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CYP76C1 (Cytochrome P450)-Mediated Linalool Metabolism and the Formation of Volatile and Soluble Linalool Oxides in Arabidopsis Flowers: A Strategy for Defense against Floral Antagonists

机译:CYP76C1(细胞色素P450)介导的芳樟醇代谢和拟南芥花中挥发性和可溶性芳樟醇氧化物的形成:对抗花拮抗剂的策略。

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摘要

The acyclic monoterpene alcohol linalool is one of the most frequently encountered volatile compounds in floral scents. Various linalool oxides are usually emitted along with linalool, some of which are cyclic, such as the furanoid lilac compounds. Recent work has revealed the coexistence of two flower-expressed linalool synthases that produce the (S)- or (R)-linalool enantiomers and the involvement of two P450 enzymes in the linalool oxidation in the flowers of Arabidopsis thaliana. Partially redundant enzymes may also contribute to floral linalool metabolism. Here, we provide evidence that CYP76C1 is a multifunctional enzyme that catalyzes a cascade of oxidation reactions and is the major linalool metabolizing oxygenase in Arabidopsis flowers. Based on the activity of the recombinant enzyme and mutant analyses, we demonstrate its prominent role in the formation of most of the linalool oxides identified in vivo, both as volatiles and soluble conjugated compounds, including 8-hydroxy, 8-oxo, and 8-COOH-linalool, as well as lilac aldehydes and alcohols. Analysis of insect behavior on CYP76C1 mutants and in response to linalool and its oxygenated derivatives demonstrates that CYP76C1-dependent modulation of linalool emission and production of linalool oxides contribute to reduced floral attraction and favor protection against visitors and pests.
机译:无环单萜醇芳樟醇是花香中最常遇到的挥发性化合物之一。通常会与各种芳樟醇一起释放出各种芳樟醇氧化物,其中一些是环状的,例如呋喃类丁香化合物。最近的工作揭示了两种花表达的芳樟醇合成酶的共存,它们可以合成(S)-或(R)-芳樟醇对映异构体,并且两种P450酶参与拟南芥花中芳樟醇的氧化反应。部分多余的酶也可能促进花香樟脑的新陈代谢。在这里,我们提供证据表明CYP76C1是一种多功能酶,可催化一系列氧化反应,并且是拟南芥花中主要的芳樟醇代谢加氧酶。基于重组酶的活性和突变分析,我们证明了其在体内鉴定的大多数芳樟醇氧化物形成中的重要作用,无论是挥发物还是可溶性共轭化合物,包括8-羟基,8-氧代和8- COOH-芳樟醇,以及淡紫色的醛和醇。对CYP76C1突变体以及对芳樟醇及其氧化衍生物的反应的昆虫行为分析表明,依赖CYP76C1的芳樟醇排放调节和芳樟醇氧化物的产生有助于减少花的吸引并有利于保护植物免受访客和害虫的侵害。

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