Literature DB >> 34915336

Adaptation of anammox bacteria to low temperature via gradual acclimation and cold shocks: Distinctions in protein expression, membrane composition and activities.

Kouba V1, Vejmelkova D2, Zwolsman E3, Hurkova K4, Navratilova K4, Laureni M3, Vodickova P5, Podzimek T5, Hajslova J4, Pabst M3, van Loosdrecht McM3, Bartacek J2, Lipovova P5, Weissbrodt Dg3.   

Abstract

Anammox bacteria enable efficient removal of nitrogen from sewage in processes involving partial nitritation and anammox (PN/A) or nitrification, partial denitrification, and anammox (N-PdN/A). In mild climates, anammox bacteria must be adapted to ≤15 °C, typically by gradual temperature decrease; however, this takes months or years. To reduce the time necessary for the adaptation, an unconventional method of 'cold shocks' is promising, involving hours-long exposure of anammox biomass to extremely low temperatures. We compared the efficacies of gradual temperature decrease and cold shocks to increase the metabolic activity of anammox (fed batch reactor, planktonic "Ca. Kuenenia"). We assessed the cold shock mechanism on the level of protein expression (quantitative shot-gun proteomics, LCHRMS/MS) and the structure of membrane lipids (UPLCHRMS/MS). The shocked culture was more active (0.66±0.06 vs 0.48±0.06 kg-N/kg-VSS/d) and maintained the relative content of N-respiration proteins at levels consistent levels with the initial state, whereas the content of these proteins decreased in gradually acclimated culture. Cold shocks also induced a more efficient expression of potential cold shock proteins (e.g. ppiD, UspA, pqqC), while putative cold shock proteins CspB and TypA were upregulated in both cultures. Ladderane lipids characteristic for anammox evolved to a similar end-point in both cultures; this confirms their role in anammox bacteria adaptation to cold and indicates a three-pronged adaptation mechanism (ladderane alkyl length, introduction of shorter non-ladderane alkyls, polar headgroup). Overall, we show the outstanding potential of cold shocks for low-temperature adaptation of anammox bacteria and provide yet unreported detailed mechanisms of anammox adaptation to low temperatures.
Copyright © 2021 The Authors. Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Adaptation; Anammox; Cold shock; Gradually decreasing temperature; Kuenenia; Main stream of municipal sewage

Year:  2021        PMID: 34915336     DOI: 10.1016/j.watres.2021.117822

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  3 in total

1.  On anammox activity at low temperature: effect of ladderane composition and process conditions.

Authors:  J Hajslova; McM van Loosdrecht; D G Weissbrodt; J Bartacek; V Kouba; K Hurkova; K Navratilova; D Vejmelkova; A Benakova; M Laureni; P Vodickova; T Podzimek; P Lipovova; L van Niftrik
Journal:  Chem Eng J       Date:  2022-05-02       Impact factor: 16.744

2.  Effect of temperature on the compositions of ladderane lipids in globally surveyed anammox populations.

Authors:  Vojtěch Kouba; Kamila Hůrková; Klára Navrátilová; Dana Kok; Andrea Benáková; Michele Laureni; Patricie Vodičková; Tomáš Podzimek; Petra Lipovová; Laura van Niftrik; Jana Hajšlová; Mark C M van Loosdrecht; David Gregory Weissbrodt; Jan Bartáček
Journal:  Sci Total Environ       Date:  2022-03-22       Impact factor: 10.753

3.  A Comprehensive Study of Gradient Conditions for Deep Proteome Discovery in a Complex Protein Matrix.

Authors:  Xing Wei; Pei N Liu; Brian P Mooney; Thao Thi Nguyen; C Michael Greenlief
Journal:  Int J Mol Sci       Date:  2022-10-03       Impact factor: 6.208

  3 in total

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