Kalnenieks U, Galinina N, Strazdina I, Kravale Z, Pickford JL, Rutkis R, Poole RK (2008) NADH
dehydrogenase deficiency results in low respiration rate and improved aerobic growth of
Zymomonas mobilis. Microbiology 154(3):989–994
Keating DH, Zhang Y, Ong IM, McIlwain S, Morales EH, Grass JA et al (2014) Aromatic inhibitors
derived from ammonia-pretreated lignocellulose hinder bacterial ethanologenesis by activating
regulatory circuits controlling inhibitor efflux and detoxification
Kerr AL, Jeon YJ, Svenson CJ, Rogers PL, Neilan BA (2011) DNA restriction-modification
systems in the ethanologen, Zymomonas mobilis ZM4. Appl Microbiol Biotechnol 89
(3):761–769
King FG, Hossain MA (1982) The effect of temperature, pH, and initial glucose concentration on
the kinetics of ethanol production by Zymomonas mobilis in batch fermentation. Biotechnol
Lett 4:531–536
Koppram R, Tomás-Pejó E, Xiros C, Olsson L (2014) Lignocellulosic ethanol production at highgravity: challenges and perspectives. Trends Biotechnol 32(1):46–53
Lau MW, Gunawan C, Balan V, Dale BE (2010) Comparing the fermentation performance of
Escherichia coli KO11, Saccharomyces cerevisiae 424A (LNH-ST) and Zymomonas mobilis
AX101 for cellulosic ethanol production. Biotechnol Biofuels 3(1):11
Lawford H, Holloway P, Ruggiero A (1988) Effect of pH on growth and ethanol production by
Zymomonas. Biotechnol Lett 10:809–814
Lawford HG, Rousseau JD, McMillan JD (1997) Optimization of seed production for a simultaneous saccharification cofermentation biomass-to-ethanol process using recombinant
Zymomonas. Appl Biochem Biotechnol 63–65:269–286
Lawford HG, Rousseau JD, Mohagheghi A, McMillan JD (1998) Continuous culture studies of
xylose-fermenting Zymomonas mobilis. Appl Biochem Biotechnol 70–72:353–367
Lee T, DeVries DD (2013) Selection of reporting measures under varying performance relevant
scenarios. J Behav Stud Bus 6:1
Leksawasdi N, Joachimsthal EL, Rogers PL (2001) Mathematical modelling of ethanol production
from glucose/xylose mixtures by recombinant Zymomonas mobilis. Biotechnol Lett 23
(13):1087–1093
Linger JG, Adney WS, Darzins A (2010) Heterologous expression and extracellular secretion of
cellulolytic enzymes by Zymomonas mobilis. Appl Environ Microbiol 76(19):6360–6369
Liu YF, Hsieh CW, Chang YS, Wung BS (2017) Effect of acetic acid on ethanol production by
Zymomonas mobilis mutant strains through continuous adaptation. BMC Biotechnol 17
(1):1–10
Mathew AK, Parameshwaran B, Sukumaran RK, Pandey A (2016) An evaluation of dilute acid and
ammonia fiber explosion pretreatment for cellulosic ethanol production. Bioresour Technol
199:13–20
Mohagheghi A, Dowe N, Schell D, Chou Y-C, Eddy C, Zhang M (2004) Performance of a newly
developed integrant of Zymomonas mobilis for ethanol production on corn Stover hydrolysate.
Biotechnol Lett 26(4):321–325
Niu X, Wang Z, Li Y, Zhao Z, Liu J, Jiang L et al (2013) “Fish-in-net”, a novel method for cell
immobilization of Zymomonas mobilis. PLoS One 8:e79569
Panesar PS, Marwaha SS, Kennedy JF (2006) Zymomonas mobilis: an alternative ethanol producer.
J Chem Technol Biotechnol 81(4):623–635
Patle S, Lal B (2007) Ethanol production from hydrolysed agricultural wastes using mixed culture
of Zymomonas mobilis and Candida tropicalis. Biotechnol Lett 29:1839–1843
Picataggio SK, Zhang M, Eddy CK, Deanda KA, Finkelstein M, Mohagheghi A et al (1998)
Pentose fermentation by recombinant zymomonas. Google Patents
Pimentel D, Hepperly P, Hanson J, Douds D, Seidel R (2005) Environmental, energetic, and
economic comparisons of organic and conventional farming systems. Bioscience 55
(7):573–582
Randich AM, Brun YV (2015) Molecular mechanisms for the evolution of bacterial morphologies
and growth modes. Front Microbiol 6:580
6 Engineering of Zymomonas mobilis for Enhanced Biofuel Production
179
dehydrogenase deficiency results in low respiration rate and improved aerobic growth of
Zymomonas mobilis. Microbiology 154(3):989–994
Keating DH, Zhang Y, Ong IM, McIlwain S, Morales EH, Grass JA et al (2014) Aromatic inhibitors
derived from ammonia-pretreated lignocellulose hinder bacterial ethanologenesis by activating
regulatory circuits controlling inhibitor efflux and detoxification
Kerr AL, Jeon YJ, Svenson CJ, Rogers PL, Neilan BA (2011) DNA restriction-modification
systems in the ethanologen, Zymomonas mobilis ZM4. Appl Microbiol Biotechnol 89
(3):761–769
King FG, Hossain MA (1982) The effect of temperature, pH, and initial glucose concentration on
the kinetics of ethanol production by Zymomonas mobilis in batch fermentation. Biotechnol
Lett 4:531–536
Koppram R, Tomás-Pejó E, Xiros C, Olsson L (2014) Lignocellulosic ethanol production at highgravity: challenges and perspectives. Trends Biotechnol 32(1):46–53
Lau MW, Gunawan C, Balan V, Dale BE (2010) Comparing the fermentation performance of
Escherichia coli KO11, Saccharomyces cerevisiae 424A (LNH-ST) and Zymomonas mobilis
AX101 for cellulosic ethanol production. Biotechnol Biofuels 3(1):11
Lawford H, Holloway P, Ruggiero A (1988) Effect of pH on growth and ethanol production by
Zymomonas. Biotechnol Lett 10:809–814
Lawford HG, Rousseau JD, McMillan JD (1997) Optimization of seed production for a simultaneous saccharification cofermentation biomass-to-ethanol process using recombinant
Zymomonas. Appl Biochem Biotechnol 63–65:269–286
Lawford HG, Rousseau JD, Mohagheghi A, McMillan JD (1998) Continuous culture studies of
xylose-fermenting Zymomonas mobilis. Appl Biochem Biotechnol 70–72:353–367
Lee T, DeVries DD (2013) Selection of reporting measures under varying performance relevant
scenarios. J Behav Stud Bus 6:1
Leksawasdi N, Joachimsthal EL, Rogers PL (2001) Mathematical modelling of ethanol production
from glucose/xylose mixtures by recombinant Zymomonas mobilis. Biotechnol Lett 23
(13):1087–1093
Linger JG, Adney WS, Darzins A (2010) Heterologous expression and extracellular secretion of
cellulolytic enzymes by Zymomonas mobilis. Appl Environ Microbiol 76(19):6360–6369
Liu YF, Hsieh CW, Chang YS, Wung BS (2017) Effect of acetic acid on ethanol production by
Zymomonas mobilis mutant strains through continuous adaptation. BMC Biotechnol 17
(1):1–10
Mathew AK, Parameshwaran B, Sukumaran RK, Pandey A (2016) An evaluation of dilute acid and
ammonia fiber explosion pretreatment for cellulosic ethanol production. Bioresour Technol
199:13–20
Mohagheghi A, Dowe N, Schell D, Chou Y-C, Eddy C, Zhang M (2004) Performance of a newly
developed integrant of Zymomonas mobilis for ethanol production on corn Stover hydrolysate.
Biotechnol Lett 26(4):321–325
Niu X, Wang Z, Li Y, Zhao Z, Liu J, Jiang L et al (2013) “Fish-in-net”, a novel method for cell
immobilization of Zymomonas mobilis. PLoS One 8:e79569
Panesar PS, Marwaha SS, Kennedy JF (2006) Zymomonas mobilis: an alternative ethanol producer.
J Chem Technol Biotechnol 81(4):623–635
Patle S, Lal B (2007) Ethanol production from hydrolysed agricultural wastes using mixed culture
of Zymomonas mobilis and Candida tropicalis. Biotechnol Lett 29:1839–1843
Picataggio SK, Zhang M, Eddy CK, Deanda KA, Finkelstein M, Mohagheghi A et al (1998)
Pentose fermentation by recombinant zymomonas. Google Patents
Pimentel D, Hepperly P, Hanson J, Douds D, Seidel R (2005) Environmental, energetic, and
economic comparisons of organic and conventional farming systems. Bioscience 55
(7):573–582
Randich AM, Brun YV (2015) Molecular mechanisms for the evolution of bacterial morphologies
and growth modes. Front Microbiol 6:580
6 Engineering of Zymomonas mobilis for Enhanced Biofuel Production
179
