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Light response of photosynthesis and stomatal conductance of rose leaves in the canopy profile: the effect of lighting on the adaxial and the abaxial sides

机译:玫瑰花叶片光合作用和气孔电导的光响应曲线曲线:照明对轴向侧的影响

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摘要

We investigated the light response of leaf photosynthesis, stomatal conductance and optical properties in rose plants grown in a glasshouse with bending technique. Leaves were lighted from the adaxial or the abaxial side during measurements, performed in four positions in the upright and bent shoots: top leaves, middle leaves, bottom leaves, and bent shoot leaves. Moreover, the effect of the irradiation on the adaxial or abaxial leaf side on whole canopy photosynthesis was estimated through model simulation. No significant differences were found in light transmission, reflection and absorption of leaves and in photosynthesis light response curves among the four positions. In all the leaf positions, light absorption, stomatal conductance and photosynthesis were higher when leaves were lighted from the adaxial compared with the abaxial side. The model showed that a substantial part of the light absorbed by the crop originated from light reflected from the greenhouse floor, and thus the abaxial leaf properties have impact on whole crop light absorbance and photosynthesis. Simulations were performed for crops with leaf area index (LAI) 1, 2 and 3. Simulation at LAI 1 showed the highest reduction of simulated crop photosynthesis considering abaxial properties; however, to a lesser extent photosynthesis was also reduced at LAI 2 and 3. The overall results showed that the model may be helpful in designing crop systems for improved light utilisation by changing lamp position or level of leaf bending and pruning.
机译:我们调查了在玻璃盆中生长的叶片光合作用,气孔电导和光学性质的光响应,在玻璃盆中种植的弯曲技术。在测量过程中,叶子从变形或轴向侧点燃,在直立和弯曲的射击中的四个位置进行:顶部叶子,中叶,底叶和弯曲芽叶。此外,通过模拟模拟估计了对整个冠层光合作用对整个冠层光合作用的辐射或附加叶片侧的影响。在四个位置之间的光传输,反射和吸收中没有发现显着差异,在四个位置之间的光合光反应曲线。在与叶片相比,当叶子与亚轴侧相比,当叶片从叶片点燃时,光吸收,气孔导度和光合作用较高。该模型表明,作物吸收的光的大部分光源源自从温室地板反射的光,因此亚速叶状物质对整个作物光吸收和光合作用产生影响。对叶面积指数(LAI)1,2和3进行的作物进行了模拟。LAI 1的模拟表明,考虑到轴向特性,模拟作物光合作用的最高减少;然而,在较小程度上,光合作用也在Lai 2和3中降低。总体结果表明,通过改变灯位置或叶子弯曲和修剪的灯位置或水平,该模型可以有助于设计用于改善光利用的作物系统。

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