Transcriptome and metabolome profiling reveal the chlorogenic acid as a resistance substance for rice against the white-backed planthopper <i>Sogatella furcifera</i> (Horváth). [PDF]
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Integrated MALDI-MSI and UHPLC-OE-MS for Spatial Visualization and Biosynthetic Pathway Elucidation of Bioactive Metabolites in <i>Lilium lancifolium</i> Thunb. [PDF]
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Screening, Isolation and Characterization of Aerobic Magnetotactic Bacteria From Western Ghats Forest Soil. [PDF]
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Integrated Transcriptome and Metabolome Analysis of Fruit Quality Variation in 'Sweet100' Tomato Across Different Growth Stages. [PDF]
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The role of quinate and shikimate in the metabolism of lactobacilli
Antonie van Leeuwenhoek, 1971The metabolism of (−)-quinate and shikimate by one heterofermentative strain,Łactobacillus pastorianus, and by one homofermentative strain,Lactobacillus plantarum, has been studied using growing and washed cells. Both organisms reduced quinate and shikimate under anaerobic conditions in the presence of suitable hydrogen donors including fructose ...
G C, Whiting, R A, Coggins
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Quinate metabolism in Pseudomonas aeruginosa
Canadian Journal of Microbiology, 1972Data obtained with the Warburg constant-volume respirometer and from enzyme analysis have demonstrated that the method of regulation of the "hydroaromatic" degradation pathway found in Pseudomonas aeruginosa is vastly different from that previously discovered in Acinetobacter calcoaceticus and perhaps also significantly different from P. putida.
W M, Ingledew, C C, Tai
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Broad-specificity quinate (shikimate) dehydrogenasefrom Pinus taeda needles
Abstract Two proteins having quinate dehydrogenase (QDH, quinate:NAD(P)+-oxidoreductase, EC 1.1.1.24) and shikimate dehydrogenase (SDH, shikimate:NADP+-oxidoreductase, EC 1.1.1.25) activities were purified about 3 000-fold from young loblolly pine (Pinus taeda L.) needles. A combination of ammonium sulfate solubilization, and chromatographies on DEAE-
Vladimir Ossipov, Svetlana Ossipova
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The metabolism of quinate by Acinetobacter calco-aceticus
Archiv f�r Mikrobiologie, 19700948 02 1. Evidence is put forward that the bacterium Acinetobacter calcoaceticus, which use squinate as sole source of carbon and energy, degrades this compound via the β-ketoadipate pathway after transforming it into protocatechuate. 2.
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Structural Insights into Regulation of Quinate Degradation in Bacteria [PDF]
The shikimate pathway is an essential metabolic pathway in bacteria, as well as plants and fungi, which ultimately leads to the synthesis of three aromatic amino acids among other important aromatic compounds. The fourth step in the pathway is the reduction of dehydroshikimate to shikimate, catalyzed by shikimate dehydrogenase (SDH/AroE).
Stephanie Prezioso, Dinesh Christendat
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Lipase-catalyzed synthesis of quinate and glucuronate fatty esters [PDF]
The lipase-catalyzed synthesis of fatty alcohol esters of quinic and glucuronic acid was investigated. The results showed that although a direct esterification process was possible, a strategy involving short-chain alkyl ester intermediates was advantageous.
Villeneuve, Pierre +8 more
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