RRC ID 5006
著者 Sawatari Y, Yokota A.
タイトル Diversity and mechanisms of alkali tolerance in lactobacilli.
ジャーナル Appl Environ Microbiol
Abstract We determined the maximum pH that allows growth (pHmax) for 34 strains of lactobacilli. High alkali tolerance was exhibited by strains of Lactobacillus casei, L. paracasei subsp. tolerans, L. paracasei subsp. paracasei, L. curvatus, L. pentosus, and L. plantarum that originated from plant material, with pHmax values between 8.5 and 8.9. Among these, L. casei NRIC 1917 and L. paracasei subsp. tolerans NRIC 1940 showed the highest pHmax, at 8.9. Digestive tract isolates of L. gasseri, L. johnsonii, L. reuteri, L. salivarius subsp. salicinius, and L. salivarius subsp. salivarius exhibited moderate alkali tolerance, with pHmax values between 8.1 and 8.5. Dairy isolates of L. delbrueckii subsp. bulgaricus, L. delbrueckii subsp. lactis, and L. helveticus exhibited no alkali tolerance, with pHmax values between 6.7 and 7.1. Measurement of the internal pH of representative strains revealed the formation of transmembrane proton gradients (DeltapH) in a reversed direction (i.e., acidic interior) at alkaline external-pH ranges, regardless of their degrees of alkali tolerance. Thus, the reversed DeltapH did not determine alkali tolerance diversity. However, the DeltapH contributed to alkali tolerance, as the pHmax values of several strains decreased with the addition of nigericin, which dissipates DeltapH. Although neutral external-pH values resulted in the highest glycolysis activity in the presence of nigericin regardless of alkali tolerance, substantial glucose utilization was still detected in the alkali-tolerant strains, even in a pH range of between 8.0 and 8.5, at which the remaining strains lost most activity. Therefore, the alkali tolerance of glycolysis reactions contributes greatly to the determination of alkali tolerance diversity.
巻・号 73(12)
ページ 3909-15
公開日 2007-6-1
DOI 10.1128/AEM.02834-06
PII AEM.02834-06
PMID 17449704
PMC PMC1932741
MeSH Cell Membrane / metabolism Glycolysis / physiology* Hydrogen-Ion Concentration Lactobacillus / growth & development* Lactobacillus / metabolism* Nigericin Species Specificity
IF 4.016
引用数 20
WOS 分野 BIOTECHNOLOGY & APPLIED MICROBIOLOGY MICROBIOLOGY
リソース情報
一般微生物 JCM1134 JCM1171 JCM8130 JCM1096 JCM1558 JCM1149 JCM1150 JCM1040 JCM1044 JCM1231 JCM1131 JCM5813 JCM1022 JCM2012 JCM1157 JCM1112 JCM1012 JCM1173 JCM1116 JCM1001 JCM1002 JCM1248 JCM1062 JCM1120 JCM1132 JCM8729