Kannenberg E L, Perotto S, Bianciotto V, Rathbun E A, Brewin N J
John Innes Institute, Norwich, Great Britain.
J Bacteriol. 1994 Apr;176(7):2021-32. doi: 10.1128/jb.176.7.2021-2032.1994.
To investigate the in situ expression of lipopolysaccharide (LPS) epitopes on nodule bacteria of Rhizobium leguminosarum, monoclonal antibodies recognizing LPS macromolecules were used for immunocytochemical staining of pea nodule tissue. Many LPS epitopes were constitutively expressed, and the corresponding antibodies reacted in nodule sections with bacteria at all stages of tissue infection and cell invasion. Some antibodies, however, recognized epitopes that were only expressed in particular regions of the nodule. Two general patterns of regulated LPS epitope expression could be distinguished on longitudinal sections of nodules. A radial pattern probably reflected the local physiological conditions experienced by endosymbiotic bacteria as a result of oxygen diffusion into the nodule tissue. The other pattern of expression, which followed a linear axis of symmetry along a longitudinal section of the pea nodule, was apparently associated with the differentiation of nodule bacteria and the development of the nitrogen-fixing capacity in bacteroids. Basically similar patterns of LPS epitope expression were observed for pea nodules harboring either of two immunologically distinct strains of R. leguminosarum bv. viciae, although these epitopes were recognized by different sets of strain-specific monoclonal antibodies. Furthermore, LPS epitope expression of rhizobia in pea nodules was compared with that of equivalent strains in nodules of French bean (Phaseolus vulgaris). From these observations, it is suggested that structural modifications of Rhizobium LPS may play an important role in the adaptation of endosymbiotic rhizobia to the surrounding microenvironment.
为研究豆科根瘤菌结节细菌上脂多糖(LPS)表位的原位表达,使用识别LPS大分子的单克隆抗体对豌豆根瘤组织进行免疫细胞化学染色。许多LPS表位组成性表达,相应抗体在结节切片中与组织感染和细胞入侵各阶段的细菌发生反应。然而,一些抗体识别仅在根瘤特定区域表达的表位。在根瘤纵切片上可区分出两种LPS表位表达调控的一般模式。一种放射状模式可能反映了由于氧气扩散到根瘤组织中,共生细菌所经历的局部生理条件。另一种表达模式沿豌豆根瘤纵切片呈线性对称轴,显然与根瘤细菌的分化及类菌体中固氮能力的发展有关。对于携带两种免疫不同的豌豆根瘤菌蚕豆生物型菌株中任何一种的豌豆根瘤,观察到基本相似的LPS表位表达模式,尽管这些表位由不同组的菌株特异性单克隆抗体识别。此外,还比较了豌豆根瘤中根瘤菌的LPS表位表达与菜豆(Phaseolus vulgaris)根瘤中同源菌株的LPS表位表达。从这些观察结果来看,表明根瘤菌LPS的结构修饰可能在共生根瘤菌适应周围微环境中起重要作用。