Population dynamics of Bifidobacterium species in human feces during raffinose administration monitored by fluorescence in situ hybridization-flow cytometry

被引:41
作者
Dinoto, Achmad
Marques, Tatiana M.
Sakamoto, Kanta
Fukiya, Satoru
Watanabe, Jun
Ito, Susumu
Yokota, Atsushi
机构
[1] Hokkaido Univ, Lab Microbial Physiol, Res Fac Agr, Kita Ku, Sapporo, Hokkaido 0608589, Japan
[2] Hokkaido Univ, CRIS, Kita Ku, Sapporo, Hokkaido 0010021, Japan
关键词
D O I
10.1128/AEM.01777-06
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The population dynamics of bifidobacteria in human feces during raffinose administration were investigated at the species level by using fluorescence in situ hybridization (FISH) coupled with flow cytometry (FCM) analysis. Although double-staining FISH-FCM using both fluorescein isothiocyanate (FITC) and indodicarbocyanine (Cy5) as labeling dyes for fecal samples has been reported, the analysis was interfered with by strong autofluorescence at the FITC fluorescence region because of the presence of autofluorescence particles/debris in the fecal samples. We circumvented this problem by using only Cy5 fluorescent dye in the FISH-FCM analysis. Thirteen subjects received 2 g of raffinose twice a day for 4 weeks. Fecal samples were collected, and the bifidobacterial populations were monitored using the established FISH-FCM method. The results showed an increase in bifidobacteria from about 12.5% of total bacteria in the prefeeding period to about 28.7 and 37.2% after the 2-week and 4-week feeding periods, respectively. Bifidobacterium adolescentis, the Bifidobacterium catenulatum group, and Bifidobacterium longum were the major species, in that order, at the prefeeding period, and these bacteria were found to increase nearly in parallel during the raffinose administration. During the feeding periods, indigenous bifidobacterial populations became more diverse, such that minor species in human adults, such as Bifidobacterium breve, Bifidobacterium bifidum, Bifidobacterium dentium, and Bifidobacterium angulatum, proliferated. Four weeks after raffinose administration was stopped, the proportion of each major bifidobacterial species, as well as that of total bifidobacteria, returned to approximately the original values for the prefeeding period, whereas that of each minor species appeared to differ considerably from its original value. To the best of our knowledge, these results provide the first clear demonstration of the population dynamics of indigenous bifidobacteria at the species level in response to raffinose administration.
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页码:7739 / 7747
页数:9
相关论文
共 30 条
[1]   COMBINATION OF 16S RIBOSOMAL-RNA-TARGETED OLIGONUCLEOTIDE PROBES WITH FLOW-CYTOMETRY FOR ANALYZING MIXED MICROBIAL-POPULATIONS [J].
AMANN, RI ;
BINDER, BJ ;
OLSON, RJ ;
CHISHOLM, SW ;
DEVEREUX, R ;
STAHL, DA .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1990, 56 (06) :1919-1925
[2]   AUTOFLUORESCENCE OF VIABLE CULTURED MAMMALIAN-CELLS [J].
AUBIN, JE .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1979, 27 (01) :36-43
[3]   Microbiological effects of consuming a synbiotic containing Bifidobacterium bifidum, Bifidobacterium lactis, and oligofructose in elderly persons, determined by real-time polymerase chain reaction and counting of viable bacteria [J].
Bartosch, S ;
Woodmansey, EJ ;
Paterson, JCM ;
McMurdo, MET ;
Macfarlane, GT .
CLINICAL INFECTIOUS DISEASES, 2005, 40 (01) :28-37
[4]   Genetic diversity of viable, injured, and dead fecal bacteria assessed by fluorescence-activated cell sorting and 16S rRNA gene analysis [J].
Ben-Amor, K ;
Heilig, H ;
Smidt, H ;
Vaughan, EE ;
Abee, T ;
de Vos, WM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2005, 71 (08) :4679-4689
[5]  
Benno Y., 1987, Bifidobacteria and Microflora, V6, P59
[6]   CELLULAR AUTOFLUORESCENCE - IS IT DUE TO FLAVINS [J].
BENSON, RC ;
MEYER, RA ;
ZARUBA, ME ;
MCKHANN, GM .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1979, 27 (01) :44-48
[7]   The Ribosomal Database Project (RDP-II): sequences and tools for high-throughput rRNA analysis [J].
Cole, JR ;
Chai, B ;
Farris, RJ ;
Wang, Q ;
Kulam, SA ;
McGarrell, DM ;
Garrity, GM ;
Tiedje, JM .
NUCLEIC ACIDS RESEARCH, 2005, 33 :D294-D296
[8]   Modulation of rat cecal microbiota by administration of raffinose and encapsulated Bifidobacterium breve [J].
Dinoto, A ;
Suksomcheep, A ;
Ishizuka, S ;
Kimura, H ;
Hanada, S ;
Kamagata, Y ;
Asano, K ;
Tomita, F ;
Yokota, A .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2006, 72 (01) :784-792
[9]  
Franks AH, 1998, APPL ENVIRON MICROB, V64, P3336
[10]   Phylogenetic analysis of the human gut microbiota using 16S rDNA clone libraries and strictly anaerobic culture-based methods [J].
Hayashi, H ;
Sakamoto, M ;
Benno, Y .
MICROBIOLOGY AND IMMUNOLOGY, 2002, 46 (08) :535-548