Ionylideneethane
WebOn the other hand, in C. cruenta, γ-ionylideneethane is likely a biosynthetic intermediate, although subsequent oxidation processes are identical to those in B. cinerea. These differences in the biosynthetic pathways can be explained by assuming that functionally relevant ABA proteins can be evolved by a minute change in the active site residues of … WebThe first-committed step is the cyclization of farnesyl diphosphate to give α-ionylideneethane catalyzed by a novel sesquiterpene synthase, BcABA3, which exhibits …
Ionylideneethane
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WebThis direct pathway via ionylideneethane in the fungus is consistent with that in Botrytis cinerea, except for the positions of double bonds in the rings of biosynthetic intermediates, suggesting that the pathway is common among ABA-producing fungi. Expand. 32. …
Web1 dec. 2004 · This website requires cookies, and the limited processing of your personal data in order to function. By using the site you are agreeing to this as outlined in our privacy notice and cookie policy. WebBiosynthesis of Abscisic Acid by the Direct Pathway via Ionylideneethane in a Fungus, Cercospora cruenta Author: INOMATA, Masahiro, HIRAI, Nobuhiro, YOSHIDA, Ryuji, OHIGASHI, Hajime Source: Bioscience, biotechnology, and biochemistry 2004 v.68 no.12 pp. 2571-2580 ISSN: 1347-6947
Web1 nov. 2004 · The fungus did not produce the 9Z-carotenoid possessing gamma-ring that is likely a precursor for the carotenoid pathway, but produced new sesquiterpenoids, 2E,4E … WebThe biosynthetic pathway to abscisic acid (ABA) from isopentenyl diphosphate in the fungus, Botrytis cinerea, was investigated. Labeling experiments with (18)O2 and H2(18)O indicated that all oxygen atoms at C-1, -1, -1' and -4' of ABA were derived from molecular oxygen, and not from water. This finding was inconsistent not only with the known carotenoid pathway …
Web1 okt. 2004 · This website requires cookies, and the limited processing of your personal data in order to function. By using the site you are agreeing to this as outlined in our privacy …
Web1 jul. 2024 · While abscisic acid (ABA) is known as a hormone produced by plants through the carotenoid pathway, a small number of phytopathogenic fungi are also able to produce this sesquiterpene but they use a distinct pathway that starts with the cyclization of farnesyl diphosphate (FPP) into 2Z,4E-α-ionylideneethane which is then subjected to several … theorist with a biological perspectiveWeb23 feb. 2016 · Following earlier incomplete and fragmented versions of a genome sequence for the grey mould Botrytis cinerea, a gapless, near-finished genome sequence for B. cinerea strain B05.10 is reported. The assembly comprised 18 chromosomes and was confirmed by an optical map and a genetic map based on approximately 75 000 single … shropshire council erpWeb1 okt. 2004 · This direct pathway via ionylideneethane means that the biosynthetic pathway to fungal ABA, not only before but also after isopentenyl diphosphate, differs from that to … shropshire council cycle routesWeb1 jan. 2004 · This direct pathway via ionylideneethane in the fungus is consistent with that in Botrytis cinerea, except for the positions of double bonds in the rings of biosynthetic … shropshire council food registrationWebDOI: 10.1016/S0031-9422(00)84940-7 Corpus ID: 84439265; Biosynthesis of abscisic acid from farnesol derivatives in Cercospora rosicola @article{Bennett1984BiosynthesisOA, title={Biosynthesis of abscisic acid from farnesol derivatives in Cercospora rosicola}, author={Raymond D. Bennett and Shirley M. Norman and Vincent P. Maier}, … shropshire council food safetyWebThe biosynthetic pathways of ABA in the phytopathogenic fungi, Cercospora rosicola, Cercospora cruenta, Cercospora pini-densiflorae, and Botrytis cinerea have been investigated. C. rosicola produces α-ionylideneethanol, α-ionylideneacetic acid, 4′-hydroxy-α-ionyldeneacetic acid, and 1′-deoxy-ABA, and these compounds are converted to ABA … theorist worksheet mte 511WebThe biosynthetic pathway to abscisic acid via ionylideneethane in the fungus Botrytis cinerea. (Q45089247) From Wikidata. Jump to navigation Jump to search. scientific … shropshire council definitive map