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Leaf dorsoventrality as a paramount factor determining spectral performance in field-grown wheat under contrasting water regimes

机译:叶背叶作为最重要的因素,在对比水分中的野外成年小麦中的光谱性能

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The effects of leaf dorsoventrality and its interaction with environmentally induced changes in the leaf spectral response are still poorly understood, particularly for isobilateral leaves. We investigated the spectral performance of 24 genotypes of field-grown durum wheat at two locations under both rainfed and irrigated conditions. Flag leaf reflectance spectra in the VIS-NIR-SWIR (visible-near-infrared-short-wave infrared) regions were recorded in the adaxial and abaxial leaf sides and at the canopy level, while traits providing information on water status and grain yield were evaluated. Moreover, leaf anatomical parameters were measured in a subset of five genotypes. The spectral traits studied were more affected by the leaf side than by the water regime. Leaf dorsoventral differences suggested higher accessory pigment content in the abaxial leaf side, while water regime differences were related to increased chlorophyll, nitrogen, and water contents in the leaves in the irrigated treatment. These variations were associated with anatomical changes. Additionally, leaf dorsoventral differences were less in the rainfed treatment, suggesting the existence of leaf-side-specific responses at the anatomical and biochemical level. Finally, the accuracy in yield prediction was enhanced when abaxial leaf spectra were employed. We concluded that the importance of dorsoventrality in spectral traits is paramount, even in isobilateral leaves.
机译:叶背长性及其与叶谱响应环境诱导变化的影响仍然不知所决,特别是对于等管叶。我们调查了在雨量和灌溉条件下的两个地点的田间生物杜兰姆小麦的24种基因型的光谱性能。 VIR-NIR-SWIR(可见近红外短波红外)区域中的标志叶反射率光谱在结构和附带叶片侧和冠层水平上记录,而提供有关水状况和谷物产量信息的特性评估。此外,在五种基因型的子集中测量叶子解剖学参数。所研究的光谱性状受到叶侧的影响而不是水状态。叶片背叶差异建议在灌溉治疗中的叶片,氮气和叶片中的叶绿素,氮气和水含量增加的较高的辅助颜料含量。这些变化与解剖改变有关。此外,叶背叶叶片差异在雨量处理中较少,表明在解剖学和生化水平下存在叶侧特异性反应。最后,当采用亚轴叶谱谱时,提高了产量预测的准确性。我们得出结论,即使在甲状腺叶中,也是至关重要的,圆偏其在光谱特征中的重要性。

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