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Nuclear Magnetic Resonance (NMR) Studies on the Biosynthesis of Fusaric Acid from Fusarium oxysporum f. sp. vasinfectum

机译:尖孢镰刀菌镰刀菌酸生物合成的核磁共振研究。 sp。血管感染

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摘要

Fusarium oxysporum is a fungal pathogen that attacks many important plants. Uniquely pathogenic strains of F. oxysporum f. sp. vasinfectum were inadvertently imported into the United States on live cottonseed for dairy cattle feed. These strains produce exceptionally high concentrations of the phytotoxin fusaric acid. Thus, fusaric acid may be a critical component in the pathogenicity of these biotypes. This study investigated the biosynthesis of fusaric acid using ~(13)C-labeled substrates including [ 1,2- C2] acetate as well as C- and N-labeled aspartate and [~(15) N]glutamine, The incorporation of labeled substrates is consistent with the biosynthesis of fusaric acid from three acetate units at CS—C6, C7—C8, and C9—C10, with the remaining carbons being derived from aspartate via oxaloacetate and the TCA cycle; the oxaloacetate originates in part by transamination of aspartate, but most of the oxaloacetate is derived by deamination of aspartate to fumarate by aspartase. The nitrogen from glutamine is more readily incorporated into fusaric acid than that from aspartate.
机译:尖孢镰刀菌是一种真菌病原体,会侵袭许多重要的植物。 F.oxysporum f。的独特致病性菌株sp。 vasinfectum被不经意地进口到美国的活棉籽中作为奶牛饲料。这些菌株产生异常高浓度的植物毒素富沙酸。因此,富马酸可能是这些生物型致病性的关键组成部分。本研究使用〜(13)C标记的底物,包括[1,2-C2]乙酸盐以及C-和N标记的天冬氨酸和[〜(15)N]谷氨酰胺,研究了富沙酸的生物合成,底物与在CS-C6,C7-C8和C9-C10处由三个乙酸酯单元生物合成富仲酸相一致,其余碳通过草酰乙酸和TCA循环从天冬氨酸中衍生而来。草酰乙酸部分地是由天冬氨酸的氨基转移引起的,但是大多数草酰乙酸是由天冬氨酸酶将天冬氨酸脱氨为富马酸酯而衍生的。谷氨酰胺中的氮比天冬氨酸中的氮更容易掺入富斯酸。

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