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踪迹信息素在白蚁亚科Syntermitinae 中的作用(直翅目,等翅目,白蚁科)。

Trail-Following Pheromones in the Termite Subfamily Syntermitinae (Blattodea, Termitoidae, Termitidae).

机构信息

Laboratory of Experimental and Comparative Ethology UR 4443, University Sorbonne Paris Nord, Villetaneuse, France.

Faculty of Tropical AgriSciences, Czech University of Life Sciences Prague, Prague, Czech Republic.

出版信息

J Chem Ecol. 2020 Jun;46(5-6):475-482. doi: 10.1007/s10886-020-01180-8. Epub 2020 Jun 11.

Abstract

Trail-following behavior is a key to ecological success of termites, allowing them to orient themselves between the nesting and foraging sites. This behavior is controlled by specific trail-following pheromones produced by the abdominal sternal gland occurring in all termite species and developmental stages. Trail-following communication has been studied in a broad spectrum of species, but the "higher" termites (i.e. Termitidae) from the subfamily Syntermitinae remain surprisingly neglected. To fill this gap, we studied the trail-following pheromone in six genera and nine species of Syntermitinae. Our chemical and behavioral experiments showed that (3Z,6Z,8E)-dodeca-3,6,8-trien-1-ol is the single component of the pheromone of all the termite species studied, except for Silvestritermes euamignathus. This species produces both (3Z,6Z)-dodeca-3,6-dien-1-ol and neocembrene, but only (3Z,6Z)-dodeca-3,6-dien-1-ol elicits trail-following behavior. Our results indicate the importance of (3Z,6Z,8E)-dodeca-3,6,8-trien-1-ol, the most widespread communication compound in termites, but also the repeated switches to other common pheromones as exemplified by S. euamignathus.

摘要

跟踪行为是白蚁在生态上取得成功的关键,使它们能够在巢穴和觅食地之间定向。这种行为是由腹部胸骨腺产生的特定跟踪信息素控制的,所有白蚁物种和发育阶段都存在这种信息素。跟踪通讯在广泛的物种中进行了研究,但来自 Syntermitinae 亚科的“高等”白蚁(即白蚁科)却令人惊讶地被忽视了。为了填补这一空白,我们研究了 6 个属和 9 个 Syntermitinae 种的跟踪信息素。我们的化学和行为实验表明,(3Z,6Z,8E)-十二碳-3,6,8-三烯-1-醇是所有研究白蚁物种的信息素的单一成分,除了 Silvestritermes euamignathus 之外。该物种产生(3Z,6Z)-十二碳-3,6-二烯-1-醇和新角倍醇,但只有(3Z,6Z)-十二碳-3,6-二烯-1-醇会引起跟踪行为。我们的结果表明(3Z,6Z,8E)-十二碳-3,6,8-三烯-1-醇的重要性,它是白蚁中最广泛传播的化合物,但也表明了其他常见信息素的反复切换,如 S. euamignathus 所示。

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