Characterization of Azospirillum brasilense Lipopolysaccharides

Q4 Biochemistry, Genetics and Molecular Biology Mikrobiolohichnyi zhurnal Pub Date : 2022-12-17 DOI:10.15407/microbiolj84.03.029
T. V. Bulyhina, L.D. Varbanest
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Abstract

Azospirillum brasilense is a gram-negative, nitrogen-fixing bacterium that colonizes the rhizosphere of various types of grasses and cereals. Lipopolysaccharides (LPS) are a class of complex glycolipids present in the cell membrane of gramnegative bacteria and mediate plant-bacteria interactions. Although the effects of LPS of pathogenic plant bacteria on the induction of plant defense mechanisms have been characterized, the role of LPS of beneficial rhizobacteria on plant growth is less clear. Therefore, a very important point is the study of the chemical, biological, and functional activities of A. brasilense LPS, which was the aim of this work. Methods. A. brasilense LPSs were isolated from dry bacterial mass by the phenol-water method. The carbohydrates were analyzed by the Dubois method, nucleic acids — by Spirin, protein content — by Lowry and 2-keto-3-deoxyoctonic acid (KDO) — by Osborn. Pyrogenicity of LPS was tested observing the rules of bioethics in rabbits. Serological studies were performed by the Ouchterlony method. The identification of monosaccharides and fatty acids in LPS preparations was carried out on an Agilent 6890N/5973 inert chromatomass spectrometry system. Polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate (SDS-PAAG electrophoresis) was performed according to Laemmli. Results. LPS of 3 strains of A. brasilense were isolated from dry bacterial mass and purifi ed from nucleic acids by ultracentrifugation. The purified LPSs were characterized by different relative yields from 2.44% to 4.75%, which is slightly higher than other strains of the A. brasilense (1—3%). The studied preparations were characterized by a rather high content of carbohydrates from 50.1% to 72.1%. All LPS contained up to 0.17% KDO, which is a specific component of the LPS of gram-negative bacteria. Analysis of the monosaccharide composition indicates that the LPSs of the studied A. brasilense strains turned out to be heterogeneous. At the same time, such monosaccharides as mannose, galactose, glucose, and heptose were recorded in the LPS of all tested strains. The study of the fatty acid composition of LPS showed the presence of fatty acids containing from 14 to 18 carbon atoms. Нydroxylated, saturated, and monounsaturated acids and their cis isomers were found. In the investigated LPS, the dominant fatty acids were 16:0, 18:1, 14:0(3-OH), and 16:0(3-OH), which coincides with the literature data. The research of the pyrogenic effect of LPS of A. brasilense studied strains showed that LPS solutions are apyrogenic. The double immunodiffusion reaction in Ouchterlon agar showed that all tested LPS in homologous systems exhibited ancultitigenic activity. Serological cross-reactions can be used as an approach in classifying different bacteria. Thus, we found that antisera to A. brasilense 18-2 and 61 react with all LPSs of the studied strains, which may indicate the presence of common antigenic determinants in them and that these strains belong to the same serogroup. The electrophoretic distribution data indicate that A. brasilense produces S-forms of LPS which differ in the length of O-specifi c polysaccharide chains. Conclusions. For the first time, LPS were isolated from cells of A. brasilense 10/1, 18-2 and 61. A characteristic feature of these LPS is their heterogeneity in monosaccharide and fatty acid composition, all of them were apyrogenic. The results obtained during biological-functional studies of three strains of A. brasilense LPS contribute to the biological characteristics of this species.
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巴西偶氮螺旋菌脂多糖的表征
巴西氮螺旋菌是一种革兰氏阴性固氮细菌,定植于各种类型的草和谷物的根际。脂多糖(lipopolaccharides, LPS)是一类存在于革兰氏阴性菌细胞膜中的复合糖脂,可介导植物与细菌的相互作用。虽然病原植物细菌的LPS对植物防御机制的诱导作用已经被表征,但有益根瘤菌的LPS对植物生长的作用尚不清楚。因此,研究巴西螺脂多糖的化学、生物学和功能活性是本研究的一个非常重要的方面。方法。采用苯酚-水法从干菌团中分离出巴西芽孢杆菌多糖。碳水化合物用杜布瓦法分析,核酸用斯匹林法分析,蛋白质含量用洛瑞法分析,2-酮-3-脱氧辛酸(KDO)用奥斯本法分析。按照生物伦理学的规则,在家兔身上测试LPS的热原性。采用Ouchterlony法进行血清学研究。采用Agilent 6890N/5973惰性质谱系统对LPS制剂中的单糖和脂肪酸进行鉴定。采用Laemmli法,在十二烷基硫酸钠存在下进行聚丙烯酰胺凝胶电泳(SDS-PAAG电泳)。结果。从干菌团中分离出3株巴西芽孢杆菌的脂多糖,并进行了核酸的超离心纯化。纯化后的多糖相对产率为2.44% ~ 4.75%,略高于其他菌株(1 ~ 3%)。所研究的制剂具有较高的碳水化合物含量(50.1% ~ 72.1%)的特点。所有LPS均含有高达0.17%的KDO, KDO是革兰氏阴性菌LPS的特异性成分。单糖组成分析表明,所研究的巴西螺菌株的lps具有异质性。同时,在所有被试菌株的LPS中记录了甘露糖、半乳糖、葡萄糖和庚糖等单糖。对脂多糖脂肪酸组成的研究表明,脂多糖中含有14 ~ 18个碳原子的脂肪酸。Нydroxylated,饱和酸和单不饱和酸及其顺式异构体。在所研究的LPS中,优势脂肪酸为16:0、18:1、14:0(3-OH)和16:0(3-OH),与文献数据一致。对巴西丝孢单胞杆菌菌株LPS的热原效应研究表明,LPS溶液具有无致生作用。欧氏琼脂双免疫扩散反应表明,所有的LPS在同源体系中均表现出促炎性活性。血清学交叉反应可作为分类不同细菌的一种方法。因此,我们发现巴西螺18-2和61的抗血清与所研究菌株的所有lps都有反应,这可能表明它们存在共同的抗原决定因素,并且这些菌株属于同一血清群。电泳分布数据表明,巴西芽孢杆菌产生的s型LPS在o特异性多糖链的长度上存在差异。结论。首次从巴西棘球蚴10/1、18-2和61细胞中分离到LPS。这些脂多糖的一个特点是单糖和脂肪酸组成的异质性,它们都是无致孕的。通过对3株巴西螺脂多糖的生物学功能研究,获得了该物种的生物学特性。
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Mikrobiolohichnyi zhurnal
Mikrobiolohichnyi zhurnal Medicine-Microbiology (medical)
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