Department of Functional Morphology and Biomechanics, Zoological Institute, University of Kiel, 24098, Kiel, Germany.
Biomimetics-Innovation-Centre, City University of Applied Sciences, 28199, Bremen, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2023 Mar;209(2):325-336. doi: 10.1007/s00359-023-01620-2. Epub 2023 Feb 26.
Adaptations to flow have already been in the focus of early stream research, but till today morphological adaptations of stream insects are hardly understood. While most previous stream research focused on drag, the effects of lift on ground-living stream insects have been often overlooked. Stream mayfly larvae Ecdyonurus sp. graze on algae on top of the stones and therefore inhabit current exposed places in streams. They have a dorso-ventrally flattened body shape, which is known to reduce drag. However, this body shape enhances lift too, increasing the danger for the animal of getting detached from the substrate. Using microscopic techniques, 3D-printing, and drag and lift measurements in a wind tunnel, our experiments show that the widened femora of Ecdyonurus sp. can generate negative lift, contributing to counterbalance the (positive) lift of the overall body shape. The larvae can actively regulate the amount of lift by adjusting the femur's tilt or optimizing the distance to the ground. This shows that morphological adaptations of benthic stream insects can be very elaborate and can reach far beyond adaptations of the overall body shape. In the presented case, Ecdyonurus sp. takes advantage of the flow to overcome the flow's challenges.
溪流的适应性一直是早期溪流研究的焦点,但直到今天,溪流昆虫的形态适应仍鲜为人知。虽然大多数先前的溪流研究都集中在阻力上,但对生活在地面上的溪流昆虫的升力的影响往往被忽视。蜉蝣幼虫 Ecdyonurus sp. 以石头顶部的藻类为食,因此栖息在溪流中水流暴露的地方。它们的身体呈背腹扁平状,这种形状已知可以减少阻力。然而,这种身体形状也会增加升力,增加动物从基质上脱落的危险。通过使用微观技术、3D 打印和在风洞中进行阻力和升力测量,我们的实验表明,Ecdyonurus sp. 的加宽的股骨可以产生负升力,有助于平衡整个身体形状的(正)升力。幼虫可以通过调整股骨的倾斜度或优化与地面的距离来主动调节升力的大小。这表明底栖溪流昆虫的形态适应可以非常精细,并可以远远超出对整体身体形状的适应。在本案例中,Ecdyonurus sp. 利用水流来克服水流的挑战。