Haris Sabeera, Fang Chuanji, Bastidas-Oyanedel Juan-Rodrigo, Prather Kristala Jones, Schmidt Jens Ejbye, Thomsen Mette Hedegaard
Department of Chemical Engineering, Khalifa University of Science and Technology, Masdar City Campus, P.O. Box 54224, Abu Dhabi, United Arab Emirates.
Department of Civil and Environmental Engineering, College of Engineering, United Arab Emirates University, P.O. Box 1755, Al-Ain, United Arab Emirates.
AMB Express. 2018 Aug 6;8(1):127. doi: 10.1186/s13568-018-0654-8.
Bacterial contamination is one of the major challenges faced by yeast fermentation industries as the contaminating microorganisms produce lactic acid and acetic acid, which reduces the viability of yeast, and hence fermentation yields. The primary bacterial contaminants of yeast fermentations are lactic acid bacteria (LAB). This study aims to identify potential natural antibacterial fractions from raw and pretreated lignocellulosic biomasses found in Abu Dhabi, UAE, in terms of LAB inhibition capacity, allowing growth of the yeast. The analysis was carried out using plating technique. Pretreatment liquid of the mangrove stem Avicennia marina hydrothermally pretreated at 210 °C exhibited the widest inhibition zone with an average diameter of 14.5 mm, followed by the pretreatment liquid of mangrove leaf pretreated at 190 °C, Salicornia bigelovii pretreated at 202 °C and rachis of date palm Phoenix dactylifera pretreated at 200 °C. The compounds responsible for the antibacterial activity will be characterized in further study.
细菌污染是酵母发酵工业面临的主要挑战之一,因为污染微生物会产生乳酸和乙酸,这会降低酵母的活力,进而降低发酵产量。酵母发酵的主要细菌污染物是乳酸菌(LAB)。本研究旨在从阿联酋阿布扎比发现的原始和预处理木质纤维素生物质中鉴定出具有潜在抗菌作用的组分,评估其对乳酸菌的抑制能力,同时确保酵母能够生长。分析采用平板培养技术进行。在210°C下进行水热预处理的红树林茎木榄(Avicennia marina)的预处理液表现出最宽的抑菌圈,平均直径为14.5毫米,其次是在190°C下预处理的红树林叶片、在202°C下预处理的北美海蓬子(Salicornia bigelovii)以及在200°C下预处理的枣椰树(Phoenix dactylifera)的叶轴。负责抗菌活性的化合物将在进一步研究中进行表征。