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首页> 外文期刊>Royal Society Open Science >Spatio-temporal development of cuticular ridges on leaf surfaces of Hevea brasiliensis alters insect attachment
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Spatio-temporal development of cuticular ridges on leaf surfaces of Hevea brasiliensis alters insect attachment

机译:Hevea Brasiliensis叶片表面上脊状脊的时空发展改变了昆虫依恋

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Cuticular ridges on plant surfaces can control insect adhesion and wetting behaviour and might also offer stability to underlying cells during growth. The growth of the plant cuticle and its underlying cells possibly results in changes in the morphology of cuticular ridges and may also affect their function. We present spatial and temporal patterns in cuticular ridge development on the leaf surfaces of the model plant, Hevea brasiliensis . We have identified, by confocal laser scanning microscopy of polymer leaf replicas, an acropetally directed progression of ridges during the ontogeny of Hevea brasiliensis leaf surfaces. The use of Colorado potato beetles (Leptinotarsa decemlineata) as a model insect species has shown that the changing dimensions of cuticular ridges on plant leaves during ontogeny have a significant impact on insect traction forces and act as an effective indirect defence mechanism. The traction forces of walking insects are significantly lower on mature leaf surfaces compared with young leaf surfaces. The measured walking traction forces exhibit a strong negative correlation with the dimensions of the cuticular ridges.
机译:植物表面上的粘膜可以控制昆虫粘附和润湿行为,并且还可以在生长期间提供潜在的细胞稳定性。植物角质层的生长及其潜在的细胞可能导致有脊髓脊状形态的变化,也可能影响其功能。我们在植物植物叶片叶片表面上呈现出粘性脊开发的空间和时间图案,Hevea Brasiliensis。我们已经鉴定了聚合物叶复制品的共聚焦激光扫描显微镜,在HEVEA Brasiliensis叶片表面的Ontogeny期间脊的眶上进展。作为模型昆虫物种的使用科罗拉多土豆甲虫(Leptinotarsa Decemlineata)表明,在植物发生过程中植物叶片的尺寸变化对昆虫牵引力的显着影响,并作为一种有效的间接防御机制。与幼叶表面相比,成熟叶面的步行昆虫的牵引力显着降低。测量的步行牵引力与具有粘面脊的尺寸表现出强的负相关性。

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