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具有“钉扎效应”的超疏水表皮在黄缘绿刺蛾幼虫中,Rhadinoceraea micans(膜翅目,叶蜂科)。

Superhydrophobic cuticle with a "pinning effect" in the larvae of the iris sawfly, Rhadinoceraea micans (Hymenoptera, Tenthredinidae).

机构信息

Department of Functional Morphology and Biomechanics, Zoological Institute, University of Kiel, Am Botanischen Garten 1-9, D-24098 Kiel, Germany.

出版信息

Zoology (Jena). 2011 Oct;114(5):265-71. doi: 10.1016/j.zool.2011.05.004. Epub 2011 Sep 8.

Abstract

The integument of some sawfly larvae can be easily damaged causing haemolymph bleeding (easy bleeding phenomenon). In the present study, we investigated intact cuticle, cuticle without wax coverage and cuticle replicas of sawfly larvae by using cryo-scanning electron microscopy and contact angle (CA) measurements. The easy bleeder Rhadinoceraea micans was compared to the non-easy bleeder Nematus pavidus (both Tenthredinidae), and the examination showed that the surface structures of R. micans were hierarchically arranged, whereas the cuticle surface of N. pavidus appeared much smoother. The intact cuticle proved to be superhydrophobic in R. micans (CAs: 156° dorsally, 120° ventrally), but not in N. pavidus (CAs: 67° dorsally, 47° ventrally). The wettability of R. micans increased significantly after the waxes had been peeled off. Replicas of the intact cuticle surface were hardly wettable in both species. It is suggested that wax crystals in combination with cuticle microsculptures are the most important features for rendering the integument of the easy bleeder species superhydrophobic. The wax-free tips of the cuticle microsculptures in R. micans are sites where haemolymph droplets can adhere. The integument surface of easy bleeders is assumed to be adapted to their particular defence strategy, simultaneously contributing to the maintenance and "reuse" of released haemolymph droplets on the superhydrophobic surface due to this "pinning effect".

摘要

一些叶蜂幼虫的表皮很容易受损,导致血淋巴外渗(易出血现象)。在本研究中,我们使用冷冻扫描电子显微镜和接触角(CA)测量法,研究了完整的表皮、没有蜡覆盖的表皮和表皮复制品。我们将易出血的 Rhadinoceraea micans 与不易出血的 Nematus pavidus(均为叶蜂科)进行了比较,检查结果表明,R. micans 的表面结构呈层次排列,而 N. pavidus 的表皮表面则显得更加光滑。完整的表皮在 R. micans 中表现出超疏水性(CA:背部 156°,腹部 120°),但在 N. pavidus 中则不是(CA:背部 67°,腹部 47°)。在 R. micans 中,蜡质被剥离后,其润湿性显著增加。两种物种的完整表皮复制品几乎都不具有润湿性。这表明蜡晶体与表皮微观结构的结合是使易出血物种的表皮具有超疏水性的最重要特征。R. micans 中完整表皮表面的无蜡尖端是血淋巴液滴可以附着的部位。易出血者的表皮表面被认为适应了它们特定的防御策略,同时由于这种“钉扎效应”,有助于维持和“再利用”疏水性表面上释放的血淋巴液滴。

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