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Exploring vegetation photosynthetic light-use efficiency using hyperspectral data

机译:使用高光谱数据探索植被光合光利用效率

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Photosynthetic light-use efficiency (LUE) is an important indicator of plant photosynthesis, but assessment by remote sensing needs to be further explored. In principle, chlorophyll fluorescence combined with heat dissipation is an expression of the balance between light harvesting (absorption) and light utilization in the photosynthetic process. The aim of the present study was to examine the above principles using solar-induced chlorophyll fluorescence (ChlF) and photochemical reflectance index (PRI), which is sensitive to dynamic changes in the xanthophyll cycle. LUE-ChlF models were developed for ChlF at 688 rum (R~2 = 0.72) and 760 nm (R~2 = 0.59) based on the experiment data for winter wheat, which were also validated by three independent experiments, and the validation results showed that the LUE-ChlF relation was weakened, possibly by different species, canopy density and environmental conditions. Furthermore, the significant negative relation between non-photochemical quenching (NPQ) and PRI was confirmed. However, the PRI-LUE relation was evidently weakened by the canopy and environmental conditions. The PRI difference (ΔPRI) from the minimum reference PRI around noontime could greatly eliminate the interference factors. The LUE-ΔPRI model was developed based on the experiment data for winter wheat (with an R~2 value of 0.85), and validated by other three independent experiments.
机译:光合光使用效率(LUE)是植物光合作用的重要指标,但是进一步探讨由遥感需求评估。原则上,叶绿素荧光与散热组合是在光合过程捕光(吸收)和光的利用之间的平衡的一种表达。本研究的目的是检查使用太阳能诱导叶绿素荧光(CHLF)和光化学反射指数(PRI),这是在叶黄素循环动态变化敏感上述原则。 LUE-CHLF模型688朗姆酒(R〜2 = 0.72)和760nm处为CHLF开发(R〜2 = 0.59)的基础上对冬小麦的实验数据,其也由三个独立的实验验证,验证结果表明,LUE-CHLF关系减弱,可能由不同的物种,树冠密度和环境条件。此外,非光化学淬灭(NPQ)和PRI之间的显著负相关关系进行了确认。然而,PRI-LUE关系是很明显的树冠和环境条件减弱。该PRI差异(ΔPRI)从最小PRI参考在中午可以大大消除干扰因素。所述LUE-ΔPRI模型基于对冬小麦(具有0.85的R〜2的值)的实验数据开发的,由其他三个独立的实验验证。

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