Department of Agriculture, Food, Natural Resources and Engineering (DAFNE), University of Foggia, Via Napoli 25, 71122 Foggia, Italy.
Department of Agriculture, Food, Natural Resources and Engineering (DAFNE), University of Foggia, Via Napoli 25, 71122 Foggia, Italy.
Ultrason Sonochem. 2021 Jun;74:105583. doi: 10.1016/j.ultsonch.2021.105583. Epub 2021 May 4.
This paper focused on the evaluation of Ultrasound effect on the growth patterns (3-6% of salt and 45 °C), acidification (pH-decrease), interactions with microorganisms, and membrane permeability of nine strains of Lactiplantibacillus plantarum. Ultrasound treatment was applied at 20% of net power by modulating duration (2-10 min) and pulses (2-10 s). Viable count (7.15-8.16 log CFU/mL) was never affected by Ultrasound, while the treatment increased the extent of pH decrease of at least three strains (109, 162 and c19). L. plantarum c19 was the best performer, as a low intensity treatment was able to increase its acidification, without affecting its growth. The effects could be attributed to an increased permeability of the cellular membrane, as suggested by the increase of released intracellular components. Other factors should be further assessed (e.g. possible changes in the metabolism) and the performances of Ultrasound-treated strains in real brines.
本论文聚焦于超声处理对 9 株植物乳杆菌生长模式(3-6%盐度和 45°C)、酸化(pH 值下降)、与微生物相互作用和膜通透性的影响。超声处理在 20%净功率下进行,通过调节时间(2-10 分钟)和脉冲(2-10 秒)来控制。超声处理从未影响活菌数(7.15-8.16 log CFU/mL),但处理至少增加了 3 株菌的 pH 值下降幅度(109、162 和 c19)。植物乳杆菌 c19 表现最佳,因为低强度处理能够增加其酸化程度,而不影响其生长。这可以归因于细胞膜通透性的增加,正如细胞内成分释放的增加所表明的那样。还应进一步评估其他因素(例如代谢可能发生的变化)以及超声处理菌株在实际盐水中的性能。