Hussein Emad I, Jacob Jacob H, Shakhatreh Muhamad Ali K, Al-Razaq Mutaz A Abd, Juhmani Abdul-Salam F, Cornelison Christopher T
PhD, Department of Biological Sciences, Yarmouk University, P.O Box 566, Irbid 21163, Irbid, Jordan, Department of Food Science and Human Nutrition, College of Health and Applied Sciences, A'Sharqiyah University, Post Box 42, Ibra 400, Ibra, Sultanate of Oman.
PhD, Department of Biological Sciences, Al al-Bayt University, P.O.Box 130040, Mafraq 25113, Jordan.
Germs. 2018 Dec 3;8(4):191-198. doi: 10.18683/germs.2018.1146. eCollection 2018 Dec.
Detection of new is significant to discover new antibiotics because development of new antibiotics is connected to the characterization of novel bacterial taxa. This study has focused on the identification and isolation of antibiotic-producing from the sediment and the water of Ma'in thermal springs (48-59°C) situated in the center area of Jordan.
Samples of sediment and water were transferred to glucose yeast malt agar medium and were cultivated, isolated and identified according to scanning electron microscopy and 16S rRNA gene analysis. Antibacterial activities of the isolates were then tested against different test bacteria by agar well diffusion method.
Three different species of were isolated (M1-1, M2-2, M3-2) from sediment samples. Based on 16S rRNA gene analysis, isolate M1-1 was found to have only 90% identity percentage with sp., however, isolates M2-2 and M3-2 were found to be closely related sp. (97%) and (99%), respectively. The antibacterial activity showed that strain M1-1 is active against ATCC 2785 (inhibition zone, 9 mm). Strain M2-2 was found to be active against ATCC 29213 (12 mm), ATCC 11778 (11 mm), and ATCC 25922 (9 mm). In respect to strain M3-2, it was found to be active against ATCC 29213 (14 mm) and ATCC 11778 (9 mm). There were no actinobacterial isolates obtained from water samples despite their significant diversity revealed by our previous metagenomic analysis, which showed the presence of 13 different species dominated by (an Actinobacterium belonging to family ).
There were 17 different that could be detected in Ma'in thermal springs (13 unculturable species and 3 culturable species). The culturable were found to have some antimicrobial activity. Further chemical analysis of the bioactive compounds is recommended.
新型[具体细菌类别]的检测对于发现新抗生素具有重要意义,因为新抗生素的研发与新型细菌类群的特性相关。本研究聚焦于从位于约旦中部地区的马因温泉(48 - 59°C)的沉积物和水中鉴定并分离产抗生素的[具体细菌类别]。
将沉积物和水样本转移至葡萄糖酵母麦芽琼脂培养基,根据扫描电子显微镜和16S rRNA基因分析对[具体细菌类别]进行培养、分离和鉴定。然后通过琼脂孔扩散法测试分离株对不同测试细菌的抗菌活性。
从沉积物样本中分离出三种不同的[具体细菌类别](M1 - 1、M2 - 2、M3 - 2)。基于16S rRNA基因分析,发现分离株M1 - 1与[具体细菌名称]仅具有90%的同源性百分比,然而,分离株M2 - 2和M3 - 2分别与[具体细菌名称](97%)和[具体细菌名称](99%)密切相关。抗菌活性表明,菌株M1 - 1对[具体细菌名称]ATCC 2785有活性(抑菌圈,9毫米)。发现菌株M2 - 2对[具体细菌名称]ATCC 29213(12毫米)、[具体细菌名称]ATCC 11778(11毫米)和[具体细菌名称]ATCC 25922(9毫米)有活性。关于菌株M3 - 2,发现它对[具体细菌名称]ATCC 29213(14毫米)和[具体细菌名称]ATCC 11778(9毫米)有活性。尽管我们之前的宏基因组分析显示水样中存在显著的多样性,表明存在13种不同的物种,其中以[具体细菌名称](属于[具体细菌家族]的放线菌)为主,但未从水样中获得放线菌分离株。
在马因温泉中可检测到17种不同的[具体细菌类别](13种不可培养物种和3种可培养物种)。发现可培养的[具体细菌类别]具有一些抗菌活性。建议对生物活性化合物进行进一步的化学分析。