首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Reflectance assessment of seasonal and annual changes in biomass and CO{sub}2 uptake of a Mediterranean shrubland submitted to experimental warming and drought
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Reflectance assessment of seasonal and annual changes in biomass and CO{sub}2 uptake of a Mediterranean shrubland submitted to experimental warming and drought

机译:经历实验性变暖和干旱的地中海灌木林生物量和CO {sub} 2吸收的季节性和年度变化的反射率评估

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We aimed to evaluate how the remote sensing vegetation indices NDVI and PRI responded to seasonal and annual changes in an early successional stage Mediterranean coastal shrubland canopy that was submitted to experimental warming and drought simulating predicted climate change for the next decades. These conditions were obtained by using a new non-intrusive methodological approach that increases the temperature and prolongs the drought period by using roofs that automatically cover the vegetation after the sunset or when it rains. On average, warming increased air temperature by 0.7℃ and soil temperature by 1.6℃, and the drought treatment reduced soil moisture by 22%. We measured spectral reflectance at the canopy level and at the individual plant level seasonally during 4 years. Shrubland NDVI tracked the community development and activity. In control and warming treatments, NDVI increased with the years while it did not change in the drought treatment. There was a good relationship between NDVI and both community and individual plant biomass. NDVI also decreased in summer seasons when some species dry or decolour. The NDVI of E. multiflora plant individuals was lower in autumn and winter than in the other seasons, likely because of flowering. Shrubland PRI decreased only in winter, similarly to the PRI of the most dominant species, G. alypum. At this community scale, NDVI was better related than PRI to photosynthetic activity, probably because photosynthetic fluxes followed canopy seasonal greening in this complex canopy, which includes brevideciduous, annual and evergreen species and variable morphologies and canopy coverage. PRI followed the seasonal variations in photosynthetic rates in E. multiflora and detected the decreased photosynthetic rates of drought treatment. However, PRI did not track the photosynthetic rates of G. alypum plants which have lower LAIs than E. multiflora. In this community, which is in its early successional stages, NDVI was able to track biomass, and indirectly, CO{sub}2 uptake changes, likely because LAI values did not saturate NDVI. Thus, NDVI appears as a valid tool for remote tracking of this community development. PRI was less adequate for photosynthetic assessment of this community especially for its lower LAI canopies. PRI usefulness was also species-dependent and could also be affected by flowering. These results will help to improve the interpretation of remote sensing information on the structure and physiological status of these Mediterranean shrublands, and to gain better insight on ecological and environmental controls on their ecosystem carbon dioxide exchange. They also show the possibility of assessing the impacts of climate change on shrubland communities.
机译:我们旨在评估遥感植被指数NDVI和PRI如何对地中海沿岸灌木林冠层演替初期的季节和年度变化做出响应,该冠层经历了未来几十年的模拟模拟气候变化的实验性变暖和干旱。这些条件是通过使用一种新的非侵入性方法学方法获得的,该方法通过使用在日落之后或下雨时自动覆盖植被的屋顶来提高温度并延长干旱时期。平均而言,气候变暖使气温升高0.7℃,土壤温度升高1.6℃,干旱处理使土壤水分减少22%。我们在4年中季节性地测量了冠层水平和单个植物水平的光谱反射率。灌木丛NDVI跟踪了社区的发展和活动。在控制和增温处理中,NDVI随年份增加,而在干旱处理中则没有变化。 NDVI与社区和个体植物生物量之间存在良好的关系。当某些物种干燥或脱色时,NDVI在夏季也会下降。秋季和冬季,E。multiflora植物个体的NDVI低于其他季节,这可能是由于开花所致。灌木丛的PRI仅在冬季下降,与最主要的物种G. alypum的PRI相似。在这个群落尺度上,NDVI与PRI的光合活性之间的关系更好,这可能是因为该复杂冠层中的光合通量跟随冠层的季节性绿化,其中包括落叶,一年生和常绿物种以及不同的形态和冠层覆盖度。 PRI跟踪了多花大肠杆菌光合速率的季节性变化,并检测到干旱处理的光合速率降低。但是,PRI并未追踪LAIs低于何首乌的G.alypum植物的光合速率。在这个处于接班初期的社区中,NDVI能够跟踪生物量,并间接跟踪CO {sub} 2的吸收变化,这可能是因为LAI值并未使NDVI饱和。因此,NDVI成为远程跟踪该社区发展的有效工具。 PRI不足以对该社区进行光合作用评估,尤其是其较低的LAI冠层。 PRI的用途也取决于物种,并且也可能受到开花的影响。这些结果将有助于改善有关这些地中海灌木林的结构和生理状况的遥感信息的解释,并有助于更好地了解生态系统二氧化碳交换的生态和环境控制。他们还显示了评估气候变化对灌木丛社区影响的可能性。

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