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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >The photochemical reflectance index (PRI) and the remote sensing of leaf, canopy and ecosystem radiation use efficiencies. A review and meta-analysis
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The photochemical reflectance index (PRI) and the remote sensing of leaf, canopy and ecosystem radiation use efficiencies. A review and meta-analysis

机译:光化学反射指数(PRI)以及对叶片,冠层和生态系统辐射的遥感利用效率。综述和荟萃分析

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摘要

Traditional remote sensing techniques allow the assessment of green plant biomass, and therefore plant photosynthetic capacity. However, detecting how much of this capacity is actually realized is a more challenging goal. Is it possible to remotely assess actual carbon fluxes? Can this be done at leaf, canopy and ecosystem scales and at different temporal scales? Different approaches can be used to answer these questions. Among them, the Photochemical Reflectance Index (PRI) derived from narrow-band spectroradiometers is a spectral index increasingly being used as an indicator of photosynthetic efficiency. We examined and synthesized the scientific literature on the relationships between PRI and several ecophysiological variables across a range of plant functional types and ecosystems at the leaf, canopy and ecosystem levels and at the daily and seasonal time scales. Our analysis shows that although the strength of these relationships varied across vegetation types, levels of organization and temporal scales, in most reviewed articles PRI was a good predictor of photosynthetic efficiency or related variables with performances at least as good as the widely used NDVI as indicator of green biomass. There are possible confounding factors related to the intensity of the physiological processes linked to the PRI signals, to the structure of the canopies and to the illumination and viewing angles that warrant further studies, and it is expected that the utility of PRI will vary with the ecosystem in question due to contrasting environmental constraints, evolutionary strategies, and radiation use efficiency (RUE; the ratio between carbon uptake and light absorbed by vegetation) variability. Clearly, more research comparing ecosystem responses is warranted. Additionally, like any 2-band index that is affected by multiple factors, the interpretation of PRI can be readily confounded by multiple environmental variables, and further work is needed to understand and constrain these effects. Despite these limitations, this review shows an emerging consistency of the RUE-PRI relationship that suggests a surprising degree of functional convergence of biochemical, physiological and structural components affecting leaf, canopy and ecosystem carbon uptake efficiencies. PRI accounted for 42%, 59% and 62% of the variability of RUE at the leaf, canopy and ecosystem respective levels in unique exponential relationships for all the vegetation types studied. It seems thus that by complementing the estimations of the fraction of photosynthetically active radiation intercepted by the vegetation (FPAR), estimated with NDVI-like indices, PRI enables improved assessment of carbon fluxes in leaves, canopies and many of the ecosystems of the world from ground, airborne and satellite sensors.
机译:传统的遥感技术可以评估绿色植物的生物量,从而评估植物的光合能力。但是,检测实际实现多少这种容量是一个更具挑战性的目标。是否可以远程评估实际碳通量?可以在叶片,树冠和生态系统范围内以及在不同的时间范围内完成吗?可以使用不同的方法来回答这些问题。其中,源自窄带分光辐射计的光化学反射率指数(PRI)是越来越多地用作光合效率指标的光谱指数。我们研究并综合了有关PRI和叶片,冠层和生态系统水平以及日常和季节性时间尺度上一系列植物功能类型和生态系统中若干生态生理变量之间关系的科学文献。我们的分析表明,尽管这些关系的强度因植被类型,组织水平和时间尺度而异,但在大多数评论文章中,PRI是光合作用效率或相关变量的良好预测指标,其性能至少与广泛使用的NDVI一样好绿色生物质。可能存在与PRI信号相关的生理过程强度,冠层结构以及照明和视角相关的混杂因素,有待进一步研究,并且预计PRI的效用会随着由于存在不同的环境限制,进化策略和辐射利用效率(RUE;碳吸收与植被吸收的光之比)变异性,导致该生态系统受到关注。显然,需要进行更多的比较生态系统响应的研究。此外,就像受多个因素影响的任何2波段指数一样,PRI的解释很容易被多个环境变量所混淆,因此需要进一步的工作来理解和约束这些影响。尽管存在这些局限性,但本综述显示了RUE-PRI关系的新兴一致性,表明影响叶,冠层和生态系统碳吸收效率的生化,生理和结构成分的功能收敛程度令人惊讶。在所有研究类型的植被中,PRI分别以叶片,冠层和生态系统各自水平的RUE变异性分别占42%,59%和62%。因此,PRI似乎可以通过补充类似于NDVI指数的植被(FPAR)所截获的光合有效辐射的比例的估算值,来改善对来自世界各地的叶片,冠层和许多生态系统中碳通量的评估。地面,机载和卫星传感器。

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