Bargossi E, Tabanelli G, Montanari C, Gatto V, Chinnici F, Gardini F, Torriani S
Department of Agricultural and Food Sciences, University of Bologna, Cesena (FC), Italy.
Interdepartmental Center for Industrial Agri-Food Research, University of Bologna, Cesena (FC), Italy.
J Appl Microbiol. 2017 Apr;122(4):1078-1091. doi: 10.1111/jam.13406.
The tyraminogenic potential of the strains Enterococcus faecalis EF37 and ATCC 29212 was investigated in a synthetic medium containing defined amounts of tyrosine and phenylalanine at different temperatures.
Enterococci growth and the production of biogenic amines (BA) were evaluated in relation to their pre-growth in medium containing tyrosine. Significant differences between the two strains were evidenced at metabolic level. Both the pre-adapted strains grew faster in all the tested conditions, independently of the presence of the precursor. Temperatures of 30 and 40°C positively affected the growth parameters. The tyrosine decarboxylase (tyrDC) activity of the strain EF37 was positively affected by pre-adaptation, while ATCC 29212 showed a faster and higher tyramine accumulation with not-adapted cells. The expression analysis of the gene tyrDC confirmed the influence of the growth conditions on gene transcription.
The small differences found between the two strains in the maximum transcript level reached rapidly after the inoculum and the different behaviour in the tyramine accumulation suggested the possible involvement of complex regulation mechanisms on the tyrDC or on the membrane transport systems, which could affect the different BA accumulation trend.
This study gives deeper insight into the metabolic regulation of tyrDC activity of enterococci.
在含有不同温度下特定量酪氨酸和苯丙氨酸的合成培养基中,研究粪肠球菌EF37和ATCC 29212菌株的产酪胺潜力。
根据肠球菌在含酪氨酸培养基中的预生长情况,评估其生长及生物胺(BA)的产生。在代谢水平上,两种菌株之间存在显著差异。在所有测试条件下,两种预适应菌株生长得更快,与前体的存在无关。30℃和40℃的温度对生长参数有积极影响。预适应对菌株EF37的酪氨酸脱羧酶(tyrDC)活性有积极影响,而ATCC 29212未适应的细胞显示出更快且更高的酪胺积累。tyrDC基因的表达分析证实了生长条件对基因转录的影响。
接种后两种菌株在最大转录水平上发现的微小差异以及酪胺积累中的不同行为表明,tyrDC或膜转运系统可能存在复杂的调控机制,这可能影响不同的BA积累趋势。
本研究更深入地了解了肠球菌tyrDC活性的代谢调控。