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发光蕈蚊 Arachnocampa luminosa(双翅目;蕈蚊科)钓鱼线的生物力学特性。

Biomechanical properties of fishing lines of the glowworm Arachnocampa luminosa (Diptera; Keroplatidae).

机构信息

Ludwig Boltzmann Institute for Experimental and Clinical Traumatology, Austrian Cluster for Tissue Regeneration, Vienna, Austria.

University of Vienna, Faculty of Life Science, Core Facility Cell Imaging & Ultrastructure Research, Vienna, Austria.

出版信息

Sci Rep. 2019 Feb 28;9(1):3082. doi: 10.1038/s41598-019-39098-1.

Abstract

Animals use adhesive secretions in highly diverse ways, such as for settlement, egg anchorage, mating, active or passive defence, etc. One of the most interesting functions is the use of bioadhesives to capture prey, as the bonding has to be performed within milliseconds and often under unfavourable conditions. While much is understood about the adhesive and biomechanical properties of the threads of other hunters such as spiders, barely anything is documented about those of the New Zealand glowworm Arachnocampa luminosa. We analysed tensile properties of the fishing lines of the New Zealand glowworm Arachnocampa luminosa under natural and dry conditions and measured their adhesion energy to different surfaces. The capture system of A. luminosa is highly adapted to the prevailing conditions (13-15 °C, relative humidity of 98%) whereby the wet fishing lines only show a bonding ability at high relative humidity (>80%) with a mean adhesive energy from 20-45 N/m and a stronger adhesion to polar surfaces. Wet threads show a slightly higher breaking strain value than dried threads, whereas the tensile strength of wet threads was much lower. The analyses show that breaking stress and strain values in Arachnocampa luminosa were very low in comparison to related Arachnocampa species and spider silk threads but exhibit much higher adhesion energy values. While the mechanical differences between the threads of various Arachnocampa species might be consequence of the different sampling and handling of the threads prior to the tests, differences to spiders could be explained by habitat differences and differences in the material ultrastructure. Orb web spiders produce viscid silk consisting of β-pleated sheets, whereas Arachnocampa has cross-β-sheet crystallites within its silk. As a functional explanation, the low tear strength for A. luminosa comprises a safety mechanism and ensures the entire nest is not pulled down by prey which is too heavy.

摘要

动物以各种方式使用粘性分泌物,例如定居、卵固定、交配、主动或被动防御等。其中最有趣的功能之一是使用生物粘合剂来捕捉猎物,因为粘合必须在几毫秒内完成,而且通常在不利的条件下进行。虽然人们对蜘蛛等其他猎人的粘性和生物力学特性有了很多了解,但关于新西兰萤火虫 Arachnocampa luminosa 的那些特性几乎没有任何记录。我们分析了新西兰萤火虫 Arachnocampa luminosa 的钓鱼线在自然和干燥条件下的拉伸性能,并测量了它们与不同表面的粘附能。A. luminosa 的捕获系统高度适应于流行的条件(13-15°C,相对湿度为 98%),只有在高相对湿度(>80%)下,湿钓鱼线才具有粘合能力,平均粘合能为 20-45N/m,并且对极性表面的粘附力更强。湿线的断裂应变值略高于干线,而湿线的拉伸强度要低得多。分析表明,与相关 Arachnocampa 物种和蜘蛛丝相比,Arachnocampa luminosa 的断裂应力和应变值非常低,但表现出更高的粘附能值。虽然各种 Arachnocampa 物种的线之间的机械差异可能是由于测试前对线的不同采样和处理造成的,但与蜘蛛的差异可以用栖息地差异和材料超微结构的差异来解释。圆网蜘蛛产生粘性丝,由β-折叠片组成,而 Arachnocampa 丝中则有交叉-β-片晶。作为一种功能解释,A. luminosa 的低撕裂强度包含了一种安全机制,确保整个巢穴不会因猎物太重而被拉下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6343/6395680/ada9daa67d12/41598_2019_39098_Fig1_HTML.jpg

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