(HR),这与效应子的产生一致。作为效应子转运的指示,表达HopPsyB':'AvrRpt2融合蛋白的丁香假单胞菌番茄致病变种DC3000在RPS2+拟南芥中引发了HR。携带HopPsyB的丁香假单胞菌番茄致病变种DC3000在几种芸苔属植物中表现出略微增强的毒力。这些结果与以下假设一致:EEL是丁香假单胞菌菌株致病性中发挥作用的不同效应子的来源,并且它独立于hrp致病岛的中央保守区域进化,最有可能是通过转座基因盒的整合子样组装。