School of Life Science, Beijing Institute of Technology, 5# Zhongguancun Nandajie, Beijing 100081, People's Republic of China.
FEMS Microbiol Lett. 2019 Jul 1;366(14). doi: 10.1093/femsle/fnz166.
Pantoea agglomerans YS19 is a predominant diazotrophic endophyte with multiple growth-promoting effects on its host plant that was isolated from rice. Indole is confirmed to induce many changes of physiological and biochemical characteristics in bacteria. Although YS19 cannot produce indole, it can sense indole in the environment and be regulated by indole. Here, using gfp as a reporter gene, we constructed a series of recombinant plasmids containing the promoter region of the poly(A) polymerase I gene (pcnB) fused with gfp, and compared the green fluorescence intensity at different concentrations of exogenous indole by a flow cytometer. In this research, we confirmed that exogenous indole significantly inhibited the expression of pcnB by its promoter; the regulation sequence sensitive to indole in the promoter region of the pcnB gene (In-pcnB) was between -129 and -88 bp. In-pcnB is widely distributed and strictly conserved in the same genus. These results suggest novel roles of In-pcnB in P. agglomerans YS19, showing its special relation to the indole regulatory pathway.
聚集泛菌 YS19 是一种主要的共生固氮菌,对其宿主植物具有多种促生长作用,它是从水稻中分离出来的。吲哚已被证实能诱导细菌的许多生理和生化特性发生变化。尽管 YS19 本身不能产生吲哚,但它可以在环境中感应吲哚,并受到吲哚的调节。在这里,我们使用 GFP 作为报告基因,构建了一系列含有与 GFP 融合的多聚(A)聚合酶 I 基因(pcnb)启动子区域的重组质粒,并通过流式细胞仪比较了不同外源吲哚浓度下的绿色荧光强度。在这项研究中,我们证实了外源吲哚通过其启动子显著抑制了 pcnB 的表达;pcnB 基因启动子中对吲哚敏感的调控序列(In-pcnB)位于-129 和-88 bp 之间。In-pcnB 在同一属中广泛分布且严格保守。这些结果表明 In-pcnB 在聚集泛菌 YS19 中具有新的作用,表明它与吲哚调控途径有特殊关系。