Abstract:
:Soils amended for long-term with high levels of compost demonstrated greater abundance of bacterial members of the phylum Bacteroidetes whereas a decreasing trend in the relative abundance of phylum Acidobacteria was noted with increasing levels of compost. Metabolic profiles predicted by PICRUSt demonstrated differences in functional responses of the bacterial community according to the treatments. Soils amended with lower compost levels were characterized by abundance of genes encoding enzymes contributing to membrane transport and cell growth whereas genes encoding enzymes related to protein folding and transcription were enriched in soils amended with high levels of compost. Thus, the results of the current study provide extensive evidence of the influence of different compost levels on bacterial diversity and community structure in paddy soils.
journal_name
J Microbiol Biotechnoljournal_title
Journal of microbiology and biotechnologyauthors
Samaddar S,Han GH,Chauhan P,Chatterjee P,Jeon S,Sa Tdoi
10.4014/jmb.1811.11018subject
Has Abstractpub_date
2019-02-28 00:00:00pages
292-296issue
2eissn
1017-7825issn
1738-8872pii
10.4014/jmb.1811.11018journal_volume
29pub_type
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