首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Arthropods Associate with their Red Wood ant Host without Matching Nestmate Recognition Cues
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Arthropods Associate with their Red Wood ant Host without Matching Nestmate Recognition Cues

机译:节肢动物与他们的红木蚂蚁主人联系,没有匹配巢式识别线索

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摘要

Social insect colonies provide a valuable resource that attracts and offers shelter to a large community of arthropods. Previous research has suggested that many specialist parasites of social insects chemically mimic their host in order to evade aggression. In the present study, we carry out a systematic study to test how common such chemical deception is across a group of 22 arthropods that are associated with red wood ants (Formica rufa group). In contrast to the examples of chemical mimicry documented in some highly specialized parasites in previous studies, we find that most of the rather unspecialized red wood ant associates surveyed did not use mimicry of the cuticular hydrocarbon recognition cues to evade host detection. Instead, we found that myrmecophiles with lower cuticular hydrocarbon concentrations provoked less host aggression. Therefore, some myrmecophiles with low hydrocarbon concentrations appear to evade host detection via a strategy known as chemical insignificance. Others showed no chemical disguise at all and, instead, relied on behavioral adaptations such as particular defense or evasion tactics, in order to evade host aggression. Overall, this study indicates that unspecialized myrmecophiles do not require the matching of host recognition cues and advanced strategies of chemical mimicry, but can integrate in a hostile ant nest via either chemical insignificance or specific behavioral adaptations.
机译:社交昆虫殖民地提供了一种有价值的资源,吸引并为一个大型节肢动物社区提供庇护。以前的研究表明,社会昆虫的许多专家寄生虫化学模仿其主持人以逃避侵略。在本研究中,我们进行了系统的研究,以测试这种化学欺骗的常见侵害是一组22个与红木蚂蚁(Formica Rufa组)相关的节肢动物。与在以前研究的一些高度专业的寄生虫中的化学模仿的例子相反,我们发现调查的大多数相当未特殊的红木蚂蚁联系人未使用有乳清烃识别提示的模仿以逃避主机检测。相反,我们发现,具有较低的内心碳氢化合物浓度的MyRmeCophiles引发了较少的宿主侵略性。因此,一些具有低碳氢化合物浓度的MyRmecophiles似乎通过称为化学性微不足道的策略来逃避宿主检测。其他人没有任何化学伪装,而是依赖于诸如特定防御或逃避战术的行为适应,以逃避主持人侵略。总体而言,本研究表明未公平化的MyRMecophiles不需要宿主识别提示和化学模仿的先进策略的匹配,而是可以通过化学性微不足道或特定的行为适应在敌对蚂蚁巢中整合。

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