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结瘤素S(nodS)的差异表达解释了费氏中华根瘤菌USDA257和根瘤菌属菌株NGR234在结瘤银合欢属植物方面能力的差异。

Differential expression of nodS accounts for the varied abilities of Rhizobium fredii USDA257 and Rhizobium sp. strain NGR234 to nodulate Leucaena spp.

作者信息

Krishnan H B, Lewin A, Fellay R, Broughton W J, Pueppke S G

机构信息

Department of Plant Pathology, University of Missouri, Columbia 65211.

出版信息

Mol Microbiol. 1992 Nov;6(22):3321-30. doi: 10.1111/j.1365-2958.1992.tb02200.x.

Abstract

Transfer of a cosmid containing nodSU from Rhizobium sp. NGR234 to Rhizobium fredii USDA257 expands the host range for nodulation to include the perennial tropical legumes, Leucaena leucocephala and Leucaena diversifolia. Complementation experiments with a series of subclones established that nodS and its associated nod-box promoter from NGR234 are sufficient to confer this extended host-range phenotype to L. leucocephala. Strain USDA257 contains its own copy of nodSU, including upstream nod-box sequences. Although both nucleotide and deduced amino acid sequences of the reading frames are homologous between the two strains, there are gaps within the promoter region and the 5'-end of nodS of USDA257. Consequently, the deduced NodS protein of USDA257 is shorter than its counterpart from NGR234, and the distance between the nod-box and the initiation codon is greater. A 36 bp deletion encompasses the extreme right border of the USDA257 nod-box and extends into the upstream leader sequence. Transcriptional fusions with both nod-boxes confirmed that the promoter from NGR234 is flavonoid-inducible, and that the nod-box from USDA257 is not. These observations were corroborated by Northern analysis with a nodS-containing Xhol fragment as hybridization probe. Flavonoid-induced cells of NGR234 gave an intense signal, but those of USDA257 yielded only a weak trace of hybridization. EcoRI fragments with homology to nodSU of USDA257 are present in 17 of 35 tested strains, including several representatives of Bradyrhizobium japonicum, Rhizobium sp., R. loti, and R. fredii. Two wild-type, leucaena-nodulating strains of Rhizobium sp. lack this homology. We conclude that a genetic defect in expression of nodS accounts for the inability of USDA257 to nodulate leucaena and that diverse rhizobia may have evolved alternative mechanisms to nodulate this legume species.

摘要

将含有来自根瘤菌属NGR234的nodSU的黏粒转移至费氏根瘤菌USDA257,可扩大结瘤宿主范围,使其包括多年生热带豆科植物银合欢和异叶银合欢。用一系列亚克隆进行的互补实验表明,来自NGR234的nodS及其相关的nod-box启动子足以赋予银合欢这种扩展的宿主范围表型。菌株USDA257含有其自身的nodSU拷贝,包括上游nod-box序列。尽管两个菌株之间阅读框的核苷酸序列和推导的氨基酸序列是同源的,但USDA257的启动子区域和nodS的5'端存在缺口。因此,USDA257推导的NodS蛋白比NGR234的对应蛋白短,并且nod-box与起始密码子之间的距离更大。一个36 bp的缺失涵盖了USDA257 nod-box的最右边界并延伸到上游前导序列中。与两个nod-box的转录融合证实,来自NGR234的启动子是类黄酮诱导型的,而来自USDA257的nod-box不是。用含nodS的Xhol片段作为杂交探针进行的Northern分析证实了这些观察结果。NGR234的类黄酮诱导细胞给出强烈信号,但USDA257的细胞仅产生微弱的杂交痕迹。与USDA257的nodSU具有同源性的EcoRI片段存在于35个测试菌株中的17个中,包括日本慢生根瘤菌、根瘤菌属、百脉根根瘤菌和费氏根瘤菌中的几个代表菌株。两个能使银合欢结瘤的根瘤菌属野生型菌株缺乏这种同源性。我们得出结论,nodS表达的遗传缺陷导致USDA257无法使银合欢结瘤,并且不同的根瘤菌可能已经进化出了使这种豆科植物结瘤的替代机制。

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