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首页> 外文期刊>Journal of bacteriology >Purification and partial characterization of the Rhizobium leguminosarum biovar viciae Ca2+-dependent adhesin, which mediates the first step in attachment of cells of the family Rhizobiaceae to plant root hair tips.
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Purification and partial characterization of the Rhizobium leguminosarum biovar viciae Ca2+-dependent adhesin, which mediates the first step in attachment of cells of the family Rhizobiaceae to plant root hair tips.

机译:根瘤菌根瘤菌根瘤菌Ca2 +依赖性粘附素的纯化和部分表征,介导了根瘤菌科细胞与植物根毛尖的附着的第一步。

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The Ca2+-dependent adhesin which mediates the first step in attachment of bacteria of the family Rhizobiaceae to plant root hair tips was isolated from the surface of Rhizobium leguminosarum biovar viciae cells; its ability to inhibit attachment of R. leguminosarum to pea root hair tips was used as a bioassay. Isolated adhesin was found to be able to inhibit attachment of both carbon-limited and manganese-limited R. leguminosarum cells. A multicolumn purification procedure was developed which resulted in pure adhesin, as judged from silver staining of isoelectric focusing and sodium dodecyl sulfate-polyacrylamide gel electropherograms. The crucial step in purification was the elution of rhizobial proteins by a CaCl2 gradient from a hydroxyapatite matrix. The specific activity increased 1,250 times during purification. The isoelectric point of the adhesin was determined to be 5.1, and the molecular mass was 14 kilodaltons (kDa), as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. By using gel filtration in the presence and absence of Ca2+, the molecular mass of the adhesin was determined to be 15 and 6 kDa, respectively. The adhesin appeared to be a calcium-binding protein. The purified adhesin inhibited attachment of various other rhizobia to pea root hair tips. Also, cell surface preparations of several other rhizobial strains, including Agrobacterium, Bradyrhizobium, and Phyllobacterium spp., showed adhesin activity, suggesting that a common plant receptor is used for attachment of Rhizobiaceae cells and that the adhesin is common among Rhizobiaceae. No attachment-inhibiting activity was detected in cell surface preparations from various other bacterial strains tested. Cell surface preparations from Sym or Ti plasmid-cured Rhizobium and Agrobacterium strains, respectively, also showed adhesin activity, indicating that Sym or Ti plasmid-borne genes are not required for the synthesis and biogenesis of the adhesin. The adhesin was also found to be involved in the attachment of rhizobia to the root hairs of various other legumes and nonlegume plants, including monocotyledonous ones. Since the adhesin appears to be specific for Rhizobiaceae and is Ca2+ dependent, we propose to designate it rhicadhesin. A more detailed model for rhizobial attachment to plant root hairs is discussed.
机译:从根瘤菌根瘤菌生物变态蚕豆细胞的表面分离出介导Ca 2+依赖性粘附素,该粘附素介导了根瘤菌科细菌附着到植物根尖的第一步。其抑制豆状瘤菌附着在豌豆根毛尖的能力被用作生物测定法。发现分离的粘附素能够抑制碳限制的和锰限制的豆科念珠菌细胞的附着。根据等电聚焦的银染和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳图谱的判断,开发了一种多柱纯化程序,可得到纯粘附素。纯化的关键步骤是通过从羟基磷灰石基质中的CaCl2梯度洗脱根瘤菌蛋白。在纯化过程中,比活性增加了1,250倍。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,粘附素的等电点确定为5.1,且分子量为14道尔顿(kDa)。通过在存在和不存在Ca 2+的情况下使用凝胶过滤,确定粘附素的分子量分别为15和6kDa。粘附素似乎是钙结合蛋白。纯化的粘附素抑制了各种其他根瘤菌对豌豆根毛尖的附着。另外,包括土壤杆菌属,根瘤菌属和根癌菌属在内的其他几种根瘤菌菌株的细胞表面制剂也显示出粘附素活性,这暗示着一种常见的植物受体被用于附着根瘤菌科细胞,并且该粘附素在根瘤菌科中是常见的。在测试的各种其他细菌菌株的细胞表面制剂中未检测到抑制附着的活性。分别从Sym或Ti质粒固化的根瘤菌和农杆菌菌株的细胞表面制备也显示出粘附素活性,这表明粘附素的合成和生物发生不需要Sym或Ti质粒携带的基因。还发现粘附素还参与了根瘤菌对各种其他豆类和非豆类植物(包括单子叶植物)的根毛的附着。由于黏附素似乎对根瘤菌科具有特异性,并且是依赖Ca2 +的,因此我们建议将其命名为黏附素。讨论了根瘤菌附着到植物根毛的更详细模型。

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