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Spectrally-based quantification of plant heavy metal-induced stress

机译:植物重金属诱导应力的光谱定量

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Recent developments in environmental studies are greatly related to worldwide ecological problems associated with anthropogenic impacts on the biosphere and first of all on vegetation. Modern remote sensing technologies are involved in numerous ecology-related investigations dealing with problems of global importance, such as ecosystems preservation and biodiversity conservation. Agricultural lands are subjected to enormous pressure and their monitoring and assessment have become an important ecological issue. In agriculture, remote sensing is widely used for assessing plant growth, health condition, and detection of stress situations. Heavy metals constitute a group of environmentally hazardous substances whose deposition in soils and uptake by species affect soil fertility, plant development and productivity. This paper is devoted to the study of the impact of heavy metal contamination on the performance of agricultural species. The ability of different spectral indicators to detect heavy metal-induced stress in plants is examined and illustrated. Empirical relationships have been established between the pollutant concentration and plant growth variables and spectral response. This allows not only detection but quantification of the stress impact on plant performance.
机译:环境研究的最新发展与与对生物圈的人为影响有关的全球生态问题,首先是植被。现代遥感技术涉及众多与生态相关的调查,处理全球重要性问题,例如生态系统保存和生物多样性保护。农业土地受到巨大压力,其监测和评估已成为一个重要的生态问题。在农业中,遥感广泛用于评估植物生长,健康状况和对压力情况的检测。重金属构成一组无害环境危害物质,其沉积在土壤和摄取因物种影响土壤肥力,植物开发和生产力。本文致力于研究重金属污染对农业物种性能的影响。检查和说明不同光谱指示检测植物中重金属诱导应力的能力。在污染物浓度和植物生长变量和光谱反应之间建立了经验关系。这不仅允许检测,而是对植物性能的应力影响的量化。

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