Repository logo
Log In(current)
  1. Home
  2. Colleges & Schools
  3. College of Arts and Sciences
  4. Microbiology
  5. Microbiology Publications and Other Works
  6. Bacillus pumilus B12 Degrades Polylactic Acid and Degradation Is Affected by Changing Nutrient Conditions
Details

Bacillus pumilus B12 Degrades Polylactic Acid and Degradation Is Affected by Changing Nutrient Conditions

Source Publication
Frontiers in Microbiology
Date Issued
January 1, 2019
Author(s)
Bonifer, Kyle S.  
Wen, Xianfang
Hasim, Sahar
Phillips, Elise K.
Dunlap, Rachel N.
Gann, Eric R.  
DeBruyn, Jennifer M.  
Reynolds, Todd B.  
DOI
https://doi.org/10.3389/fmicb.2019.02548
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/48852
Abstract

Poly-lactic acid (PLA) is increasingly used as a biodegradable alternative to traditional petroleum-based plastics. In this study, we identify a novel agricultural soil isolate of Bacillus pumilus (B12) that is capable of degrading high molecular weight PLA films. This degradation can be detected on a short timescale, with significant degradation detected within 48-h by the release of L-lactate monomers, allowing for a rapid identification ideal for experimental variation. The validity of using L-lactate as a proxy for degradation of PLA films is corroborated by loss of rigidity and appearance of fractures in PLA films, as measured by atomic force microscopy and scanning electron microscopy (SEM), respectively. Furthermore, we have observed a dose-dependent decrease in PLA degradation in response to an amino acid/nucleotide supplement mix that is driven mainly by the nucleotide base adenine. In addition, amendments of the media with specific carbon sources increase the rate of PLA degradation, while phosphate and potassium additions decrease the rate of PLA degradation by B. pumilus B12. These results suggest B. pumilus B12 is adapting its enzymatic expression based on environmental conditions and that these conditions can be used to study the regulation of this process. Together, this work lays a foundation for studying the bacterial degradation of biodegradable plastics.

Submission Type
Publisher's Version
File(s)
Thumbnail Image
Name

Bacillus.pdf

Size

2.54 MB

Format

Adobe PDF

Checksum (MD5)

ca63a999dba51d903bb60b623f090d29


University Libraries

1015 Volunteer Boulevard
Knoxville, TN 37996
865-974-4351

Map & Directions
Donate to the Libraries
  • About
  • John C. Hodges Society
  • Speaking Volumes magazine
  • Outreach
  • Directory
  • Employment
  • Policies
  • Library Intranet
University of Tennessee power T logo

The University of Tennessee, Knoxville
Knoxville, Tennessee 37996
865-974-1000

Events
A-Z
Apply
Privacy
Map
Directory
Give to UT
Accessibility

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science