Author:
Rose Mary Priyanka,Monica P,Kapoor Mukesh
Abstract
AbstractAimsTo determine the ability of adult-associatedB. adolescentisDSMZ 20083 to utilize dietary β-manno-oligosaccharides and understand the underlying molecular mechanism.Methods and ResultsIn-vitrofermentation and TLC were used to determine the ability ofB. adolescentisDSMZ 20083 to utilize β-manno-oligosaccharides from guar gum, locust bean gum, konjac and copra meal. Further, Whole-genome transcriptome analysis, q-RT-PCR and molecular docking were employed to reconstruct copra meal β-manno-oligosaccharides (CM-β-MOS) utilization pathway inB. adolescentisDSMZ 20083.B. adolescentisDSMZ 20083 grew appreciably (A600nmup to 0.8) on all tested β-manno-oligosaccharides but maximally on CM-β-MOS. Transcriptome analysis revealed differential up-regulation of three distinct gene clusters encoding, ABC transporter cassette (ESBP’s and permeases), MFS transporter, GH1 β-glucosidase and, GH32 β-fructofuranosidases. ABC and MFS possibly transported majorly DP≥2 and DP≥3 CM-β-MOS, respectively. Sugar absorption and utilization pathways; ABC transport system, pyruvate metabolism, glycolysis/gluconeogenesis, pentose, and glucouronate inter-conversions were also up-regulated.ConclusionsB. adolescentisDSMZ 20083 possibly utilizes ABC & MFS transporters to internalise and GH1 β-glucosidase, and GH32 β-fructofuranosidase to deconstruct CM-β-MOS.Significance and Impact of the StudyFirst study reporting possible molecular determinants used byB. adolescentisDSMZ 20083 to utilize β-manno-oligosaccharides and thus, can prove resourceful in precision microbiome modulation.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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1. Advances in prebiotic mannooligosaccharides;Current Opinion in Food Science;2022-10