Marketon Melanie M, Glenn Sarah A, Eberhard Anatol, González Juan E
Department of Molecular and Cell Biology, University of Texas at Dallas, Richardson, TX 75083-0688, USA.
J Bacteriol. 2003 Jan;185(1):325-31. doi: 10.1128/JB.185.1.325-331.2003.
Sinorhizobium meliloti is a soil bacterium capable of invading and establishing a symbiotic relationship with alfalfa plants. This invasion process requires the synthesis, by S. meliloti, of at least one of the two symbiotically important exopolysaccharides, succinoglycan and EPS II. We have previously shown that the sinRI locus of S. meliloti encodes a quorum-sensing system that plays a role in the symbiotic process. Here we show that the sinRI locus exerts one level of control through regulation of EPS II synthesis. Disruption of the autoinducer synthase gene, sinI, abolished EPS II production as well as the expression of several genes in the exp operon that are responsible for EPS II synthesis. This phenotype was complemented by the addition of acyl homoserine lactone (AHL) extracts from the wild-type strain but not from a sinI mutant, indicating that the sinRI-specified AHLs are required for exp gene expression. This was further confirmed by the observation that synthetic palmitoleyl homoserine lactone (C(16:1)-HL), one of the previously identified sinRI-specified AHLs, specifically restored exp gene expression. Most importantly, the absence of symbiotically active EPS II in a sinI mutant was confirmed in plant nodulation assays, emphasizing the role of quorum sensing in symbiosis.
苜蓿中华根瘤菌是一种能够侵入苜蓿植物并与之建立共生关系的土壤细菌。这一侵入过程要求苜蓿中华根瘤菌合成两种对共生关系重要的胞外多糖(琥珀聚糖和EPS II)中的至少一种。我们之前已表明,苜蓿中华根瘤菌的sinRI基因座编码一种群体感应系统,该系统在共生过程中发挥作用。在此我们表明,sinRI基因座通过调控EPS II的合成发挥一级控制作用。自诱导物合成酶基因sinI的破坏消除了EPS II的产生以及exp操纵子中几个负责EPS II合成的基因的表达。野生型菌株的酰基高丝氨酸内酯(AHL)提取物可互补这一表型,但sinI突变体的提取物则不能,这表明sinRI基因座产生的AHLs是exp基因表达所必需的。这一点通过以下观察结果得到进一步证实:合成的棕榈油酰高丝氨酸内酯(C(16:1)-HL),即之前鉴定出的sinRI基因座产生的AHLs之一,特异性地恢复了exp基因的表达。最重要的是,在植物结瘤试验中证实了sinI突变体中不存在具有共生活性的EPS II,这强调了群体感应在共生中的作用。