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源自不同豆科根瘤菌土壤分离株的菌株中豆科根瘤菌CFN42脂多糖基因的表达

Expression of Rhizobium leguminosarum CFN42 genes for lipopolysaccharide in strains derived from different R. leguminosarum soil isolates.

作者信息

Brink B A, Miller J, Carlson R W, Noel K D

机构信息

Department of Biology, Marquette University, Milwaukee, Wisconsin 53233.

出版信息

J Bacteriol. 1990 Feb;172(2):548-55. doi: 10.1128/jb.172.2.548-555.1990.

Abstract

Two mutant derivatives of Rhizobium leguminosarum ANU843 defective in lipopolysaccharide (LPS) were isolated. The LPS of both mutants lacked O antigen and some sugar residues of the LPS core oligosaccharides. Genetic regions previously cloned from another Rhizobium leguminosarum wild-type isolate, strain CFN42, were used to complement these mutants. One mutant was complemented to give LPS that was apparently identical to the LPS of strain ANU843 in antigenicity, electrophoretic mobility, and sugar composition. The other mutant was complemented by a second CFN42 lps genetic region. In this case the resulting LPS contained O-antigen sugars characteristic of donor strain CFN42 and reacted weakly with antiserum against CFN42 cells, but did not react detectably with antiserum against ANU843 cells. Therefore, one of the CFN42 lps genetic regions specifies a function that is conserved between the two R. leguminosarum wild-type isolates, whereas the other region, at least in part, specifies a strain-specific LPS structure. Transfer of these two genetic regions into wild-type strains derived from R. leguminosarum ANU843 and 128C53 gave results consistent with this conclusion. The mutants derived from strain ANU843 elicited incompletely developed clover nodules that exhibited low bacterial populations and very low nitrogenase activity. Both mutants elicited normally developed, nitrogen-fixing clover nodules when they carried CFN42 lps DNA that permitted synthesis of O-antigen-containing LPS, regardless of whether the O antigen was the one originally made by strain ANU843.

摘要

分离得到了两株豆科根瘤菌ANU843的脂多糖(LPS)缺陷型突变衍生物。两株突变体的LPS均缺乏O抗原和LPS核心寡糖的一些糖残基。以前从另一株豆科根瘤菌野生型菌株CFN42中克隆的遗传区域用于互补这些突变体。一个突变体得到互补后,其LPS在抗原性、电泳迁移率和糖组成上与ANU843菌株的LPS明显相同。另一个突变体由第二个CFN42 lps遗传区域互补。在这种情况下,产生的LPS含有供体菌株CFN42特有的O抗原糖,与抗CFN42细胞的抗血清反应较弱,但与抗ANU843细胞的抗血清无明显反应。因此,CFN42的一个lps遗传区域指定了一个在两株豆科根瘤菌野生型菌株之间保守的功能,而另一个区域至少部分指定了一个菌株特异性的LPS结构。将这两个遗传区域转移到源自豆科根瘤菌ANU843和128C53的野生型菌株中,得到的结果与这一结论一致。源自ANU843菌株的突变体引发的三叶草根瘤发育不完全,根瘤中的细菌数量低,固氮酶活性也非常低。当这两个突变体携带允许合成含O抗原LPS的CFN42 lps DNA时,它们都能引发正常发育的、固氮的三叶草根瘤,无论O抗原是否是ANU843菌株最初产生的那种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e38/208476/7248d1302cbc/jbacter01044-0048-a.jpg

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