Bruni Gillian O, Terrell Evan, Klasson K Thomas, Qi Yunci
Commodity Utilization Research Unit, Southern Regional Research Center, 1100 Allen Toussaint Blvd., USDA, Agricultural Research Service, New Orleans, LA 70124, USA.
National Center for Agricultural Utilization Research, USDA, Agricultural Research Service, Peoria, IL 61604, USA.
J Ind Microbiol Biotechnol. 2024 Dec 31;52. doi: 10.1093/jimb/kuaf001.
Microbial isolates from sugar crop processing facilities were tested for sensitivity to several industrial antimicrobial agents to determine optimal dosing. Hydritreat 2216 showed broad-spectrum activity against all bacterial isolates as well as Saccharomyces cerevisiae. Sodium hypochlorite showed broad-spectrum activity against all isolates, but at much higher effective concentrations. Hops BetaStab XL was effective against Gram-positive isolates. Magna Cide D minimum inhibitory concentration was lowest for S. cerevisiae and Zymomonas mobilis but was less effective against Gram-positive bacterial strains. Based on laboratory experiments, factory losses of sucrose from a single microbial species in the absence of antimicrobials could range from 0.13 to 0.52 kg of sucrose per tonne of cane. Additional improvements in sugar yield are anticipated from agents with broad-spectrum activity. A cost analysis was conducted considering sucrose savings due to antimicrobial application to provide estimates for break-even costs, which ranged from approximately $0.50 to $2.00/L for a given antimicrobial agent.
ONE-SENTENCE SUMMARY: Application of antimicrobial agents at minimal inhibitory doses for microbes results in optimal inhibition of microbial growth and sucrose consumption.
对从制糖作物加工设施分离出的微生物进行了几种工业抗菌剂的敏感性测试,以确定最佳剂量。Hydritreat 2216对所有细菌分离株以及酿酒酵母显示出广谱活性。次氯酸钠对所有分离株显示出广谱活性,但有效浓度要高得多。啤酒花BetaStab XL对革兰氏阳性分离株有效。Magna Cide D对酿酒酵母和运动发酵单胞菌的最低抑菌浓度最低,但对革兰氏阳性细菌菌株的效果较差。根据实验室实验,在没有抗菌剂的情况下,单一微生物物种导致的工厂蔗糖损失可能为每吨甘蔗0.13至0.52千克蔗糖。预计具有广谱活性的药剂会使糖产量有进一步提高。进行了成本分析,考虑到因使用抗菌剂而节省的蔗糖,以提供收支平衡成本的估计值,对于给定的抗菌剂,收支平衡成本约为每升0.50至2.00美元。
以最小抑菌剂量对微生物施用抗菌剂可实现对微生物生长和蔗糖消耗的最佳抑制。