首页> 美国卫生研究院文献>Plant Physiology >Effects of Epidermal Cell Shape and Pigmentation on Optical Properties of Antirrhinum Petals at Visible and Ultraviolet Wavelengths.
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Effects of Epidermal Cell Shape and Pigmentation on Optical Properties of Antirrhinum Petals at Visible and Ultraviolet Wavelengths.

机译:表皮细胞形状和色素沉着对可见和紫外线波长下抗痔花瓣光学性质的影响。

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摘要

We used the Mixta+ and mixta- lines of Antirrhinum majus as a model system to investigate the effects of epidermal cell shape and pigmentation on tissue optical properties in the visible and ultraviolet (UV) spectral regions. Adaxial epidermal cells of Mixta+ flowers have a conical-papillate shape; in the mixta- line the cells are slightly domed. Mixta+ cells contained significantly more anthocyanin and other flavonoids than mixta- cells when plants were grown under either high- or low-UV conditions. Mixta+ cells focused light (3.5-4.7 times incident) within their pigmented interiors, whereas mixta- cells focused light (2.1-2.7 times incident) in the unpigmented mesophyll. UV light penetrated the epidermis (commonly 20-50% transmittance at 312 nm) mainly through the unpigmented peripheral regions of the cells that were similar for the two lines, so that overall penetration through Mixta+ and mixta- epidermises was equal. However, maximum UV absorption in the central region of epidermal cells was slightly greater in Mixta+ than mixta-, and intact Mixta+ flowers reflected less light in the spectral regions with intermediate flavonoid absorbance. In both cases, about 50 to 75% of the difference could be attributed to cell shape and resulting changes in the optical pathlength or focusing.
机译:我们使用美人鱼的Mixta +和mixta-作为模型系统,以研究表皮细胞的形状和色素沉着对可见光和紫外线(UV)光谱区域中组织光学特性的影响。 Mixta +花的表皮表皮细胞呈圆锥花pil状;在混合线中,细胞略呈圆顶状。当植物在高紫外线或低紫外线条件下生长时,Mixta +细胞所含的花色素苷和其他类黄酮含量明显高于混合细胞。 Mixta +细胞在未着色的叶肉内将光聚焦(入射光的3.5-4.7倍),而Mixta-细胞将光在聚焦色素的室内聚焦光(2.1-2.7倍)。紫外线主要通过细胞的未着色外围区域穿透表皮(通常在312 nm处具有20%至50%的透射率),这对于两条细胞系而言是相似的,因此通过Mixta +和mixta-表皮的总穿透率是相等的。然而,在Mixta +中,表皮细胞中心区域的最大UV吸收比mixta-稍大,而完整的Mixta +花在具有中度类黄酮吸收的光谱区域反射的光较少。在这两种情况下,大约50%到75%的差异可归因于晶胞形状以及光程长度或聚焦的变化。

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