...
首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Analysis of the effect of chloroplast arrangement on optical properties of green tobacco leaves
【24h】

Analysis of the effect of chloroplast arrangement on optical properties of green tobacco leaves

机译:叶绿体排列对绿色烟叶光学特性的影响分析

获取原文
获取原文并翻译 | 示例

摘要

There are many studies showing the active optical reaction of a green leaf to the changing surroundings based on chloroplast movement and their rearrangement in plant cells. These studies concentrated mostly on the effect of one feature (leaf type, leaf side or light type) on the leaf optical spectra. We have measured the diffuse reflectance and transmittance spectra of tobacco green leaves in combination of 4 variants: in normal and water infiltrated leaves, in collimated or diffuse incident light, on both the adaxial and abaxial leaf sides, and for the face or side chloroplast arrangement. A Simple Explicitly Non-Linear Empirical model for Leaf Optical Properties (SENLELOP model) is used to theoretically describe, simulate and fit the deviations from the Lambert-Beer's law causing nonlinearity in the measured spectral changes. It is shown that the incident diffuse light is captured by the leaf more effectively than the collimated light. The light incident from the adaxial leaf side is more effectively absorbed than the same light incident from the abaxial leaf side. The air in intercellular spaces of natural leaf increases about twice the beam path and strongly deepens the non-linearity of the absorption process when compared with water infiltrated leaf. The chloroplast arrangement in the palisade cells is reflected in most of the studied differences. The leaf absorbance changed in our case of tobacco leaves up to 30% when the chloroplasts moved from the face to the side position. This change depends strongly on the wavelength and quite slightly on the character of incident light. Further analysis predicts that in practice the effect of chloroplast rearrangement on the reflectance spectra is in dependence on the wavelength of the light about 2-5% in our case of fully developed green leaves but can be higher in some cases. Thus it can affect values of some of the indices used in the remote sensing. (C) 2015 Elsevier Inc. All rights reserved.
机译:许多研究表明,基于叶绿体的运动及其在植物细胞中的重排,绿叶对不断变化的环境具有活跃的光学反应。这些研究主要集中于一种特征(叶型,叶侧或光型)对叶片光谱的影响。我们已经测量了四种不同形式的烟草绿叶的漫反射光谱和透射光谱:在正常和水浸润的叶片中,在准直或漫射入射光中,在叶片的正反两面,以及正面或反面的叶绿体排列。用于叶片光学特性的简单显式非线性经验模型(SENLELOP模型)用于理论上描述,模拟和拟合偏离朗伯-比尔定律的偏差,从而导致所测光谱变化呈非线性。结果表明,入射的散射光比准直光更有效地被叶片捕获。从正面叶片侧入射的光比从背面叶片侧入射的光更有效地被吸收。与水浸润的叶片相比,天然叶片的细胞间空间中的空气增加了大约两倍的束流路径,并大大加深了吸收过程的非线性。在大多数研究的差异中反映出栅状细胞中的叶绿体排列。当叶绿体从面部移动到侧面位置时,在我们的烟草叶片中,叶片的吸光度变化高达30%。这种变化在很大程度上取决于波长,而在很大程度上取决于入射光的特性。进一步的分析预测,在我们完全成熟的绿叶情况下,实际上叶绿体重排对反射光谱的影响取决于光的波长约2%至5%,但在某些情况下可能更高。因此,它会影响遥感中使用的某些指标的值。 (C)2015 Elsevier Inc.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号