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野生番茄表皮毛中产生的姜烯醇和环氧姜烯醇对叶螨的驱避作用比姜烯更强。

The Alcohol and Epoxy Alcohol of Zingiberene, Produced in Trichomes of Wild Tomato, Are More Repellent to Spider Mites Than Zingiberene.

作者信息

Dawood Mohammad H, Snyder John C

机构信息

Department of Horticulture, University of Kentucky Lexington, Lexington, KY, United States.

Department of Horticulture and Landscape, University of Kufa, Najaf, Iraq.

出版信息

Front Plant Sci. 2020 Feb 21;11:35. doi: 10.3389/fpls.2020.00035. eCollection 2020.

Abstract

Allelochemicals that are present in trichome secretions of wild tomato species play a major role in mediating interactions with arthropods, often conferring a high level of resistance antibiosis and antixenosis. Many accessions of the wild tomato relative, (), possess high levels of resistance to arthropods. The monocyclic sesquiterpene hydrocarbon, 7-epi-zingiberene, is a major defensive component found in trichome secretions of certain accessions of . We have used LA2329, an . accession, as a donor in a breeding program designed to introgress zingiberene into cultivated tomato. However, the composition of trichome secretions in our population of LA2329 is segregating, with some individuals producing mainly 7-epi-zingiberene in their secretions while others producing two additional, unidentified compounds in their trichome secretions. To investigate if these other compounds may also contribute to arthropod resistance, trichome secretions were collected from plants of LA2329 grown under greenhouse conditions and then major compounds were isolated by silica gel column chromatography and tested for their ability to repel two spotted-spider mite (TSSM), . Isolation and identification of allelochemicals were aided by use of gas chromatography/mass spectroscopy. The results revealed the presence of three predominate chromatographic peaks: 7-epi-zingiberene, 9-hydroxy zingiberene, and 9-hydroxy,10,11-epoxy-zingiberene. Results of testing isolated compounds for repellency to TSSM using bridge bioassays revealed that the repellent activities of 9-hydroxy zingiberene and 9-hydroxy,10,11-epoxy-zingiberene were each significantly higher than that for 7-epi-zingiberene. These results support the idea that the degree of repellency may differ among plant allelochemicals and also emphasize the potential value of introgressing the presence of 9-hydroxy zingiberene and 9-hydroxy,10,11-epoxy-zingiberene into cultivated tomato to enhance its arthropod resistance.

摘要

野生番茄物种毛状体分泌物中的化感物质在介导与节肢动物的相互作用中起主要作用,通常赋予高水平的抗性(抗生和忌避)。野生番茄近缘种()的许多种质对节肢动物具有高水平抗性。单环倍半萜烃7-表姜烯是在某些种质的毛状体分泌物中发现的主要防御成分。我们在一个旨在将姜烯渗入栽培番茄的育种计划中,使用了LA2329(一种种质)作为供体。然而,我们的LA2329群体中毛状体分泌物的组成正在分离,一些个体在其分泌物中主要产生7-表姜烯,而其他个体在其毛状体分泌物中产生另外两种未鉴定的化合物。为了研究这些其他化合物是否也可能有助于节肢动物抗性,从温室条件下生长的LA2329植株中收集毛状体分泌物,然后通过硅胶柱色谱法分离主要化合物,并测试它们对二斑叶螨(TSSM)的驱避能力。化感物质的分离和鉴定借助气相色谱/质谱法进行。结果显示存在三个主要色谱峰:7-表姜烯、9-羟基姜烯和9-羟基-10,11-环氧姜烯。使用桥梁生物测定法测试分离化合物对TSSM的驱避性的结果表明,9-羟基姜烯和9-羟基-10,11-环氧姜烯的驱避活性均显著高于7-表姜烯。这些结果支持了植物化感物质的驱避程度可能不同的观点,也强调了将9-羟基姜烯和9-羟基-10,11-环氧姜烯的存在渗入栽培番茄以增强其对节肢动物抗性的潜在价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ca5/7047219/0789d05ba8e8/fpls-11-00035-g001.jpg

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