Wais Rebecca J, Wells Derek H, Long Sharon R
Department of Biological Sciences, Howard Hughes Medical Institute, Stanford University, Stanford, CA 94305-5020, USA.
Mol Plant Microbe Interact. 2002 Dec;15(12):1245-52. doi: 10.1094/MPMI.2002.15.12.1245.
In the Rhizobium-legume symbiosis, compatible partners recognize each other through an exchange of signals. Plant inducers act together with bacterial transcriptional activators, the NodD proteins, to regulate the expression of bacterial biosynthetic nodulation (nod) genes. These genes direct the synthesis of a lipochito-oligosaccharide signal called Nod factor (NF). NFs elicit an early host response, root hair calcium spiking, that is initiated in root hair cells within 15 min of NF or live Rhizobium inoculation. We used calcium spiking as an assay to compare two closely related strains of Sinorhizobium meliloti, Rm1021 and Rm2011, derived from the same field isolate. We found that the two strains show a kinetic difference in the calcium spiking assay: Rm1021 elicits calcium spiking in host root hairs as rapidly as purified NF, whereas Rm2011 shows a significant delay. This difference can be overcome by raising expression levels of either the NodD transcriptional activators or GroEL, a molecular chaperone that affects expression of the biosynthetic nod genes. We further demonstrate that the delay in triggering calcium spiking exhibited by Rm2011 is correlated with a reduced amount of nod gene expression compared with Rm1021. Therefore, calcium spiking is a useful tool in detecting subtle differences in bacterial gene expression that affect the early stages of the Rhizobium-legume symbiosis.
在根瘤菌与豆科植物的共生关系中,相互匹配的伙伴通过信号交换来识别彼此。植物诱导物与细菌转录激活因子NodD蛋白共同作用,调节细菌生物合成结瘤(nod)基因的表达。这些基因指导合成一种名为结瘤因子(NF)的脂壳寡糖信号。NFs引发宿主早期反应,即根毛钙尖峰,在接种NF或活的根瘤菌后15分钟内在根毛细胞中启动。我们使用钙尖峰检测法比较了源自同一田间分离株的两株密切相关的苜蓿中华根瘤菌,Rm1021和Rm2011。我们发现这两株菌在钙尖峰检测中表现出动力学差异:Rm1021引发宿主根毛钙尖峰的速度与纯化的NF一样快,而Rm2011则有明显延迟。通过提高NodD转录激活因子或GroEL(一种影响生物合成nod基因表达的分子伴侣)的表达水平,可以克服这种差异。我们进一步证明,与Rm1021相比,Rm2011引发钙尖峰的延迟与nod基因表达量的减少相关。因此,钙尖峰检测是一种有用的工具,可用于检测影响根瘤菌与豆科植物共生早期阶段的细菌基因表达的细微差异。