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A simple and efficient system for green note compound biogenesis by use of certain lipoxygenase and hydroperoxide lyase sources

机译:一个简单有效的系统,通过使用某些脂氧合酶和氢过氧化物裂解酶来源进行绿色化合物复合生物生成

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摘要

Six-carbon (C-6) aldehydes and alcohols are important components of the aroma and flavor of fruits and vegetables. Soybean lipoxygenase (LOX) isozyme LOX 3 was reported not only to produce less 13-hydroperoxides, precursors Of C-6 aldehydes, but also to convert them to ketodiene products. Here, we examined the effects of LOX 3 on hexenal formation from linolenic acid homogenized with watermelon 13-hydroperoxidelyase (HL)-overexpressing Nicotiana tabacum leaves and soybean acetone powder. Compared to the wild type, which contains LOXs 1, 2, and 3, the elimination of LOX 3 in LOX 1 + 2 facilitates greater production of hexenals. The use of LOX 2 alone yielded the highest hexenal production, while a two-step conversion was required for LOX 1 to produce hexenals at high levels due to different pH optima of the enzymes involved. These results clearly demonstrate that the soybeans lacking LOX 3 in combination with watermelon HL-overexpressing leaf tissues greatly enhance hexenal formation.
机译:六碳(C-6)醛和醇是水果和蔬菜香气和风味的重要成分。据报道,大豆脂氧合酶(LOX)同工酶LOX 3不仅产生较少的13-氢过氧化物(C-6醛的前体),而且还将其转化为酮二烯产品。在这里,我们检查了LOX 3对过表达西瓜13-氢过氧化物酶(HL)的烟叶和大豆丙酮粉均质化的亚麻酸对己二酸形成的影响。与包含LOX 1、2和3的野生型相比,LOX 1 + 2中LOX 3的消除促进了己烯醛的产生。单独使用LOX 2可以产生最高的己二醛生产量,而LOX 1需要两步转化才能生产高含量的己醛,这是由于所涉及酶的最佳pH值不同。这些结果清楚地表明,缺乏LOX 3的大豆与过表达西瓜HL的叶组织结合在一起,大大增强了己二醛的形成。

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