Gürlebeck Doreen, Thieme Frank, Bonas Ulla
Institute of Genetics, Martin-Luther University Halle-Wittenberg, Weinbergweg 10, 06120 Halle, Germany.
J Plant Physiol. 2006 Feb;163(3):233-55. doi: 10.1016/j.jplph.2005.11.011. Epub 2005 Dec 28.
Pathogenicity of Xanthomonas campestris pathovar (pv.) vesicatoria and most other Gram-negative bacterial plant pathogens largely depends on a type III secretion (TTS) system which is encoded by hypersensitive response and pathogenicity (hrp) genes. These genes are induced in the plant and are essential for the bacterium to be virulent in susceptible hosts and for the induction of the hypersensitive response (HR) in resistant host and non-host plants. The TTS machinery secretes proteins into the extracellular milieu and effector proteins into the plant cell cytosol. In the plant, the effectors presumably interfere with cellular processes to the benefit of the pathogen or have an avirulence activity that betrays the bacterium to the plant surveillance system. Type III effectors were identified by their avirulence activity, co-regulation with the TTS system and homology to known effectors. A number of effector proteins are members of families, e.g., the AvrBs3 family in Xanthomonas. AvrBs3 localizes to the nucleus of the plant cell where it modulates plant gene expression. Another family that is also present in Xanthomonas is the YopJ/AvrRxv family. The latter proteins appear to act as SUMO cysteine proteases in the host. Here, we will present an overview about the regulation of the TTS system and its substrates and discuss the function of the AvrRxv and AvrBs3 family members in more detail.
野油菜黄单胞菌致病变种(pv.)vesicatoria以及大多数其他革兰氏阴性细菌植物病原体的致病性很大程度上取决于III型分泌(TTS)系统,该系统由过敏反应和致病性(hrp)基因编码。这些基因在植物中被诱导,对于细菌在易感宿主中具有毒性以及在抗性宿主和非宿主植物中诱导过敏反应(HR)至关重要。TTS机制将蛋白质分泌到细胞外环境中,并将效应蛋白分泌到植物细胞胞质溶胶中。在植物中,效应蛋白可能会干扰细胞过程以利于病原体,或者具有一种无毒活性,从而使细菌暴露于植物监测系统。III型效应蛋白是通过其无毒活性、与TTS系统的共调节以及与已知效应蛋白的同源性来鉴定的。许多效应蛋白是家族成员,例如野油菜黄单胞菌中的AvrBs3家族。AvrBs3定位于植物细胞核,在那里它调节植物基因表达。野油菜黄单胞菌中也存在的另一个家族是YopJ/AvrRxv家族。后者的蛋白质似乎在宿主中充当SUMO半胱氨酸蛋白酶。在这里,我们将概述TTS系统及其底物的调节,并更详细地讨论AvrRxv和AvrBs3家族成员的功能。