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光定向调节二斑叶螨的季节性栖息地选择。

Photo-orientation regulates seasonal habitat selection in the two-spotted spider mite, Tetranychus urticae.

机构信息

Japan Society for the Promotion of Science, Chiyoda, Tokyo 102-0083, Japan.

出版信息

J Exp Biol. 2013 Mar 15;216(Pt 6):977-83. doi: 10.1242/jeb.079582. Epub 2012 Nov 29.

Abstract

Non-diapausing spider mites (Tetranychus urticae) live on the undersurface of host leaves during summer, but diapausing mites overwinter in dark hibernacula. The light environments of these habitats differ: visible radiation (VIS) but not ultraviolet radiation (UV) reaches the undersurface of leaves, but neither enters dark hibernacula. Thus, mites of either seasonal form could locate their preferred habitat by photo-orientation responses to UV and VIS. To investigate this possibility, we analysed the mites' locomotion behaviour on a virtual field with a programmed chequered pattern of light and dark patches in a micro-locomotion compensator. Both non-diapausing and diapausing mites moved away from UV-illuminated patches into dark patches. Non-diapausing mites moved towards VIS-illuminated patches, whereas diapausing mites did not show a preference. Our results show that non-diapausing mites avoid UV and are attracted to VIS, suggesting that this can guide them beneath a leaf. Diapausing mites simply avoid UV. The lack of a preference for VIS during diapause could be due to changes in carotenoid metabolism, which also involve orange pigmentation of diapausing mites. We consider that a diapause-mediated switch of the response to VIS, together with regular avoidance of UV, plays a key role in the seasonal change of habitat selection in this species. This seasonal polyphenism involves alterations in not only reproductive state and pigmentation, but also in photo-spectral responses.

摘要

非滞育的蜘蛛螨(Tetranychus urticae)在夏季生活在寄主叶片的下表面,但滞育螨在黑暗的冬眠场所中越冬。这些栖息地的光照环境不同:可见光(VIS)但不是紫外线(UV)到达叶片的下表面,但都不会进入黑暗的冬眠场所。因此,无论是季节性形式的螨虫都可以通过对 UV 和 VIS 的光定向反应来定位它们喜欢的栖息地。为了研究这种可能性,我们在微运动补偿器中的一个可编程的方格图案的光和暗斑虚拟场地上分析了螨虫的运动行为。非滞育和滞育螨虫都从 UV 照射的斑块移动到黑暗的斑块。非滞育螨虫向 VIS 照射的斑块移动,而滞育螨虫则没有表现出偏好。我们的结果表明,非滞育螨虫避开 UV 并被 VIS 吸引,这表明这可以引导它们在叶片下移动。滞育螨虫只是避开 UV。滞育期间对 VIS 没有偏好可能是由于类胡萝卜素代谢的变化所致,这也涉及到滞育螨虫的橙色色素沉着。我们认为,滞育介导的对 VIS 的反应的切换,以及对 UV 的定期回避,在这种物种的栖息地选择的季节性变化中起着关键作用。这种季节性多态性不仅涉及生殖状态和色素沉着的改变,还涉及光光谱反应的改变。

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