Center for Plant Molecular Biology, Eberhard-Karls-University Tübingen, Tübingen 72076, Germany.
Mol Plant Pathol. 2018 Jun;19(6):1511-1522. doi: 10.1111/mpp.12632. Epub 2018 Feb 1.
Members of the Ralstonia solanacearum species complex (Rssc) cause bacterial wilt, a devastating plant disease that affects numerous economically important crops. Like other bacterial pests, Rssc injects a cocktail of effector proteins via the bacterial type III secretion system into host cells that collectively promote disease. Given their functional relevance in disease, the identification of Rssc effectors and the investigation of their in planta function are likely to provide clues on how to generate pest-resistant crop plants. Accordingly, molecular analysis of effector function is a focus of Rssc research. The elucidation of effector function requires corresponding gene knockout strains or strains that express the desired effector variants. The cloning of DNA constructs that facilitate the generation of such strains has hindered the investigation of Rssc effectors. To overcome these limitations, we have designed, generated and functionally validated a toolkit consisting of DNA modules that can be assembled via Golden-Gate (GG) cloning into either desired gene knockout constructs or multi-cassette expression constructs. The Ralstonia-GG-kit is compatible with a previously established toolkit that facilitates the generation of DNA constructs for in planta expression. Accordingly, cloned modules, encoding effectors of interest, can be transferred to vectors for expression in Rssc strains and plant cells. As many effector genes have been cloned in the past as GATEWAY entry vectors, we have also established a conversion vector that allows the implementation of GATEWAY entry vectors into the Ralstonia-GG-kit. In summary, the Ralstonia-GG-kit provides a valuable tool for the genetic investigation of genes encoding effectors and other Rssc genes.
雷尔氏菌复合种(Ralstonia solanacearum species complex,Rssc)的成员会引起细菌性萎蔫病,这是一种破坏性的植物疾病,会影响许多经济上重要的作物。与其他细菌害虫一样,Rssc 通过细菌 III 型分泌系统将效应蛋白混合物注入宿主细胞,共同促进疾病的发生。鉴于它们在疾病中的功能相关性,鉴定 Rssc 效应子并研究其在植物体内的功能可能为如何生成抗虫害作物植物提供线索。因此,效应子功能的分子分析是 Rssc 研究的重点。效应子功能的阐明需要相应的基因敲除菌株或表达所需效应子变体的菌株。有助于生成此类菌株的 DNA 构建体的克隆阻碍了对 Rssc 效应子的研究。为了克服这些限制,我们设计、生成并功能验证了一个由 DNA 模块组成的工具包,这些模块可以通过 Golden-Gate (GG) 克隆组装到所需的基因敲除构建体或多盒表达构建体中。Ralstonia-GG 工具包与先前建立的工具包兼容,该工具包有助于生成用于植物体内表达的 DNA 构建体。因此,可以将编码感兴趣的效应子的克隆模块转移到用于在 Rssc 菌株和植物细胞中表达的载体上。由于过去已经克隆了许多效应基因作为 GATEWAY 入口载体,我们还建立了一个转换载体,允许将 GATEWAY 入口载体转化为 Ralstonia-GG 工具包。总之,Ralstonia-GG 工具包为遗传研究编码效应子和其他 Rssc 基因的基因提供了有价值的工具。