Expanding the biotechnology potential of lactobacilli through comparative genomics of 213 strains and associated genera

Расширение биотехнологического потенциала лактобацилл посредством сравнительной геномики 213 штаммов и родственных родов
Zhihong Sun, Paul W. O’Toole, Willem M. de Vos, R. Paul Ross, Julian Parkhill, Rodolphe Barrangou, Órla O’Sullivan, Yuqin Song, Xianwei Yang, Ruifu Yang, Ian B. Jeffery, Wenyi Zhang, Todd R. Klaenhammer, Yujun Cui, François P. Douillard, Mary C. Rea, Hugh M. B. Harris, Heping Zhang, Page W. Caufield, Wenjun Liu, Elisa Salvetti, Giovanna E. Felis, Angela McCann, Chenyi Guo, Silvia Argimón, Jakki C. Cooney, Todd F. Kagawa, Agnieszka Wróbel, Pia Rasinkangas, Jarmo Ritari, Alexandra E. Briner
2015-09-29

213 Lactobacillus strains genome sequencesLactobacillus comparative genomicscarbohydrate and protein biotransformation genesnovel CRISPR-Cas systems in lactobacilliphylogenomic framework for species classification
Lactobacilli are a diverse group of species that occupy diverse nutrient-rich niches associated with humans, animals, plants and food. They are used widely in biotechnology and food preservation, and are being explored as therapeutics. Exploiting lactobacilli has been complicated by metabolic diversity, unclear species identity and uncertain relationships between them and other commercially important lactic acid bacteria. The capacity for biotransformations catalysed by lactobacilli is an untapped biotechnology resource. Here we report the genome sequences of 213 Lactobacillus strains and associated genera, and their encoded genetic catalogue for modifying carbohydrates and proteins. In addition, we describe broad and diverse presence of novel CRISPR-Cas immune systems in lactobacilli that may be exploited for genome editing. We rationalize the phylogenomic distribution of host interaction factors and bacteriocins that affect their natural and industrial environments, and mechanisms to withstand stress during technological processes. We present a robust phylogenomic framework of existing species and for classifying new species.
1
A robust phylogenomic framework was developed to resolve existing species relationships and to classify new Lactobacillus species.
2
Genome sequences of 213 Lactobacillus strains and associated genera were generated and analyzed.
3
Novel and broadly distributed CRISPR-Cas immune systems were identified across lactobacilli, indicating potential tools for genome editing.
4
Phylogenomic analysis clarifies distribution of host interaction factors, bacteriocins, and stress-resistance mechanisms relevant to natural and industrial environments.
5
The genomes provide a genetic catalogue for lactobacilli-encoded enzymes that modify carbohydrates and proteins, revealing biotransformation potential for biotechnology.

Genomes of 213 Lactobacillus strains and associated genera

Comparative genomic characterization of genetic capacities for carbohydrate and protein modification, novel CRISPR–Cas systems, host-interaction factors, bacteriocins, stress-resistance mechanisms, and a phylogenomic framework for species classification to expand biotechnology potential

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2015-09-29
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Authors
Zhihong Sun
Paul W. O’Toole
Willem M. de Vos
R. Paul Ross
Julian Parkhill
Rodolphe Barrangou
Órla O’Sullivan
Yuqin Song
Xianwei Yang
Ruifu Yang
Ian B. Jeffery
Wenyi Zhang
Todd R. Klaenhammer
Yujun Cui
François P. Douillard
Mary C. Rea
Hugh M. B. Harris
Heping Zhang
Page W. Caufield
Wenjun Liu
Elisa Salvetti
Giovanna E. Felis
Angela McCann
Chenyi Guo
Silvia Argimón
Jakki C. Cooney
Todd F. Kagawa
Agnieszka Wróbel
Pia Rasinkangas
Jarmo Ritari
Alexandra E. Briner
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