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Stiffness gradients facilitate ovipositor bending and spatial probing control in a parasitic wasp

机译:刚度梯度促进寄生黄蜂中的产卵弯曲和空间探测控制

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摘要

Many parasitic wasps use slender and steerable ovipositors to lay eggs in hosts hidden in substrates, but it is currently unknown how steering is achieved. The ovipositors generally consist of three longitudinally connected elements, one dorsal and two ventral valves that can slide along each other. For the parasitic wasp Diachasmimorpha longicaudata, it has been shown that protraction of the ventral valves causes incurving of the ventral valves towards the dorsal one, which results in a change in probing direction. We hypothesize that this shape change is due to differences in bending stiffness along the ovipositor. Alignment of the stiff tip of the dorsal valve with a more flexible ventral S-shaped region situated just behind the tip straightens this S-bend and results in upwards rotation of the ventral tip. We show that the S-shaped region of the ventral valves has a low bending stiffness because it contains soft materials such as resilin. In contrast, the large cross-sectional area of the dorsal valve tip area probably results in a high bending stiffness. Elsewhere, the dorsal valve is less stiff than the ventral valves. Our results support the hypothesis that the interaction between the stiff dorsal valve portion and the more flexible S-shaped region co-determines the configurational tip changes required for steering the ovipositor in any desired direction along curved paths in the substrate. This provides novel insights in the understanding of steering mechanisms of the hymenopteran ovipositor, and for application in man-made probes.
机译:许多寄生蜂用修长而可操纵的产卵器中隐藏在基底主机下蛋,但目前还不清楚如何转向实现。的产卵器通常包括三个纵向连接元件,一个背和两个腹侧阀,其可沿彼此滑动的。对于寄生蜂Diachasmimorpha longicaudata,它已经表明,腹侧阀的牵引引起的向内侧弯曲的腹侧朝向阀门背一个,这导致在探测方向的改变。我们猜测,这种形状变化是由于沿产卵弯曲刚度的差异。与位于后面的前端的更灵活的腹侧S字状区域背阀的坚硬尖端的对准拉直在向上腹侧尖端的转动此S-弯曲和结果。我们表明,腹侧阀的S形区域具有低的弯曲刚度,因为它包含软的材料,如弹性蛋白。与此相反,背阀尖端区域的大的横截面面积可能导致高的弯曲刚度。在其他地方,背壳是刚性的比腹侧阀少。我们的结果支持了所述刚性背阀部分和更灵活的S字状区域之间的相互作用共同决定了构尖端变化所需用于在沿所述基板的弯曲路径中的任何期望的方向转向产卵的假说。这提供的膜翅目昆虫产卵的转向机构的理解新的见解,并在人造探测器的应用。

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