首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Strength of silk attachment to Ilex chinensis leaves in the tea bagworm Eumeta minuscula (Lepidoptera Psychidae)
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Strength of silk attachment to Ilex chinensis leaves in the tea bagworm Eumeta minuscula (Lepidoptera Psychidae)

机译:茶bag虫(Eumeta minuscula)(鳞翅目科)中蚕丝对蚕豆叶片的附着力

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摘要

Silks play an important role in the life of various arthropods. A highly neglected prerequisite to make versatile use of silks is sufficient attachment to substrates. Although there have been some studies on the structure and mechanics of silk anchorages of spiders, for insects only anecdotal reports on attachment-associated spinning behaviour exist. Here, we experimentally studied the silk attachment of the pupae and last instar caterpillars of the tea bagworm Eumeta minuscula (Butler 1881) (Lepidoptera, Psychidae) to the leaves of its host plant Ilex chinensis. We found that the bagworms spin attachment discs, which share some structural features with those of spiders, like a plaque consisting of numerous overlaid, looped glue-coated silk fibres and the medially attaching suspension thread. Although the glue, which coats the fibres, cannot spread and adhere very well to the leaf surface, high pull-off forces were measured, yielding a mean safety factor (force divided by the animal weight) of 385.6. Presumably, the bagworms achieve this by removal of the leaf epidermis prior to silk attachment, which exposes the underlying tissue that represents a much better bonding site. This ensures a reliable attachment during the immobile, vulnerable pupal stage. This is the first study on the biomechanics and structure of silk attachments to substrates in insects.
机译:丝绸在各种节肢动物的生活中起着重要作用。广泛使用丝绸的前提条件是充分附着在基材上,这是一个被高度忽略的前提。尽管已经对蜘蛛丝锚定的结构和力学进行了一些研究,但是对于昆虫,仅存在关于附着相关的旋转行为的传闻报道。在这里,我们实验研究了茶bag虫Eumeta minuscula(巴特勒1881年,Lepidoptera,Psychidae)的ae和最后的幼虫到其寄主植物冬青树的叶子上的丝绸附着。我们发现,bag虫旋转的附着盘与蜘蛛具有一些结构特征,例如由许多覆盖的,环状的涂胶丝纤维和中间附着的悬浮线组成的噬菌斑。尽管覆盖纤维的胶水无法散布并很好地粘附在叶片表面,但测得的拉力很高,平均安全系数(力除以动物体重)为385.6。据推测,the虫是通过在蚕丝附着之前去除叶表皮来实现此目的的,蚕丝表皮暴露出了下层组织,该下层组织代表了更好的结合部位。这样可以确保在固定,脆弱的up阶段可靠地固定。这是关于昆虫对蚕丝附着在基质上的生物力学和结构的首次研究。

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