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一种食草动物标记与追踪系统揭示了一种根毒素的接触依赖性和密度依赖性驱避作用。

A Herbivore Tag-and-Trace System Reveals Contact- and Density-Dependent Repellence of a Root Toxin.

作者信息

Bont Zoe, Arce Carla, Huber Meret, Huang Wei, Mestrot Adrien, Sturrock Craig J, Erb Matthias

机构信息

Institute of Plant Sciences, University of Bern, Bern, Switzerland.

Department of Biochemistry, Max-Planck Institute for Chemical Ecology, Jena, Germany.

出版信息

J Chem Ecol. 2017 Mar;43(3):295-306. doi: 10.1007/s10886-017-0830-3. Epub 2017 Mar 16.

DOI:10.1007/s10886-017-0830-3
PMID:28303526
Abstract

Foraging behavior of root feeding organisms strongly affects plant-environment-interactions and ecosystem processes. However, the impact of plant chemistry on root herbivore movement in the soil is poorly understood. Here, we apply a simple technique to trace the movement of soil-dwelling insects in their habitats without disturbing or restricting their interactions with host plants. We tagged the root feeding larvae of Melolontha melolontha with a copper ring and repeatedly located their position in relation to their preferred host plant, Taraxacum officinale, using a commercial metal detector. This method was validated and used to study the influence of the sesquiterpene lactone taraxinic acid β-D-glucopyranosyl ester (TA-G) on the foraging of M. melolontha. TA-G is stored in the latex of T. officinale and protects the roots from herbivory. Using behavioral arenas with TA-G deficient and control plants, we tested the impact of physical root access and plant distance on the effect of TA-G on M. melolontha. The larvae preferred TA-G deficient plants to control plants, but only when physical root contact was possible and the plants were separated by 5 cm. Melolontha melolontha showed no preference for TA-G deficient plants when the plants were grown 15 cm apart, which may indicate a trade-off between the cost of movement and the benefit of consuming less toxic food. We demonstrate that M. melolontha integrates host plant quality and distance into its foraging patterns and suggest that plant chemistry affects root herbivore behavior in a plant-density dependent manner.

摘要

根部取食生物的觅食行为强烈影响植物 - 环境相互作用和生态系统过程。然而,植物化学对土壤中根部食草动物移动的影响却知之甚少。在此,我们应用一种简单技术来追踪土壤栖息昆虫在其栖息地中的移动,而不干扰或限制它们与寄主植物的相互作用。我们用铜环标记了黄褐丽金龟的根部取食幼虫,并使用商用金属探测器反复确定它们相对于其偏好的寄主植物蒲公英的位置。该方法经过验证,并用于研究倍半萜内酯蒲公英酸β - D - 吡喃葡萄糖酯(TA - G)对黄褐丽金龟觅食的影响。TA - G储存在蒲公英的乳汁中,可保护根部免受食草动物侵害。我们使用含有缺乏TA - G的植物和对照植物的行为试验场,测试了根部物理接触和植物距离对TA - G对黄褐丽金龟影响的作用。幼虫更喜欢缺乏TA - G的植物而非对照植物,但仅当存在根部物理接触且植物相距5厘米时才会如此。当植物相距15厘米种植时,黄褐丽金龟对缺乏TA - G的植物没有表现出偏好,这可能表明在移动成本与食用毒性较小食物的益处之间存在权衡。我们证明黄褐丽金龟将寄主植物质量和距离整合到其觅食模式中,并表明植物化学以植物密度依赖的方式影响根部食草动物的行为。

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2
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Trends Plant Sci. 2016 Mar;21(3):256-265. doi: 10.1016/j.tplants.2016.01.008. Epub 2016 Jan 30.
3
Volatiles released by Chinese liquorice roots mediate host location behaviour by neonate Porphyrophora sophorae (Hemiptera: Margarodidae).
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4
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Oecologia. 2019 Sep;191(1):127-139. doi: 10.1007/s00442-019-04479-w. Epub 2019 Jul 31.
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