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原花青素水平的获得性分化,以及新生毒葛幼苗中卡丹醇的鉴定。

Accession-Level Differentiation of Urushiol Levels, and Identification of Cardanols in Nascent Emerged Poison Ivy Seedlings.

机构信息

School of Plant and Environmental Science, Virginia Tech, 220 Ag Quad Lane, Blacksburg, VA 24061, USA.

Plant Molecular and Cellular Biology, University of Florida, 255 Hull Road, Fifield Hall, Gainesville, FL 32611-0690, USA.

出版信息

Molecules. 2019 Nov 20;24(23):4213. doi: 10.3390/molecules24234213.

Abstract

Poison ivy ( (L.) Kuntze) shows accession-level differentiation in a variety of morphometric traits, suggesting local adaptation. To investigate whether the presumed defense compound urushiol also demonstrates accession-level accumulation differences, in vitro nascent germinated poison ivy seedlings from geographically isolated populations were germinated in vitro and then assayed for known urushiol congener accumulation levels. Significant accession-level differences in the accumulation levels of total C15- and C17-, total C15-, total C17-, specific C15 congeners, and specific C17 congeners of urushiol were identified. In addition, hereto novel C15- and C17-urushiol isomers were identified as well. Cardanols are assumed to be the penultimate metabolites giving rise to urushiols, but this assumption was not previously empirically validated. C15-cardanol congeners and isomers corresponding to expected substrates needed to produce the observed C15-urushiol congeners and isomers were identified in the same poison ivy seedling extracts. Total C15-cardanol and C15-cardanol congeners also showed significant accession-level differences. Based on the observed C15-cardanol congeners in poison ivy, the penultimate step in urushiol biosynthesis was proposed to be a cardanol-specific hydroxylase activity.

摘要

毒葛 ( (L.) Kuntze) 在多种形态特征上表现出具有个体差异的分化,这表明其存在局部适应。为了研究假定的防御化合物漆酚是否也表现出具有个体差异的积累差异,我们从地理隔离的种群中体外萌发了初生毒葛幼苗,并对其已知漆酚同系物的积累水平进行了检测。鉴定出了总 C15-和 C17-、总 C15-、总 C17-、特定 C15 同系物和特定 C17 同系物的漆酚在个体差异上的积累水平存在显著差异。此外,还鉴定出了迄今为止尚未报道的 novel C15-和 C17-漆酚异构体。人们认为 cardanols 是产生漆酚的前体代谢物,但这一假设以前没有经过经验验证。在同一毒葛幼苗提取物中鉴定出了与预期产生观察到的 C15-漆酚同系物和异构体所需的底物相对应的 C15-cardanol 同系物和异构体。总 C15-cardanol 和 C15-cardanol 同系物也表现出具有个体差异的积累水平。基于毒葛中的 C15-cardanol 同系物,提出漆酚生物合成的倒数第二步是一种特定于 cardanol 的羟化酶活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c8e/6930629/33ee62cdfeec/molecules-24-04213-g001.jpg

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