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首页> 外文期刊>Behavioral Ecology and Sociobiology >Complex alarm strategy in the most basal termite species
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Complex alarm strategy in the most basal termite species

机译:最基础白蚁物种的复杂警报策略

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摘要

Studying basal taxa often allows shedding a light on the evolution of advanced representatives. The most basal termite species, Mastotermes darwiniensis, possesses unique morphological and behavioural traits, of which many remain scarcely studied. For these reasons, we conducted a comprehensive study of the alarm communication in this species and compared its components to behavioural modes described in other termites. In M. darwiniensis, the alarm is communicated by substrate-borne vibrations resulting from vertical vibratory movements. Another similar behaviour consists in longitudinal movements, by which the alarm is delivered to other termites in contact with alerted individual. Both these two behavioural modes could be used in synergy to create complex movements. M. darwiniensis also uses chemical alarm signals produced by labial gland secretion, in contrast to Neoisoptera in which this function is fulfilled exclusively by the frontal gland secretion. Moreover, we demonstrated in M. darwiniensis the presence of a positive feedback mechanism thought to occur exclusively in the crown group Termitidae. This positive feedback consists in both oscillatory movements of alerted individuals in response to alarm signals and release of alarm pheromone by excited soldiers. Our results confirm that M. darwiniensis is a remarkable example of mosaic evolution, as it combines many primitive and advanced features, and its alarm communication clearly belongs to the latter category.
机译:研究基础分类群通常可以让人们了解高级代表的进化。最基础的白蚁物种Mastotermes darwiniensis具有独特的形态和行为特征,其中许多仍很少被研究。由于这些原因,我们对该物种中的警报通信进行了全面研究,并将其组成与其他白蚁中描述的行为模式进行了比较。在达尔文分枝杆菌中,警报通过垂直振动运动引起的基质传播的振动来传达。另一个类似的行为在于纵向运动,通过该纵向运动,警报被传送到与被警报者接触的其他白蚁。这两种行为模式都可以协同作用来创建复杂的动作。 darwiniensis还使用由唇腺分泌产生的化学警报信号,而Neoisoptera则仅通过额腺分泌来实现此功能。此外,我们在达尔文尼支原体中证明了正反馈机制的存在,认为该正反馈机制仅在冠群Termitidae中发生。这种积极的反馈既包括警报者响应警报信号的振荡运动,又包括兴奋的士兵释放警报信息素。我们的结果证实,达尔文分枝杆菌是镶嵌进化的一个杰出例子,因为它结合了许多原始和先进的特征,并且其警报通信显然属于后者。

著录项

  • 来源
    《Behavioral Ecology and Sociobiology》 |2015年第12期|1945-1955|共11页
  • 作者单位

    Faculty of Forestry and Wood Sciences University of Life Sciences">(1);

    Institute of Research for Development Sorbonne Universités">(2);

    UMR 242 Institute of Ecology and Environmental Sciences of Paris">(3);

    Institute of Research for Development Sorbonne Universités">(2);

    UMR 242 Institute of Ecology and Environmental Sciences of Paris">(3);

    Laboratory of Experimental and Applied Ethology - EA 4443 Université Paris 13–Sorbonne Paris Cité">(4);

    Faculty of Electrical Engineering Czech Technical University in Prague">(5);

    Faculty of Electrical Engineering Czech Technical University in Prague">(5);

    Institute of Organic Chemistry and Biochemistry Academy of Sciences of the Czech Republic">(6);

    Faculty of Forestry and Wood Sciences University of Life Sciences">(1);

    Faculty of Forestry and Wood Sciences University of Life Sciences">(1);

    Institute of Organic Chemistry and Biochemistry Academy of Sciences of the Czech Republic">(6);

    Faculty of Electrical Engineering Czech Technical University in Prague">(5);

    Faculty of Forestry and Wood Sciences University of Life Sciences">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Defence; Labial glands; Vibroacoustic communication; Chemical communication; Positive feedback; Mastotermes darwiniensis;

    机译:防御;唇腺振动声通信;化学交流;正面反馈;达尔文乳杆菌;

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