Ivanova E G, Doronina N V, Shepeliakovskaia A O, Laman A G, Brovko F A, Trotsenko Iu A
Skryabin Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, pr. Nauki 5, Pushchino, Moscow oblast, 142290 Russia.
Mikrobiologiia. 2000 Nov-Dec;69(6):764-9.
The presence and expression of genes controlling the synthesis and secretion of cytokinins by the pink-pigmented facultative methylotroph Methylobacterium mesophilicum VKM B-2143 with the serine pathway and nonpigmented obligate methylotroph Methylovorus mays VKM B-2221 with the ribulose monophosphate pathway of C1 metabolism were shown using the polymerase chain reaction (PCR) and reverse transcription-PCR methods. The presence of the corresponding mRNA in M. mesophilicum cells grown on methanol or succinate suggests that the expression of these genes is constitutive. The cytokinin activity of culture liquid and its fractions was determined by a biotest with Amarantus caudatus L. seedlings. Using enzyme-linked immunosorbent analysis, we detected zeatin (riboside) in the culture liquid of both bacteria studied. The data obtained show that the aerobic methylobacteria are phytosymbionts that are able to utilize the single- and polycarbon compounds secreted by symbiotic plants and to synthesize cytokinins.
采用聚合酶链反应(PCR)和逆转录 - PCR方法,证实了粉红色兼性甲基营养菌嗜中温甲基杆菌VKM B - 2143(具有丝氨酸途径)和非色素化专性甲基营养菌玉米甲基食菌VKM B - 2221(具有C1代谢的核糖单磷酸途径)中控制细胞分裂素合成和分泌的基因的存在及表达。在以甲醇或琥珀酸盐为生长底物的嗜中温甲基杆菌细胞中存在相应的mRNA,这表明这些基因的表达是组成型的。通过对尾穗苋幼苗进行生物测定,确定了培养液及其组分的细胞分裂素活性。利用酶联免疫吸附分析,我们在两种研究细菌的培养液中均检测到了玉米素(核糖苷)。所获得的数据表明,需氧甲基细菌是能够利用共生植物分泌的单碳和多碳化合物并合成细胞分裂素的植物共生体。