Institute of Agriculture & Life Science, Gyeongsang National University, Jinju, 52828, Republic of Korea.
Department of Plant Medicine, Gyeongsang National University, Jinju, 52828, Republic of Korea.
Sci Rep. 2019 Nov 29;9(1):17961. doi: 10.1038/s41598-019-54568-2.
Agrobacterium-mediated plant galls are often misdiagnosed as nematode-mediated knots, even by experts, because the gall symptoms in both conditions are very similar. In the present study, we developed biosensor strains based on agrobacterial opine metabolism that easily and simply diagnoses Agrobacterium-induced root galls. Our biosensor consists of Agrobacterium mannitol (ABM) agar medium, X-gal, and a biosensor. The working principle of the biosensor is that exogenous nopaline produced by plant root galls binds to NocR, resulting in NocR/nopaline complexes that bind to the promoter of the nopaline oxidase gene (nox) operon and activate the transcription of noxB-lacZY, resulting in readily visualized blue pigmentation on ABM agar medium supplemented with X-gal (ABMX-gal). Similarly, exogenous octopine binds to OccR, resulting in OoxR/octopine complexes that bind to the promoter of the octopine oxidase gene (oox) operon and activate the transcription of ooxB-lacZY, resulting in blue pigmentation in the presence of X-gal. Our biosensor is successfully senses opines produced by Agrobacterium-infected plant galls, and can be applied to easily distinguish Agrobacterium crown gall disease from nematode disease.
农杆菌介导的植物瘿瘤常被误诊为线虫介导的结瘤,即使是专家也会误诊,因为这两种情况下的瘿瘤症状非常相似。在本研究中,我们开发了基于农杆菌(opine)代谢的生物传感器菌株,能够轻松、简单地诊断由农杆菌引起的根瘿瘤。我们的生物传感器由农杆菌甘露醇 (ABM) 琼脂培养基、X-gal 和生物传感器组成。生物传感器的工作原理是植物根瘿瘤产生的外源胭脂碱与 NocR 结合,形成 NocR/胭脂碱复合物,与胭脂碱氧化酶基因 (nox) 操纵子的启动子结合并激活 noxB-lacZY 的转录,导致在添加 X-gal 的 ABM 琼脂培养基上形成明显的蓝色色素(ABMX-gal)。类似地,外源 octopine 与 OccR 结合,形成 OoxR/octopine 复合物,与 octopine 氧化酶基因 (oox) 操纵子的启动子结合并激活 ooxB-lacZY 的转录,在有 X-gal 的情况下形成蓝色色素。我们的生物传感器成功地感知了农杆菌感染植物瘿瘤产生的 opines,并可用于轻松区分农杆菌冠瘿病和线虫病。