首页> 美国卫生研究院文献>Journal of Bacteriology >Isolation and characterization of mutants of Rhizobium leguminosarum bv. viciae 248 with altered lipopolysaccharides: possible role of surface charge or hydrophobicity in bacterial release from the infection thread.
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Isolation and characterization of mutants of Rhizobium leguminosarum bv. viciae 248 with altered lipopolysaccharides: possible role of surface charge or hydrophobicity in bacterial release from the infection thread.

机译:豆科根瘤菌突变体bv的分离与鉴定。具有改变的脂多糖的蚕豆248:表面电荷或疏水性在细菌从感染线释放中的可能作用。

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摘要

Effects of alterations in lipopolysaccharide (LPS) structure of Rhizobium leguminosarum bv. viciae on effective symbiosis and on a number of cell surface characteristics were studied. Tn5 mutants with altered LPSs were screened for their inability to bind monoclonal antibody 3, one of three monoclonal antibodies to the tentative O-antigenic part of the wild-type LPS of strain 248. Ten class I LPS mutants completely lacked the O-antigen-containing LPS species. The class II LPS mutant had a severely diminished amount of an antigenically altered O-antigen-containing LPS. The class III LPS mutant had normal amounts of an altered, O-antigen-containing LPS. Class I and II mutants, but not the class III mutant, showed abnormal nodule development (i.e., blocked in the stage of bacterial release from the infection thread) resulting in nodules in which very few, at the most, plant cells contained bacteroids and which were unable to fix nitrogen. Class I and II mutants were nonmotile and were more sensitive to hydrophobic compounds than the parent strain. The most striking difference between the symbiotically defective class I and II LPS mutants on one hand and the wild-type strain and the class III mutant on the other hand was that the class I and II mutants have a more hydrophobic cell surface and a higher electrophoretic mobility. A role for an O-antigen-containing LPS in bacterial release from the infection thread, through its effects on general physicochemical cell surface characteristics, is proposed.
机译:豆科根瘤菌脂多糖(LPS)结构改变的影响。蚕豆对有效共生和许多细胞表面特征的影响。筛选具有LPS改变的Tn5突变体,使其无法结合单克隆抗体3,该单克隆抗体是菌株248野生型LPS暂定O抗原部分的三种单克隆抗体之一。十个I类LPS突变体完全缺乏O抗原,包含LPS物种。 II类LPS突变体的抗原改变的含O抗原的LPS的数量大大减少。 III类LPS突变体具有正常量的改变的含O抗原的LPS。 I和II类突变体,而不是III类突变体,显示出异常的结节发育(即,在细菌从感染线释放的阶段受阻),导致结节中,极少有植物细胞含有类细菌,并且其中无法修复氮。 I和II类突变体是不运动的,并且比亲代菌株对疏水性化合物更敏感。一方面,共生缺陷的I和II类LPS突变体与野生型菌株和另一方面的III类突变体之间最显着的区别是,I和II类突变体具有更疏水的细胞表面和更高的电泳性能。流动性。通过其对一般理化细胞表面特性的影响,提出了一种含O抗原的LPS在细菌从感染线释放中的作用。

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