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能够区分野生型日本根瘤菌和非结瘤突变体的噬菌体。

Bacteriophage that can distinguish between wild-type Rhizobium japonicum and a non-nodulating mutant.

作者信息

Stacey G, Pocratsky L A, Puvanesarajah V

出版信息

Appl Environ Microbiol. 1984 Jul;48(1):68-72. doi: 10.1128/aem.48.1.68-72.1984.

Abstract

A bacteriophage (phage TN1) that lyses Rhizobium japonicum 3I1b110 was isolated from Tennessee soil. Structurally, this phage resembles the Escherichia coli phage T4, having an icosahedral head (47 by 60 nm) and a contractile tail (17 by 80 nm). An interesting feature of this phage is that it lyses all of the symbiotic defective mutants derived from R. japonicum 3I1b110 that were tested, except one, mutant strain HS123. Mutant strain HS123 is a non-nodulating mutant that is defective in attachment to soybean roots. Since Rhizobium attachment to host roots is thought to be mediated by a specific cell surface interaction, it is likely that mutant strain HS123 is defective in some way in its cell surface. Mutant strain HS123 bound soybean lectin to the same extent as the wild type as measured by the binding of tritium-labeled lectin. Phage TN1 did not attach to the surface of strain HS123, nor did cells of strain HS123 inactivate phage TN1. A hot phenol-water cell extract from the wild-type inactivated phage TN1, whereas a similar cell extract from mutant HS123 did not. Capsular polysaccharide isolated from mutant or wild type did not inactivate the phage. Capsular polysaccharide and exopolysaccharide from the mutant and wild type do not differ in sugar composition. These results indicate that capsular polysaccharide may not play a role in attachment to the plant root surface and that other cell wall components may be important.

摘要

从田纳西州土壤中分离出一种能裂解日本根瘤菌3I1b110的噬菌体(噬菌体TN1)。从结构上看,这种噬菌体类似于大肠杆菌噬菌体T4,有一个二十面体头部(47×60纳米)和一条收缩尾(17×80纳米)。该噬菌体的一个有趣特征是,它能裂解所有经测试的源自日本根瘤菌3I1b110的共生缺陷突变体,但突变菌株HS123除外。突变菌株HS123是一种非结瘤突变体,在附着于大豆根方面存在缺陷。由于根瘤菌与宿主根的附着被认为是由特定的细胞表面相互作用介导的,因此突变菌株HS123很可能在其细胞表面的某些方面存在缺陷。通过氚标记凝集素的结合测量,突变菌株HS123与野生型结合大豆凝集素的程度相同。噬菌体TN1不附着于菌株HS123的表面,菌株HS123的细胞也不会使噬菌体TN1失活。野生型热酚 - 水细胞提取物能使噬菌体TN1失活,而突变体HS123的类似细胞提取物则不能。从突变体或野生型中分离出的荚膜多糖不会使噬菌体失活。突变体和野生型的荚膜多糖和胞外多糖在糖组成上没有差异。这些结果表明,荚膜多糖可能在附着于植物根表面方面不起作用,而其他细胞壁成分可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9258/240311/ef9f10c511f6/aem00152-0077-a.jpg

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