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Published on: June 3, 2020
Fructophilic lactic acid bacteria as a window into multi-scale convergent evolution
Naoki Konno1, Shintaro Maeno2, Akihito Endo3
1Department of Genetics, School of Medicine, Stanford University, 240 Pasteur Drive, Palo Alto, CA 94304, United States; Universal Biology Institute, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Fructophilic lactic acid bacteria (FLAB) thrive on fructose, not glucose, due to unique genome adaptations. These bacteria showcase convergent evolution, independently losing genes to adapt to sugar-rich habitats like flowers and bees.
Area of Science:
- Microbiology
- Genomics
- Evolutionary Biology
Background:
- Fructophilic lactic acid bacteria (FLAB) are characterized by poor growth on glucose but enhanced growth with fructose or electron acceptors.
- FLAB inhabit fructose-rich environments, including flowers, fruits, and insects like honey bees.
- Representative genera include Apilactobacillus and Fructobacillus, which are phylogenetically distant.
Purpose of the Study:
- To investigate the unique genomic characteristics of FLAB.
- To understand the evolutionary processes driving FLAB adaptation to fructose-rich environments.
- To explore the convergent reductive evolution in FLAB and compare it with other organisms.
Main Methods:
- Comparative genomic analysis of FLAB.
- Investigation of gene loss patterns, particularly the adhE gene.
- Analysis of carbohydrate transport and metabolism genes.
Main Results:
- FLAB possess small genomes with reduced carbohydrate metabolism genes, reflecting adaptation to fructose.
- Independent gene loss occurred in Fructobacillus and Apilactobacillus, with similar orders of loss for many genes.
- The absence of an intact adhE gene was identified as the cause of poor glucose growth in FLAB.
Conclusions:
- FLAB exemplify habitat-driven convergent reductive evolution.
- Genome reduction in FLAB is a specific adaptation to fructose-rich environments.
- FLAB share evolutionary traits with eukaryotic yeasts inhabiting similar fructose-rich niches.
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