Zameer Mahnoor, Shahid Izzah, Saleem Rahman Shahzaib, Baig Deeba Noreen, Zareen Maryam, Malik Kauser Abdulla, Mehnaz Samina
Kauser Abdulla Malik School of Life Sciences, Forman Christian College (A Chartered University), Ferozepur Road, Lahore 54600, Pakistan.
Institute of Multidisciplinary Research in Applied Biology, Public University of Navarra, Campus Arrosadia, Pamplona 31006, Spain.
J Microbiol Biotechnol. 2025 Feb 14;35:e2311041. doi: 10.4014/jmb.2311.11041.
The following study aimed to characterize the biological potential of the purified compounds of PB-St2. Optimization of temperature and incubation time of 32oC and 72 h yielded the highest crude extract weight and optical density of bacterial culture. HPLC analysis of the crude metabolite extract (purified using gravitational column chromatography) showed three fractions named as PC1, PC2, and PC3. HPLC-purified fractions were subjected to LC-MS/MS analysis and the data was compared using reference library. Fraction PC1 was identified as mupirocin, PC2 as phenazine-1-carboxylic acid (PCA), and PC3 as the mixture of three compounds including pyoluteorin, PCA and 2-hydroxyphenazine (2-OH-phz). Fungicidal potential of the purified compounds was assessed against phytopathogens including , , , and . Fraction PC3 showed the highest fungicidal activity of 89%, whereas, the least antifungal activity (27%) was noted for mupirocin. Antibacterial activity of the purified compounds against Gram-positive pathogen , and Gram-negative pathogens , , and was also assessed. Fraction PC3 demonstrated the highest antibacterial activity against and showing 1.8 cm, and 0.9 cm zones of inhibition, respectively. Against and , the antibacterial activity of PB-St2 crude extract was slightly higher than the fraction PC3. The fraction PC3 also demonstrated the highest IC against HepG-2 and SF767 cancer cell lines at 25 μg and 20 μg concentrations, respectively. The multifaceted attributes of PB-St2 make it an ideal candidate for agricultural and pharmacological applications.
以下研究旨在表征PB-St2纯化化合物的生物学潜力。32℃和72小时的温度和孵育时间优化产生了细菌培养物的最高粗提物重量和光密度。对粗代谢物提取物(使用重力柱色谱法纯化)进行的HPLC分析显示出三个馏分,命名为PC1、PC2和PC3。对HPLC纯化的馏分进行LC-MS/MS分析,并使用参考库比较数据。馏分PC1被鉴定为莫匹罗星,PC2为吩嗪-1-羧酸(PCA),PC3为包括绿脓菌素、PCA和2-羟基吩嗪(2-OH-phz)在内的三种化合物的混合物。评估了纯化化合物对包括 、 、 和 在内的植物病原体的杀真菌潜力。馏分PC3显示出最高的杀真菌活性,约为89%,而莫匹罗星的抗真菌活性最低(约27%)。还评估了纯化化合物对革兰氏阳性病原体 和革兰氏阴性病原体 、 和 的抗菌活性。馏分PC3对 和 表现出最高的抗菌活性,抑菌圈分别为1.8厘米和0.9厘米。对于 和 ,PB-St2粗提物的抗菌活性略高于馏分PC3。馏分PC3在25μg和20μg浓度下对HepG-2和SF767癌细胞系也表现出最高的IC值。PB-St2的多方面特性使其成为农业和药理学应用的理想候选物。