Affiliation:
1. Research Faculty of Agriculture, Hokkaido University, Sapporo 060-8589, Japan
2. Institute of Biological Problems of Cryolithzone, Russian Academy of Sciences, 41 Lenin Avenue, Yakutsk 677891, Russia
Abstract
ABSTRACT
For evaluating N
2
fixation of diazotrophic bacteria, nitrogen-poor liquid media supplemented with at least 0.5% sugar and 0.2% agar are widely used for acetylene reduction assays. In such a soft gel medium, however, many N
2
-fixing soil bacteria generally show only trace acetylene reduction activity. Here, we report that use of a N
2
fixation medium solidified with gellan gum instead of agar promoted growth of some gellan-preferring soil bacteria. In a soft gel medium solidified with 0.3% gellan gum under appropriate culture conditions, bacterial microbiota from boreal forest bed soils and some free-living N
2
-fixing soil bacteria isolated from the microbiota exhibited 10- to 200-fold-higher acetylene reduction than those cultured in 0.2% agar medium. To determine the N
2
fixation-activating mechanism of gellan gum medium, qualitative differences in the colony-forming bacterial components from tested soil microbiota were investigated in plate cultures solidified with either agar or gellan gum for use with modified Winogradsky's medium. On 1.5% agar plates, apparently cryophilic bacterial microbiota showed strictly distinguishable microbiota according to the depth of soil in samples from an eastern Siberian Taiga forest bed. Some pure cultures of proteobacteria, such as
Pseudomonas fluorescens
and
Burkholderia xenovorans
, showed remarkable acetylene reduction. On plates solidified with 1.0% gellan gum, some soil bacteria, including
Luteibacter
sp.,
Janthinobacterium
sp.,
Paenibacillus
sp., and
Arthrobacter
sp., uniquely grew that had not grown in the presence of the same inoculants on agar plates. In contrast,
Pseudomonas
spp. and
Burkholderia
spp. were apparent only as minor colonies on the gellan gum plates. Moreover, only gellan gum plates allowed some bacteria, particularly those isolated from the shallow organic soil layer, to actively swarm. In consequence, gellan gum is a useful gel matrix to bring out growth potential capabilities of many soil diazotrophs and their consortia in communities of soil bacteria.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
33 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献