Philip-Hollingsworth S, Hollingsworth R I, Dazzo F B
Department of Microbiology and Public Health, Michigan State University, East Lansing 48824.
J Biol Chem. 1989 Jan 25;264(3):1461-6.
Proton nuclear magnetic resonance (1H NMR) and fast atom bombardment mass spectrometric analyses were performed on enzymatically derived oligosaccharides from the acidic excreted polysaccharides (EPS) from representative bacterial strains of the pea-nodulating symbiont, Rhizobium leguminosarum (128C53, 128C63, and 300) and the clover-nodulating symbiont, Rhizobium trifolii (NA-30, ANU843, 0403, TA-1, LPR5035, USDA20.102, and 4S). The results revealed structural similarities and differences between EPS of these two species. Octasaccharide units containing galactose, glucuronic acid, alpha-L-threo-hex-4-enopyranosyluronic acid, and glucose in a molar ratio of 1:1:1:5 were obtained from the EPS of the three R. leguminosarum strains and had the same primary glycosyl sequence and location of pyruvate, acetate, and 3-hydroxybutyrate substituents. About 80% of the galactose residues were acylated with 3-hydroxybutyrate, and there were two acetyl groups per repeating unit distributed between the 2 glucose residues of the main chain-derived sequence of the octasaccharides. In contrast, the R. trifolii strains had varied EPS structures, each of which differed from the common R. leguminosarum EPS structure. The EPS from one group of R. trifolii strains (0403 and LPR5035) most closely resembled the R. leguminosarum EPS but differed in that a lower number of galactose and glucose residues were substituted by 3-hydroxybutyryl and acetyl groups, respectively. The EPS from a second group of R. trifolii strains (ANU843, TA-1, and NA-30) was even more different than the R. leguminosarum EPS. These R. trifolii octasaccharides bore a single acetyl group on O-3 of the glucuronic acid residue. In addition, the level of acylation by 3-hydroxybutyryl groups was 50% of that present in the R. leguminosarum EPS. The remaining two strains of R. trifolii (USDA20.102 and 4S) had very different patterns of acylation to each other and to all of the other strains. The EPS from strain USDA20.102 practically lacked 3-hydroxybutyryl groups and had a unique degree and pattern of acetylation. The oligomers from the EPS of R. trifolii strain 4S completely lacked 3-hydroxybutyryl groups and galactose. The latter EPS contained only one O-1-carboxyethylidene group and had a different degree and pattern of acetylation. Interestingly, these two latter strains differ from the other R. trifolii strains in nodulation rates on rare clover species in the Trifolium cross-inoculation group. Thus, we define several groups of R. trifolii based upon their EPS structures and establish their similarities and distinct differences with the EPS of R. leguminosarum.(ABSTRACT TRUNCATED AT 400 WORDS)
对来自豌豆根瘤共生菌豆科根瘤菌(128C53、128C63和300)以及三叶草根瘤共生菌三叶草根瘤菌(NA - 30、ANU843、0403、TA - 1、LPR5035、USDA20.102和4S)的酸性分泌多糖(EPS)经酶解得到的寡糖进行了质子核磁共振(1H NMR)和快原子轰击质谱分析。结果揭示了这两个物种EPS之间的结构异同。从三株豆科根瘤菌菌株的EPS中获得了摩尔比为1:1:1:5的含有半乳糖、葡萄糖醛酸、α - L - 苏式 - 己 - 4 - 烯吡喃糖醛酸和葡萄糖的八糖单元,它们具有相同的主要糖基序列以及丙酮酸、乙酸和3 - 羟基丁酸取代基的位置。约80%的半乳糖残基被3 - 羟基丁酸酰化,每个重复单元有两个乙酰基分布在八糖主链衍生序列的2个葡萄糖残基之间。相比之下,三叶草根瘤菌菌株的EPS结构各异,每种都与豆科根瘤菌常见的EPS结构不同。一组三叶草根瘤菌菌株(0403和LPR5035)的EPS与豆科根瘤菌的EPS最为相似,但不同之处在于被3 - 羟基丁酰基和乙酰基取代的半乳糖和葡萄糖残基数量较少。另一组三叶草根瘤菌菌株(ANU843、TA - 1和NA - 30)的EPS与豆科根瘤菌的EPS差异更大。这些三叶草根瘤菌八糖在葡萄糖醛酸残基的O - 3位带有一个乙酰基。此外,3 - 羟基丁酰基的酰化水平是豆科根瘤菌EPS中的50%。三叶草根瘤菌的其余两株菌株(USDA20.102和4S)彼此之间以及与所有其他菌株的酰化模式都非常不同。USDA20.102菌株的EPS几乎没有3 - 羟基丁酰基,并且具有独特的乙酰化程度和模式。三叶草根瘤菌4S菌株EPS的寡聚物完全没有3 - 羟基丁酰基和半乳糖。后者的EPS仅含有一个O - 1 - 羧基亚乙基基团,并且具有不同的乙酰化程度和模式。有趣的是,后两株菌株在三叶草交叉接种组中对稀有三叶草物种的结瘤率方面与其他三叶草根瘤菌菌株不同。因此,我们根据三叶草根瘤菌的EPS结构定义了几组,并确定了它们与豆科根瘤菌EPS的异同。(摘要截于400字)