López-Baena Francisco Javier, Vinardell José María, Pérez-Montaño Francisco, Crespo-Rivas Juan Carlos, Bellogín Ramón A, Espuny Ma Del Rosario, Ollero Francisco Javier
Departamento de Microbiología, Facultad de Biología, Universidad de Sevilla, Sevilla, Spain.
Microbiology (Reading). 2008 Jun;154(Pt 6):1825-1836. doi: 10.1099/mic.0.2007/016337-0.
In this work we show that the Sinorhizobium fredii HH103 ttsI gene is essential for the expression of the tts genes and secretion of nodulation outer proteins (Nops). Moreover, we demonstrate for the first time, to our knowledge, that the nod box preceding ttsI is necessary for Nops secretion. TtsI is responsible for the transcriptional activation of nopX, nopA, rhcJ and rhcQ. We confirm that the S. fredii HH103 ttsI gene is activated by NodD1 and repressed by NolR. In contrast, NodD2 is not involved in the regulation of ttsI expression. Despite the dependence of expression of both ttsI and nodA on NodD1 and flavonoids, clear differences in the capacity of some flavonoids to activate these genes were found. The expression of the ttsI and nodA genes was also sensitive to differences in the pH of the media. Secretion of Nops in the ttsI mutant could not be complemented with a DNA fragment containing the ttsI gene and its nod box, but it was restored when a plasmid harbouring the ttsI, rhcC2 and y4xK genes was transferred to the mutant strain. The symbiotic effect of Nops secretion was host-dependent but independent of the type of nodule formed by the host legume. Nops are beneficial in the symbiosis with Glycine max and Glycyrrhiza uralensis, and detrimental in the case of the tropical legume Erythrina variegata.
在本研究中,我们发现费氏中华根瘤菌HH103的ttsI基因对于tts基因的表达和结瘤外蛋白(Nops)的分泌至关重要。此外,据我们所知,我们首次证明ttsI之前的nod框对于Nops的分泌是必需的。TtsI负责nopX、nopA、rhcJ和rhcQ的转录激活。我们证实费氏中华根瘤菌HH103的ttsI基因受NodD1激活并受NolR抑制。相比之下,NodD2不参与ttsI表达的调控。尽管ttsI和nodA的表达都依赖于NodD1和类黄酮,但发现某些类黄酮激活这些基因的能力存在明显差异。ttsI和nodA基因的表达对培养基pH值的差异也很敏感。ttsI突变体中Nops的分泌不能用包含ttsI基因及其nod框的DNA片段进行互补,但当携带ttsI、rhcC2和y4xK基因的质粒转移到突变菌株时,Nops的分泌得以恢复。Nops分泌的共生效应取决于宿主,但与宿主豆科植物形成的根瘤类型无关。Nops在与大豆和甘草的共生中是有益的,而在热带豆科植物刺桐的情况下是有害的。