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植物-食草动物关系中的短程他感化学物质:一种产卵诱导的拟寄生蜂信息素的独特案例。

Short-range allelochemicals from a plant-herbivore association: a singular case of oviposition-induced synomone for an egg parasitoid.

机构信息

Dipartimento di Scienze Agrarie e Ambientali, Università degli Studi di Perugia, Borgo XX Giugno, Perugia, Italy.

出版信息

J Exp Biol. 2010 Nov 15;213(Pt 22):3911-9. doi: 10.1242/jeb.045922.

Abstract

Oviposition-induced plant synomones are semiochemical cues used by egg parasitoids during host selection, and are therefore considered important elements of plant defence. In this paper we show that, in the tritrophic system Brassica oleracea-Murgantia histrionica-Trissolcus brochymenae, the latter responded in a closed arena and in a static olfactometer to induced chemicals that are perceived from a very short range and after parasitoid contact with the leaf surface opposite the treated surface. An additive or synergistic effect due to (1) egg deposition, (2) feeding punctures and (3) chemical footprints of M. histrionica was observed. When all three phases were present, the parasitoid reacted to the induced synomone locally on the treated leaf area, at a close distance to the treated area, and on the leaf above the treated one, showing that there is also a systemic effect. When plants with host footprints combined with feeding punctures or with oviposition were tested, responses were obtained both locally and at a close distance, whereas in the remaining assays only local responses were observed. Induction time was less than 24 h, whereas signal duration was apparently related to the suitability of the host eggs, as parasitoids did not respond to plants carrying old or hatched eggs. These oviposition-induced short-range plant synomones might have an important role in the host location process after parasitoid landing on the plant, in different combinations with the host kairomones involved in the system studied here.

摘要

产卵诱导的植物信息素是卵寄生蜂在宿主选择过程中使用的半化学线索,因此被认为是植物防御的重要组成部分。在本文中,我们表明,在甘蓝-舞毒蛾-三化螟的三营养级系统中,三化螟在封闭的竞技场和静态嗅觉仪中对从非常短的距离感知到的诱导化学物质做出反应,并且在寄生蜂接触到与处理表面相对的叶片表面之后。由于(1)产卵、(2)取食刺孔和(3)舞毒蛾的化学足迹,观察到了相加或协同作用。当所有三个阶段都存在时,寄生蜂会在处理过的叶片区域的局部、靠近处理区域的地方以及处理过的叶片上方对诱导的信息素做出反应,这表明还存在系统性的影响。当具有宿主足迹的植物与取食刺孔或产卵结合进行测试时,无论是在局部还是在近距离都可以得到反应,而在其余的试验中只观察到局部反应。诱导时间不到 24 小时,而信号持续时间显然与宿主卵的适宜性有关,因为寄生蜂不会对携带旧卵或已孵化卵的植物做出反应。这些产卵诱导的短程植物信息素在寄生蜂降落在植物上后的宿主定位过程中可能具有重要作用,与本研究系统中涉及的宿主信息素以不同的组合方式发挥作用。

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