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首页> 外文期刊>Food research international >Exploration of α-pinene degradation pathway of Pseudomonas rhodesiae CIP 107491. Application to novalic acid production in a bioreactor
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Exploration of α-pinene degradation pathway of Pseudomonas rhodesiae CIP 107491. Application to novalic acid production in a bioreactor

机译:罗氏假单胞菌CIP 107491的α-pine烯降解途径的探索。在生物反应器中生产新酸的应用

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摘要

α-Pinene degradation pathway of Pseudomonas rhodesiae CIP 107491, which includes flavoring molecules like cis-2-methyl-5-isopropylhexa-2,5-dienal (isonovalal) and trans-2-methyl-5-isopropylhexa-2,5-die-noic acid (novalic acid) has been extensively studied. Studies took into account biotic and abiotic degradation phenomena, which involved isonovalal and its trans isomer, novalal. Data showed that gas stripping of aldehydes, a spontaneous autooxidation of isonovalal into isonovaiic acid (cis form of novalic acid) and a cofactor-dependent isomerization of isonovalal into novalal occurred. Novalic acid was not an end product and was transformed into 3,4-dimethylpentanoic acid by fresh (non permeabilized) cells with a production yield of 40%, while isonovalic acid was not consumed. A three main steps metabolic scheme was outlined to explain a-pinene oxide bioconversion into novalic acid. These data enabled to perform an optimized bioconversion of α-pinene oxide into novalic acid in a stirred aerated tank bioreactor in biphasic conditions. Results allowed to obtain c.a. 16 g/L product in about 8 h with a yield close to 40%.
机译:罗氏假单胞菌CIP 107491的α-P烯降解途径,其中包括诸如顺式-2-甲基-5-异丙基己基2,5-二烯醛(异戊醛)和反式-2-甲基-5-异丙基己基-2,5-二烯醛等调味剂分子-壬酸(新戊酸)已被广泛研究。研究考虑了生物和非生物降解现象,其中包括异novalal及其反式异构体novalal。数据显示,发生了醛的气体汽提,异novalal的自发自氧化为异新戊酸(顺式形式的新戊酸)和异辅酶的辅因子依赖异构化为novalal。新戊酸不是最终产物,并通过新鲜(未透化)细胞以40%的产率转化为3,4-二甲基戊酸,而异新戊酸则未被消耗。概述了三个主要步骤的代谢方案,以解释α-pine烯氧化物生物转化为新戊酸的过程。这些数据使得能够在双相条件下在搅拌的曝气池生物反应器中将α-pine烯氧化物最佳地生物转化为新酸。结果允许获得c.a.在约8小时内获得16 g / L的产品,收率接近40%。

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