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Relationship of root zone soil moisture with solar-induced chlorophyll fluorescence and vegetation indices in winter wheat: A comparative study based on continuous ground-measurements

机译:冬小麦根区土壤水分与太阳诱导的叶绿素荧光和植被指数的关系:基于连续地面测量的比较研究

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摘要

Root zone soil moisture is a critical component in the interaction between the hydrosphere, atmosphere, and biosphere. Optical reflectance of the vegetation canopy could provide abundant information about plant function and therefore has been used to detect the root zone soil moisture over large areas. Solar-induced chlorophyll fluorescence (SIF) is another signal with close ties to photosynthesis; however, its detailed relationship with soil moisture at different depths within the root zone has not been reported. In particular, little is known about the difference between SIF and reflectance-based vegetation indices (VIs) in responding to lag root zone soil moisture. In this study, we presented continuous ground measurements of VIs and SIF at 760 nm over four plots of wheat with different irrigation treatments. Results showed that both SIF and VIs positively and significantly correlated with root zone soil moisture, but with different lag responses to soil moisture changes at various depths. Their relationships also varied with the development of vegetation as well as with the status of soil moisture. Compared to VIs, SIF was still sensitive enough to measure vegetation variation even when the leaf area index or chlorophyll content was at high levels, suggesting that SIF was more feasible in root zone soil moisture monitoring over closure canopies.
机译:根区土壤水分是水圈,大气层和生物圈之间相互作用的关键组成部分。植被冠层的光反射率可以提供有关植物功能的大量信息,因此已被用于检测大面积根区土壤水分。太阳诱导的叶绿素荧光(SIF)是另一个与光合作用密切相关的信号。然而,尚未报道其与根区域内不同深度的土壤水分的详细关系。特别是,对于响应滞后根区土壤水分,SIF和基于反射的植被指数(VI)之间的差异知之甚少。在这项研究中,我们介绍了在四块不同灌溉处理条件下的小麦在760 nm处连续进行VI和SIF的地面测量。结果表明,SIF和VIs与根区土壤水分呈正相关,但在不同深度对土壤水分变化具有不同的滞后响应。它们之间的关系也随着植被的发展以及土壤水分的状况而变化。与VIs相比,即使在叶面积指数或叶绿素含量很高的情况下,SIF仍足以测量植被变化,这表明SIF在封盖的根区土壤水分监测中更可行。

著录项

  • 来源
    《Ecological indicators》 |2018年第7期|9-17|共9页
  • 作者单位

    Faculty of Geographical Science, Beijing Normal University;

    Department of Environmental Sciences, University of Virginia;

    Faculty of Geographical Science, Beijing Normal University;

    State Key Laboratory of Environment Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences;

    School of Geomatics and Urban Information, Beijing University of Civil Engineering and Architecture;

    Faculty of Geographical Science, Beijing Normal University;

    Faculty of Geographical Science, Beijing Normal University;

    Faculty of Geographical Science, Beijing Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Root zone soil moisture; SIF; Vegetation indices; NDVI; NDI; rNDI;

    机译:根区土壤水分;SIF;植被指数;NDVI;AND;rNDI;土壤水分;

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