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慢生根瘤菌大豆根瘤菌noeD基因:一个对大豆起负向作用的、基因型特异性的结瘤基因。

The Bradyrhizobium japonicum noeD gene: a negatively acting, genotype-specific nodulation gene for soybean.

作者信息

Lohrke S M, Day B, Kolli V S, Hancock R, Yuen J P, de Souza M L, Stacey G, Carlson R, Tong Z, Hur H G, Orf J H, Sadowsky M J

机构信息

Department of Soil, Water, and Climate, Biological Process Technology Institute, University of Minnesota, St. Paul 55108, USA.

出版信息

Mol Plant Microbe Interact. 1998 Jun;11(6):476-88. doi: 10.1094/MPMI.1998.11.6.476.

Abstract

Bradyrhizobium japonicum strain USDA 110 is restricted for nodulation by soybean genotype PI 417566. We previously reported the identification of a USDA 110 Tn5 mutant, strain D4.2-5, that had the ability to overcome nodulation restriction conditioned by PI 417566 (S. M. Lohrke, J. H. Orf, E. Martínez-Romero, and M. J. Sadowsky, Appl. Environ. Microbiol. 61:2378-2383, 1995). In this study, we report the cloning and characterization of the negatively acting DNA region mutated in strain D4.2-5 that is involved in the genotype-specific nodulation of soybean. The Tn5 integration site was localized to a 5.2-kb EcoRI fragment isolated from wild-type USDA 110 genomic DNA. Saturation Tn5 mutagenesis of this 5.2-kb region and DNA homogenitization studies indicated that a 0.9-kb DNA region was involved in the genotype-specific nodulation of PI 417566. A single open reading frame (ORF) of 474 nucleotides, encoding a predicted protein of 158 amino acids, was identified within this region by DNA sequencing. This ORF was named noeD. Computer comparisons with available data bases revealed no significant similarities between the noeD DNA or predicted amino acid sequence and any known genes or their products. However, comparisons done with the region upstream of noeD revealed a high degree of similarity (about 76% similarity and 62% identity) to the N-terminal regions of the Rhizobium leguminosarum bv. viciae and R. meliloti nodM genes, which have been postulated to encode a glucosamine synthase. Southern hybridization analysis indicated that noeD is not closely linked to the main or auxiliary nodulation gene clusters in B. japonicum and that both nodulation-restricted and -unrestricted B. japonicum serogroup 110 strains contain a noeD homolog. High-performance liquid chromatography and fast atom bombardment-mass spectrometry analyses of the lipo-chitin oligosaccharide (LCO) nodulation signals produced by an noeD mutant showed a higher level of acetylation than that found with wild-type USDA 110. These results suggest that specific LCO signal molecules may be one of the factors influencing nodulation specificity in this symbiotic system.

摘要

慢生根瘤菌大豆亚种USDA 110受大豆基因型PI 417566的结瘤限制。我们之前报道过鉴定出一个USDA 110的Tn5突变体菌株D4.2 - 5,它能够克服由PI 417566所导致的结瘤限制(S. M. Lohrke、J. H. Orf、E. Martínez - Romero和M. J. Sadowsky,《应用与环境微生物学》61:2378 - 2383,1995)。在本研究中,我们报道了在菌株D4.2 - 5中发生突变的负向作用DNA区域的克隆与特性分析,该区域参与大豆的基因型特异性结瘤。Tn5整合位点定位于从野生型USDA 110基因组DNA中分离出的一个5.2 kb的EcoRI片段上。对这个5.2 kb区域进行饱和Tn5诱变及DNA同源性研究表明,一个0.9 kb的DNA区域参与了PI 417566的基因型特异性结瘤。通过DNA测序在该区域内鉴定出一个474个核苷酸的单一开放阅读框(ORF),其编码一个预测的158个氨基酸的蛋白质。这个ORF被命名为noeD。与现有数据库进行计算机比对发现,noeD的DNA或预测的氨基酸序列与任何已知基因或其产物之间没有显著相似性。然而,对noeD上游区域的比对显示,它与豌豆根瘤菌蚕豆生物型和苜蓿中华根瘤菌的nodM基因的N端区域有高度相似性(约76%的相似性和62%的同一性),这两个基因被推测编码一种葡糖胺合酶。Southern杂交分析表明,noeD与慢生根瘤菌大豆亚种中的主要或辅助结瘤基因簇没有紧密连锁,并且结瘤受限和不受限的慢生根瘤菌大豆亚种110血清型菌株都含有一个noeD同源物。对noeD突变体产生的脂壳寡糖(LCO)结瘤信号进行高效液相色谱和快原子轰击质谱分析显示,其乙酰化水平高于野生型USDA 110。这些结果表明,特定的LCO信号分子可能是影响这个共生系统中结瘤特异性的因素之一。

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