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Monitoring the microbiome for food safety and quality using deep shotgun sequencing.
Beck, Kristen L; Haiminen, Niina; Chambliss, David; Edlund, Stefan; Kunitomi, Mark; Huang, B Carol; Kong, Nguyet; Ganesan, Balasubramanian; Baker, Robert; Markwell, Peter; Kawas, Ban; Davis, Matthew; Prill, Robert J; Krishnareddy, Harsha; Seabolt, Ed; Marlowe, Carl H; Pierre, Sophie; Quintanar, André; Parida, Laxmi; Dubois, Geraud; Kaufman, James; Weimer, Bart C.
Afiliação
  • Beck KL; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA. klbeck@us.ibm.com.
  • Haiminen N; IBM Almaden Research Center, San Jose, CA, USA. klbeck@us.ibm.com.
  • Chambliss D; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Edlund S; IBM T.J. Watson Research Center, Yorktown Heights, Ossining, NY, USA.
  • Kunitomi M; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Huang BC; IBM Almaden Research Center, San Jose, CA, USA.
  • Kong N; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Ganesan B; IBM Almaden Research Center, San Jose, CA, USA.
  • Baker R; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Markwell P; IBM Almaden Research Center, San Jose, CA, USA.
  • Kawas B; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Davis M; University of California Davis, School of Veterinary Medicine, 100 K Pathogen Genome Project, Davis, CA, 95616, USA.
  • Prill RJ; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Krishnareddy H; University of California Davis, School of Veterinary Medicine, 100 K Pathogen Genome Project, Davis, CA, 95616, USA.
  • Seabolt E; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Marlowe CH; Mars Global Food Safety Center, Beijing, China.
  • Pierre S; Wisdom Health, A Division of Mars Petcare, Vancouver, WA, USA.
  • Quintanar A; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Parida L; Mars Global Food Safety Center, Beijing, China.
  • Dubois G; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
  • Kaufman J; Mars Global Food Safety Center, Beijing, China.
  • Weimer BC; Consortium for Sequencing the Food Supply Chain, San Jose, CA, USA.
NPJ Sci Food ; 5(1): 3, 2021 Feb 08.
Article em En | MEDLINE | ID: mdl-33558514
In this work, we hypothesized that shifts in the food microbiome can be used as an indicator of unexpected contaminants or environmental changes. To test this hypothesis, we sequenced the total RNA of 31 high protein powder (HPP) samples of poultry meal pet food ingredients. We developed a microbiome analysis pipeline employing a key eukaryotic matrix filtering step that improved microbe detection specificity to >99.96% during in silico validation. The pipeline identified 119 microbial genera per HPP sample on average with 65 genera present in all samples. The most abundant of these were Bacteroides, Clostridium, Lactococcus, Aeromonas, and Citrobacter. We also observed shifts in the microbial community corresponding to ingredient composition differences. When comparing culture-based results for Salmonella with total RNA sequencing, we found that Salmonella growth did not correlate with multiple sequence analyses. We conclude that microbiome sequencing is useful to characterize complex food microbial communities, while additional work is required for predicting specific species' viability from total RNA sequencing.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: NPJ Sci Food Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: NPJ Sci Food Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos