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首页> 外文期刊>Journal of Chemical Ecology >Iridoid Glycoside Variation in the Invasive Plant Dalmatian Toadflax, Linaria dalmatica (Plantaginaceae), and Sequestration by the Biological Control Agent, Calophasia lunula
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Iridoid Glycoside Variation in the Invasive Plant Dalmatian Toadflax, Linaria dalmatica (Plantaginaceae), and Sequestration by the Biological Control Agent, Calophasia lunula

机译:入侵植物达尔马提亚蟾蜍,大叶利纳里亚(车前草科)中的鸢尾科糖苷变异和生物防治剂卡洛菲亚斯·卢卢拉的螯合

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摘要

Invasive plant species can have significant ecological and economic impacts. Although numerous hypotheses highlight the importance of the chemical defenses of invasive plant species, the chemical ecology of many invasive plants has not yet been investigated. In this study, we provide the first quantitative investigation of variation in iridoid glycoside concentrations of the invasive plant Dalmatian toadflax (Linaria dalmatica). We examined variation in chemical defenses at three levels: (1) variation within and among populations; (2) variation due to phenology and/or seasonal differences; and (3) variation among plant parts (leaves, flowers, and stems). Further, we examined two biological control agents introduced to control L. dalmatica for the ability to sequester iridoid glycosides from this invasive plant. Results indicate that L. dalmatica plants can contain high concentrations of iridoid glycosides (up to 17.4% dry weight of leaves; mean = 6.28 ± 0.5 SE). We found significant variation in iridoid glycoside concentrations both within and among plant populations, over the course of the growing season, and among plant parts. We also found that one biological control agent, Calophasia lunula (Lepidoptera: Noctuidae), was capable of sequestering antirrhinoside, an iridoid glycoside found in L. dalmatica, at levels ranging from 2.7 to 7.5% dry weight. A second biological control agent, Mecinus janthinus (Coleoptera: Curculionidae), a stem-mining weevil, did not sequester iridoid glycosides. The demonstrated variation in L. dalmatica chemical defenses may have implications for understanding variation in the degree of invasiveness of different populations as well as variation in the efficacy of biological control efforts. Keywords Iridoid glycosides - Antirrhinoside - Linarioside - Linaria dalmatica - Sequestration - Calophasia lunula - Mecinus janthinus - Junonia coenia - Chemical defenses - Invasive plant - Biological control - Lepidoptera - Noctuidae
机译:入侵植物可能会对生态和经济产生重大影响。尽管许多假设突出了入侵植物物种化学防御的重要性,但尚未研究许多入侵植物的化学生态学。在这项研究中,我们提供了第一个定量研究入侵植物达尔马提亚蟾蜍(Linaria dalmatica)的环烯醚酮苷浓度变化的方法。我们从三个层面研究了化学防御的变化:(1)人群内部和人群之间的变化; (2)由于物候和/或季节差异引起的变化; (3)植物部分(叶,花和茎)之间的差异。此外,我们检查了引入两种生物防治剂来控制大麦劳氏杆菌从该入侵植物中螯合虹彩苷的能力。结果表明,dalmatica植株可能含有高浓度的环烯醚草酮苷(叶干重可达17.4%;平均值= 6.28±0.5 SE)。我们发现植物种群内部和植物种群之间,整个生长期以及植物部位之间的鸢尾苷苷浓度存在显着差异。我们还发现,一种生物防治剂Calophasia lunula(鳞翅目:夜蛾科)能够螯合抗腹泻药苷,一种在大叶乳杆菌中发现的虹彩状糖苷,含量为2.7至7.5%干重。第二种生物防治剂,Mecinus janthinus(鞘翅目:Curculionidae),一种挖干象鼻虫,没有隔离虹彩的苷。 L. dalmatica化学防御的已证明变异可能对理解不同人群的侵袭程度变异以及生物防治工作功效变异具有启示意义。关键字鸢尾糖苷-抗草ino苷-亚麻苦苷-达利纳亚麻-螯合-芦苇-茉莉属janthinus-onia藜科尼亚-化学防御-入侵植物-生物防治-鳞翅目-夜蛾科

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