Abstract

The European Mediterranean regions are expected to encounter drier summer conditions and warmer temperatures for the winter of +2°C and of +5°C for the summer in the next six decennia. As a result the natural vegetation will face harsher conditions due to lower water availability, longer summer droughts and higher temperatures resulting in plant stress conditions. To monitor vegetation conditions like stress and leaf area index dynamics in our study area in Mediterranean France we use earth observation techniques like imaging spectroscopy. To assist image analysis interpretation we carried out a laboratory experiment to investigate the spectral and visible response of Buxus sempervirens, a common Mediterranean species, to five different types of stress: drought, drought-and-heat, light deprivation, total saturation and chlorine poisoning. For 52days plants were subjected to stress. We collected data on the visible and spectral signs, and calculated thirteen vegetation indices. The plant’s response time to different stress types varied from 10 to 32days. Spectroscopic techniques revealed plant stress up to 15days earlier than visual inspection. Visible signs of stress of the plants included curling and shrinking of the leaves, de-colouring of the leaves, leaves becoming breakable, opening up of the plant’s canopy and sagging of the branches. Spectral signs of stress occurred first in the water absorption bands at 1450 and 1940nm, followed by reduced absorption in the visible wavelengths, and next by reduced reflectance in near infrared. Light deprivation did not result in any stress signs, while drought, drought and heat and chlorine poisoning resulted in significant stress. The spectral response did not show differences for different stress types. Analysis of the vegetation indices identified the Carter-2 (R695/R760), the Red–Green Index (R690/R550) and the Vogelman-2 (R734−R747)/(R715+R726) as the best performing ones to identify stress. The lab experiment shows that spectroscopic techniques are useful to detect stress status of plants and in an earlier stage than visible signs of stress become apparent, but that spectroscopy does not reveal the type of plant stress.

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