Szurek Boris, Rossier Ombeline, Hause Gerd, Bonas Ulla
Institut für Genetik, Martin-Luther-Universität Halle-Wittenberg, Halle, Germany.
Mol Microbiol. 2002 Oct;46(1):13-23. doi: 10.1046/j.1365-2958.2002.03139.x.
Many plant pathogenic bacteria utilize a conserved type III secretion system (TTSS) to deliver effector proteins into the host tissue. Indirect evidence has suggested that at least some effector proteins are translocated from the bacterial cytoplasm into the plant cell. Using an immunocytochemical approach, we demonstrate that the type III effector AvrBs3 from Xanthomonas campestris pv. vesicatoria localizes to nuclei of infected pepper leaves. Importantly, AvrBs3 translocation was observed in situ in native tissues of susceptible and resistant plants. AvrBs3 was detected in the nucleus as soon as 4 h post infection, which was dependent on a functional TTSS and the putative translocator HrpF. N-terminal AvrBs3 deletion derivatives are no longer secreted by the TTSS in vitro and could not be detected inside the host cells, suggesting that the N-terminus of AvrBs3 is important for secretion. Deletion of the nuclear localization signals in the AvrBs3 C-terminus, which are required for the AvrBs3-mediated induction of the hypersensitive reaction in resistant pepper plants, abolished AvrBs3 localization to the nucleus. This is the first report on direct evidence for translocation of a native type III effector protein from a plant pathogenic bacterium into the host cell.
许多植物致病细菌利用保守的III型分泌系统(TTSS)将效应蛋白输送到宿主组织中。间接证据表明,至少一些效应蛋白从细菌细胞质转移到植物细胞中。我们利用免疫细胞化学方法证明,来自野油菜黄单胞菌疮痂致病变种的III型效应蛋白AvrBs3定位于被感染辣椒叶片的细胞核。重要的是,在感病和抗病植物的原生组织中原位观察到了AvrBs3的转移。感染后4小时即可在细胞核中检测到AvrBs3,这依赖于功能性TTSS和假定的转运蛋白HrpF。AvrBs3的N端缺失衍生物在体外不再由TTSS分泌,并且在宿主细胞内无法检测到,这表明AvrBs3的N端对分泌很重要。AvrBs3 C端的核定位信号缺失,这是AvrBs3介导的抗病辣椒植物过敏反应诱导所必需的,它消除了AvrBs3在细胞核中的定位。这是关于植物致病细菌的天然III型效应蛋白转移到宿主细胞的直接证据的首次报道。