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两种斑叶螨的光谱特异性损伤和太阳紫外线辐射规避。

Spectrum-specific damage and solar ultraviolet radiation avoidance in the two-spotted spider mite.

机构信息

Laboratory of Ecological Information, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

Photochem Photobiol. 2010 Jul-Aug;86(4):925-32. doi: 10.1111/j.1751-1097.2010.00739.x. Epub 2010 May 13.

Abstract

The spatial distribution of the two-spotted spider mite Tetranychus urticae Koch is biased toward the lower surfaces of leaves as compared with the upper leaf surfaces on their host plants. Because of the deleterious effects of solar ultraviolet (UV) irradiation, we hypothesized T. urticae remains on lower leaf surfaces as an adaptation to avoid solar UV radiation (UVR). We examined the effects of solar UVR components on females and tested whether spatial distribution was associated with solar UVR avoidance. Attenuation of solar UVR using UV opaque film increased fecundity and reduced the movement of females from the upper to the lower leaf surfaces. In contrast, diverting solar UVR to the lower leaf surface using a light reflection sheet caused the mites to move from the lower to the upper leaf surfaces; however, attenuated UV reflection did not, suggesting that they occupy the lower leaf surface to avoid solar UVR. In monochromatic UVR tests, no eggs hatched when placed under 280-300 nm radiation, whereas almost all eggs hatched at 320-360 nm. Adult females, however, did not avoid wavelengths of 280 and 300 nm, but avoided 320-340 nm. We conclude that T. urticae exploit UVA information to avoid ambient UVB radiation.

摘要

与宿主植物的上表面相比,二斑叶螨 Tetranychus urticae Koch 的空间分布偏向于叶片的下表面。由于太阳紫外线(UV)辐射的有害影响,我们假设 T. urticae 留在下表面是为了适应避免太阳 UV 辐射(UVR)。我们研究了太阳 UVR 成分对雌性的影响,并测试了空间分布是否与太阳 UVR 回避有关。使用不透明的紫外线膜衰减太阳 UVR 会增加雌性的繁殖力,并减少它们从上表面向下表面的移动。相比之下,使用光反射片将太阳 UVR 转移到下表面会导致螨虫从下表面向上表面移动;然而,衰减的紫外线反射并没有,这表明它们占据下表面以避免太阳 UVR。在单色 UVR 测试中,当放置在 280-300nm 辐射下时,没有卵孵化,而在 320-360nm 时几乎所有卵都孵化。然而,成年雌性不回避 280nm 和 300nm 的波长,但回避 320-340nm 的波长。我们得出结论,T. urticae 利用 UVA 信息来避免环境中的 UVB 辐射。

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