New and Future Developments in Microbial Biotechnology and Bioengineering by Harikesh Bahadur Singh;Anukool Vaishnav; & Anukool Vaishnav
Author:Harikesh Bahadur Singh;Anukool Vaishnav; & Anukool Vaishnav [Неизв.]
Language: eng
Format: epub
ISBN: 9780323855822
Publisher: Elsevier Ltd.
Published: 2022-08-28T21:00:00+00:00
References
Altamirano-Hernández et al., 2007 Altamirano-Hernández J, López MG, Acosta-Gallegos JA, FarÃas-RodrÃguez R, Peña-Cabriales JJ. Influence of soluble sugars on seed quality in nodulated common bean (Phaseolus vulgaris L.): the case of trehalose. Crop Sci. 2007;47(3):1193â1205.
Ampomah et al., 2008 Ampomah OY, Jensen JB, Bhuvaneswari TV. Lack of trehalose catabolism in Sinorhizobium species increases their nodulation competitiveness on certain host genotypes. N Phytol. 2008;179(2):495â504.
Argüelles, 2000 Argüelles JC. Physiological roles of trehalose in bacteria and yeasts: a comparative analysis. Arch Microbiol. 2000;174(4):217â224.
Asaf et al., 2017 Asaf S, Khan AL, Khan MA, Imran QM, Yun BW, Lee IJ. Osmoprotective functions conferred to soybean plants via inoculation with Sphingomonas sp LK11 and exogenous trehalose. Microbiol Res. 2017;205:135â145.
Avonce et al., 2006 Avonce N, Mendoza-Vargas A, Morett E, Iturriaga G. Insights on the evolution of trehalose biosynthesis. BMC Evolut Biol. 2006;6(1):109.
Ballesteros-Almanza et al., 2010 Ballesteros-Almanza L, Altamirano-Hernandez J, Pena-Cabriales JJ, et al. Effect of co-inoculation with mycorrhiza and rhizobia on the nodule trehalose content of different bean genotypes. Open Microbiol J. 2010;4:83.
Barraza et al., 2013 Barraza A, Estrada-Navarrete G, Rodriguez-Alegria ME, et al. Down-regulation of PvTRE1 enhances nodule biomass and bacteroid number in the common bean. N Phytologist. 2013;197(1):194â206.
Barraza et al., 2016 Barraza A, Contreras-Cubas C, Estrada-Navarrete G, et al. The class II trehalose 6-phosphate synthase gene PvTPS9 modulates trehalose metabolism in Phaseolus vulgaris nodules. Front Plant Sci. 2016;7:1589.
Benidire et al., 2018 Benidire L, Lahrouni M, Daoui K, et al. Phenotypic and genetic diversity of Moroccan rhizobia isolated from Vicia faba and study of genes that are likely to be involved in their osmotolerance. Syst Appl Microbiol. 2018;41(1):51â61.
Brechenmacher et al., 2010 Brechenmacher L, Lei Z, Libault M, et al. Soybean metabolites regulated in root hairs in response to the symbiotic bacterium Bradyrhizobium japonicum. Plant Physiol. 2010;153(4):1808â1822.
Breedveld et al., 1991 Breedveld MW, Zevenhuizen LP, Zehnder AJ. Osmotically-regulated trehalose accumulation and cyclic β-(1, 2)-glucan excretion by Rhizobium leguminosarum biovar trifolii TA-1. Arch Microbiol. 1991;156(6):501â506.
Breedveld et al., 1993 Breedveld MW, Dijkema C, Zevenhuizen LP, Zehnder AJ. Response of intracellular carbohydrates to a NaCl shock in Rhizobium leguminosarum biovar trifolii TA-1 and Rhizobium meliloti SU-47. Microbiology. 1993;139(12):3157â3163.
Casteriano et al., 2015 Casteriano A, Wilkes MA, Deaker R. The physiological mechanisms of desiccation tolerance in rhizobia. Biol Nitrogen Fixation 2015;1055â1062.
Chen et al., 2017 Chen X, An L, Fan X, et al. A trehalose biosynthetic enzyme doubles as an osmotic stress sensor to regulate bacterial morphogenesis. PLoS Genet. 2017;13(10):e1007062.
Cytryn et al., 2007 Cytryn EJ, Sangurdekar DP, Streeter JG, et al. Transcriptional and physiological responses of Bradyrhizobium japonicum to desiccation-induced stress. J Bacteriol. 2007;189(19):6751â6762.
Dardanelli et al., 2000 Dardanelli MS, González PS, Bueno MA, Ghittoni NE. Synthesis, accumulation and hydrolysis of trehalose during growth of peanut rhizobia in hyperosmotic media. J Basic Microbiol: An Int J Biochem, Physiol, Genet, Morphol Ecol Microorg. 2000;40(3):149â156.
Deaker et al., 2004 Deaker R, Roughley RJ, Kennedy IR. Legume seed inoculation technologyâa review. Soil Biol Biochem. 2004;36(8):1275â1288.
Delorge et al., 2014 Delorge I, Janiak M, Carpentier S, Van Dijck P. Fine tuning of trehalose biosynthesis and hydrolysis as novel tools for the generation of abiotic stress tolerant plants.
Download
This site does not store any files on its server. We only index and link to content provided by other sites. Please contact the content providers to delete copyright contents if any and email us, we'll remove relevant links or contents immediately.
Whiskies Galore by Ian Buxton(41524)
Introduction to Aircraft Design (Cambridge Aerospace Series) by John P. Fielding(32883)
Small Unmanned Fixed-wing Aircraft Design by Andrew J. Keane Andras Sobester James P. Scanlan & András Sóbester & James P. Scanlan(32569)
Aircraft Design of WWII: A Sketchbook by Lockheed Aircraft Corporation(32132)
Craft Beer for the Homebrewer by Michael Agnew(17927)
Turbulence by E. J. Noyes(7690)
The Complete Stick Figure Physics Tutorials by Allen Sarah(7135)
The Institute by Stephen King(6798)
Kaplan MCAT General Chemistry Review by Kaplan(6588)
The Thirst by Nesbo Jo(6432)
Bad Blood by John Carreyrou(6270)
Modelling of Convective Heat and Mass Transfer in Rotating Flows by Igor V. Shevchuk(6219)
Learning SQL by Alan Beaulieu(6029)
Weapons of Math Destruction by Cathy O'Neil(5820)
Man-made Catastrophes and Risk Information Concealment by Dmitry Chernov & Didier Sornette(5641)
Permanent Record by Edward Snowden(5535)
Digital Minimalism by Cal Newport;(5384)
Life 3.0: Being Human in the Age of Artificial Intelligence by Tegmark Max(5181)
iGen by Jean M. Twenge(5151)
