Noaman Nadia H, Fattah Abdel, Khaleafa M, Zaky Seham H
Botany and Microbiology Department, Faculty of Science, University of Alexandria, Alexandria, Egypt.
Microbiol Res. 2004;159(4):395-402. doi: 10.1016/j.micres.2004.09.001.
An antimicrobial agent is produced by the cyanobacterium Synechococcus leopoliensis which was found to be active against the Gram-positive bacterium Staphylococcus aureus. The effects of temperature, pH, incubation period, some media and different nitrogen and carbon sources on both growth and antimicrobial activity were investigated. Temperature 35 degrees C and pH 8 were the best for growth and antimicrobial agent production and 14 and 15 days of incubation were found to be the best for maximum growth and antimicrobial activity, respectively, in the medium BG-11. No antimicrobial activity could be detected by the use of G medium, moderate activity was recorded with Chu 10 medium, while high activity was reported in BG-11 medium. Leucine was the best nitrogen source for antimicrobial activity, while maximum antimicrobial activity was introduced by using the carbon sources, citrate and acetate. Very high antimicrobial activity could be detected by using the carbon source galactose in combination with the nitrogen source alanine or by using arabinose with methionine.
一种抗菌剂由蓝藻聚球藻产生,该抗菌剂被发现对革兰氏阳性菌金黄色葡萄球菌具有活性。研究了温度、pH值、培养时间、一些培养基以及不同氮源和碳源对生长和抗菌活性的影响。35摄氏度的温度和pH值8最有利于生长和抗菌剂的产生,在BG-11培养基中,分别发现培养14天和15天最有利于达到最大生长和抗菌活性。使用G培养基未检测到抗菌活性,Chu 10培养基记录到中等活性,而BG-11培养基报告有高活性。亮氨酸是抗菌活性的最佳氮源,而使用碳源柠檬酸盐和醋酸盐可产生最大抗菌活性。通过将碳源半乳糖与氮源丙氨酸结合使用或使用阿拉伯糖与蛋氨酸结合使用,可检测到非常高的抗菌活性。