Metabolic and Morphotypic Trade-Offs within the Eco-Evolutionary Dynamics of Escherichia coli

被引:3
|
作者
Zlatkov, Nikola [1 ]
Nasman, Moa Elsa Cecilia [1 ]
Uhlin, Bernt Eric [1 ]
机构
[1] Umea Univ, Dept Mol Biol, Umea Ctr Microbial Res UCMR, Umea, Sweden
来源
MICROBIOLOGY SPECTRUM | 2022年 / 10卷 / 05期
基金
瑞典研究理事会;
关键词
Escherichia coli; ExPEC; NMEC; citrate utilization; filamentation; metabolomics; phase variation; proteomics; REGULATORY GENES; NEONATAL MENINGITIS; VIRULENCE FACTORS; S-FIMBRIAE; STRAINS; DNA; K1; FILAMENTATION; RESISTANCE; EXPRESSION;
D O I
10.1128/spectrum.00678-22
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Aerobic use of citrate and filamentous growth are arbitrary cutoffs for the Escherichia coli species. The strains that exhibit them as stable phenotypes are called atypical. Escherichia coli arbitrarily encompasses facultative anaerobic, rod-shaped bacteria with defined respiratory and fermentative types of metabolism. The species diversification has been further advanced by atypical strains whose features deviate from the essential species-specific morphological and metabolic cutoff. The morphological cutoff is exemplified by bacterial filamentation. E. coli filamentation has been studied from two different perspectives: the first considers filamentation as a result of adaptive strategies and response to stress, while the second is based on findings from the cell division of E. coli's conditional mutants. Another cutoff is represented by E. coli's inability to use citrate as a sole carbon and energy source. In this study, we compared two atypical E. coli strains that belong to the same neuroinvasive ecovar but exhibit either of the two phenotypes that deviate from the species' features. While E. coli RS218 exists in the form of filaments incapable of growth on citrate, strain IHE3034 is represented as normal-sized bacteria able to ferment citrate under oxic conditions in the presence of glucose; in this paper, we show that these two phenotypes result from a bona fide trade-off. With the help of comparative proteomics and metabolomics, we discovered the proteome required for the upkeep of these phenotypes. The metabolic profiles of both strains reveal that under aerobic conditions, RS218 undergoes oxidative metabolism, while IHE3034 undergoes anaerobic respiration. Finally, we show that the use of citrate and filament formation are both linked in a trade-off occurring via a c-di-GMP-dependent phase variation event. IMPORTANCE Aerobic use of citrate and filamentous growth are arbitrary cutoffs for the Escherichia coli species. The strains that exhibit them as stable phenotypes are called atypical. In this study, we compare two atypical neuroinvasive E. coli strains, which alternatively display either of these phenotypes. We present the proteome and metabolome required for the maintenance of filamentous growth and show that anaerobic nitrate respiration is the main requirement for the use of citrate. The fact that the two phenotypes are differentially expressed by each strain prompted us to check if they are part of a trade-off. Indeed, these atypical characters are reversible and result from a c-di-GMP phase variation event. Thus, we revealed hidden links between stable morphological and metabolic phenotypes and provided information about alternative evolutionary pathways for the survival of E. coli strains in various host niches.
引用
收藏
页数:23
相关论文
共 50 条
  • [31] Laboratory evolution reveals regulatory and metabolic trade-offs of glycerol utilization in Saccharomyces cerevisiae
    Strucko, Tomas
    Zirngibl, Katharina
    Pereira, Filipa
    Kafkia, Eleni
    Mohamed, Elsayed T.
    Rettel, Mandy
    Stein, Frank
    Feist, Adam M.
    Jouhten, Paula
    Patil, Kiran Raosaheb
    Forster, Jochen
    METABOLIC ENGINEERING, 2018, 47 : 73 - 82
  • [32] The Roles of the Immune System in Women's Reproduction: Evolutionary Constraints and Life History Trade-Offs
    Abrams, Elizabeth T.
    Miller, Elizabeth M.
    YEARBOOK OF PHYSICAL ANTHROPOLOGY, VOL 54, 2011, 54 : 134 - 154
  • [33] Evolutionary dynamics of full genome content in Escherichia coli
    Ochman, H
    Jones, IB
    EMBO JOURNAL, 2000, 19 (24): : 6637 - 6643
  • [34] OXA-48-Mediated Ceftazidime-Avibactam Resistance Is Associated with Evolutionary Trade-Offs
    Frohlich, Christopher
    Sorum, Vidar
    Thomassen, Ane Molden
    Johnsen, Pal Jarle
    Leiros, Hanna-Kirsti S.
    Samuelsen, Orjan
    MSPHERE, 2019, 4 (02)
  • [35] Costs of exploiting poisonous prey: Evolutionary trade-offs in a predator-prey arms rage
    Brodie, ED
    Brodie, ED
    EVOLUTION, 1999, 53 (02) : 626 - 631
  • [36] The Roles of the Immune System in Women's Reproduction: Evolutionary Constraints and Life History Trade-Offs
    Abrams, Elizabeth T.
    Miller, Elizabeth M.
    AMERICAN JOURNAL OF PHYSICAL ANTHROPOLOGY, 2011, 146 : 134 - 154
  • [37] Multicopy plasmids allow bacteria to escape from fitness trade-offs during evolutionary innovation
    Rodriguez-Beltran, Jeronimo
    Hernandez-Beltran, J. Carlos R.
    DelaFuente, Javier
    Escudero, Jose A.
    Fuentes-Hernandez, Ayari
    Craig MacLean, R.
    Pena-Miller, Rafael
    San Millan, Alvaro
    NATURE ECOLOGY & EVOLUTION, 2018, 2 (05): : 873 - 881
  • [38] Patterns of inter- and intrasubspecific homologous recombination inform eco-evolutionary dynamics of Xylella fastidiosa
    Potnis, Neha
    Kandel, Prem P.
    Merfa, Marcus, V
    Retchless, Adam C.
    Parker, Jennifer K.
    Stenger, Drake C.
    Almeida, Rodrigo P. P.
    Bergsma-Vlami, Maria
    Westenberg, Marcel
    Cobine, Paul A.
    De La Fuente, Leonardo
    ISME JOURNAL, 2019, 13 (09): : 2319 - 2333
  • [39] Metabolic enzyme cost explains variable trade-offs between microbial growth rate and yield
    Wortel, Meike T.
    Noor, Elad
    Ferris, Michael
    Bruggeman, Frank J.
    Liebermeister, Wolfram
    PLOS COMPUTATIONAL BIOLOGY, 2018, 14 (02)
  • [40] Metabolic Trade-offs in Yeast are Caused by F1F0-ATP synthase
    Nilsson, Avlant
    Nielsen, Jens
    SCIENTIFIC REPORTS, 2016, 6