Division of Biological Sciences, University of Missouri, Columbia, Missouri, USA.
Department of Botany and Plant Pathology, Oregon State University, Corvallis, Oregon, USA.
J Bacteriol. 2023 Apr 25;205(4):e0000523. doi: 10.1128/jb.00005-23. Epub 2023 Mar 9.
Agrobacterium tumefaciens incites the formation of readily visible macroscopic structures known as crown galls on plant tissues that it infects. Records from biologists as early as the 17th century noted these unusual plant growths and began examining the basis for their formation. These studies eventually led to isolation of the infectious agent, A. tumefaciens, and decades of study revealed the remarkable mechanisms by which A. tumefaciens causes crown gall through stable horizontal genetic transfer to plants. This fundamental discovery generated a barrage of applications in the genetic manipulation of plants that is still under way. As a consequence of the intense study of A. tumefaciens and its role in plant disease, this pathogen was developed as a model for the study of critical processes that are shared by many bacteria, including host perception during pathogenesis, DNA transfer and toxin secretion, bacterial cell-cell communication, plasmid biology, and more recently, asymmetric cell biology and composite genome coordination and evolution. As such, studies of A. tumefaciens have had an outsized impact on diverse areas within microbiology and plant biology that extend far beyond its remarkable agricultural applications. In this review, we attempt to highlight the colorful history of A. tumefaciens as a study system, as well as current areas that are actively demonstrating its value and utility as a model microorganism.
根癌农杆菌会在感染的植物组织上引发肉眼可见的大型结构,即冠瘿。早在 17 世纪,生物学家的记录就注意到了这些不寻常的植物生长,并开始研究其形成的基础。这些研究最终导致了传染性病原体根癌农杆菌的分离,几十年的研究揭示了根癌农杆菌通过稳定的水平基因转移到植物中引起冠瘿的惊人机制。这一基础性发现引发了对植物遗传操作的大量应用,这些应用仍在进行中。由于对根癌农杆菌及其在植物病害中的作用进行了深入研究,这种病原体已被开发为许多细菌共同的关键过程(包括发病过程中的宿主感知、DNA 转移和毒素分泌、细菌细胞间通讯、质粒生物学,以及最近的不对称细胞生物学和复合基因组协调与进化)研究的模型。因此,根癌农杆菌的研究对微生物学和植物生物学的多个领域产生了巨大的影响,其影响远远超出了其在农业方面的显著应用。在这篇综述中,我们试图强调根癌农杆菌作为一个研究系统的丰富多彩的历史,以及当前积极展示其作为模型微生物的价值和用途的领域。