Department of Biological Sciences, Virginia Tech, Blacksburg, VA, United States of America.
Department of Biological Systems Engineering, Virginia Tech, Blacksburg, VA, United States of America.
PLoS One. 2019 Mar 8;14(3):e0212685. doi: 10.1371/journal.pone.0212685. eCollection 2019.
A commercial corn ethanol production byproduct (syrup) was used as a bacterial growth medium with the long-term aim to repurpose the resulting microbial biomass as a protein supplement in aquaculture feeds. Anaerobic batch reactors were used to enrich for soil bacteria metabolizing the syrup as the sole nutrient source over an eight-day period with the goal of obtaining pure cultures of facultative organisms from the reactors. Amplification of the V4 variable region of the 16S rRNA gene was performed using barcoded primers to track the succession of microbes enriched for during growth on the syrup. The resulting PCR products were sequenced using Illumina MiSeq protocols, analyzed via the program QIIME, and the alpha-diversity was calculated. Seven bacterial families were the most prevalent in the bioreactor community after eight days of enrichment: Clostridiaceae, Alicyclobacillaceae, Ruminococcaceae, Burkholderiaceae, Bacillaceae, Veillonellaceae, and Enterobacteriaceae. Pure culture isolates obtained from the reactors, and additional laboratory stock strains, capable of facultative growth, were grown aerobically in microtiter plates with the syrup substrate to monitor growth yield. Reactor isolates of interest were identified at a species level using the full 16S rRNA gene and other biomarkers. Bacillus species, commonly used as probiotics in aquaculture, showed the highest biomass yield of the monocultures examined. Binary combinations of monocultures yielded no apparent synergism between organisms, suggesting competition for nutrients instead of cooperative metabolite conversion.
利用商业玉米乙醇生产的副产物(糖浆)作为细菌生长培养基,长期目标是将由此产生的微生物生物质再利用为水产养殖饲料中的蛋白质补充剂。使用厌氧批量反应器,在八天的时间内,从糖浆作为唯一营养源中富集能够代谢糖浆的土壤细菌,目的是从反应器中获得兼性生物的纯培养物。使用带有条形码引物对 V4 可变区 16S rRNA 基因进行扩增,以跟踪在糖浆上生长时富集的微生物的演替。使用 Illumina MiSeq 方案对所得 PCR 产物进行测序,通过 QIIME 程序进行分析,并计算 alpha 多样性。经过八天的富集,在生物反应器群落中,有七个细菌家族最为普遍:梭菌科、环酸芽孢杆菌科、瘤胃球菌科、伯克霍尔德氏菌科、芽孢杆菌科、韦荣球菌科和肠杆菌科。从反应器中获得的纯培养物分离株,以及其他可兼性生长的实验室储备菌株,在含有糖浆底物的微量滴定板中进行有氧培养,以监测生长产量。使用全长 16S rRNA 基因和其他生物标志物对感兴趣的反应器分离株进行种水平鉴定。芽孢杆菌属是水产养殖中常用的益生菌,在检查的单培养物中表现出最高的生物量产量。单培养物的二元组合没有显示出生物之间明显的协同作用,这表明是对营养物质的竞争,而不是合作的代谢物转化。