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采用综合表型-基因型方法来理解超声对清酒乳杆菌代谢反应的影响。

Integrated phenotypic-genotypic approach to understand the influence of ultrasound on metabolic response of Lactobacillus sakei.

作者信息

Ojha K Shikha, Burgess Catherine M, Duffy Geraldine, Kerry Joseph P, Tiwari Brijesh K

机构信息

Food Chemistry and Technology, Teagasc Food Research Centre, Dublin, Ireland.

Food Safety, Teagasc Food Research Centre, Dublin, Ireland.

出版信息

PLoS One. 2018 Jan 25;13(1):e0191053. doi: 10.1371/journal.pone.0191053. eCollection 2018.

Abstract

The lethal effects of soundwaves on a range of microorganisms have been known for almost a century whereas, the use of ultrasound to promote or control their activity is much more recent. Moreover, the fundamental molecular mechanism influencing the behaviour of microorganisms subjected to ultrasonic waves is not well established. In this study, we investigated the influence of ultrasonic frequencies of 20, 45, 130 and 950 kHz on growth kinetics of Lactobacillus sakei. A significant increase in the growth rate of L. sakei was observed following ultrasound treatment at 20 kHz despite the treatment yielding a significant reduction of ca. 3 log cfu/mL in cells count. Scanning electron microscopy showed that ultrasound caused significant changes on the cell surface of L. sakei culture with the formation of pores "sonoporation". Phenotypic microarrays showed that all ultrasound treated L. sakei after exposure to various carbon, nitrogen, phosphorus and sulphur sources had significant variations in nutrient utilisation. Integration of this phenotypic data with the genome of L. sakei revealed that various metabolic pathways were being influenced by the ultrasound treatments. Results presented in this study showed that the physiological response of L. sakei in response to US is frequency dependent and that it can influence metabolic pathways. Hence, ultrasound treatments can be employed to modulate microbial activity for specialised applications.

摘要

声波对一系列微生物的致死作用已为人所知近一个世纪,而利用超声波促进或控制其活性则是最近才出现的。此外,影响受超声波作用的微生物行为的基本分子机制尚未完全确立。在本研究中,我们研究了20、45、130和950千赫的超声频率对清酒乳杆菌生长动力学的影响。尽管在20千赫的超声处理后细胞计数显著降低了约3 log cfu/mL,但仍观察到清酒乳杆菌的生长速率显著增加。扫描电子显微镜显示,超声波导致清酒乳杆菌培养物的细胞表面发生显著变化,形成了“声孔效应”的孔。表型微阵列显示,所有经超声处理的清酒乳杆菌在接触各种碳、氮、磷和硫源后,营养物质利用方面有显著差异。将这些表型数据与清酒乳杆菌的基因组整合后发现,各种代谢途径受到超声处理的影响。本研究结果表明,清酒乳杆菌对超声的生理反应是频率依赖性的,并且它可以影响代谢途径。因此,超声处理可用于调节微生物活性以用于特定应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0202/5784923/9f74896f1c14/pone.0191053.g001.jpg

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