Determining the water status of Satsuma mandarin trees [Citrus Unshiu Marcovitch] using spectral indices and by combining hyperspectral and physiological data

2010 ◽  
Vol 150 (3) ◽  
pp. 369-379 ◽  
Author(s):  
S. Dzikiti ◽  
J.S. Verreynne ◽  
J. Stuckens ◽  
A. Strever ◽  
W.W. Verstraeten ◽  
...  
2004 ◽  
Vol 102 (3) ◽  
pp. 295-300 ◽  
Author(s):  
Yoshimi Yonemoto ◽  
Kazunori Matsumoto ◽  
Tadashi Furukawa ◽  
Masaaki Asakawa ◽  
Hitoshi Okuda ◽  
...  

2017 ◽  
Vol 86 (3) ◽  
pp. 305-310 ◽  
Author(s):  
Fumie Nishikawa ◽  
Mitsunori Iwasaki ◽  
Hiroshi Fukamachi ◽  
Tomoko Endo

1995 ◽  
Vol 120 (2) ◽  
pp. 222-227 ◽  
Author(s):  
A. Garcia-Luis ◽  
F. Fornes ◽  
J.L. Guardiola

The carbohydrate contents of the leaves of satsuma mandarin (Citrus unshiu Marc.) trees were altered before or during the low temperature flower induction period to determine the relationship between gross levels of carbohydrates and flower formation. Early removal of the fruit and girdling of the branches on either fruiting or defruited trees caused an accumulation of carbohydrates in the leaves and increased flower formation. Shading the trees resulted in a transient reduction in leaf carbohydrate levels and in a decrease in flower formation. Although a relationship between carbohydrate levels and flowering was consistently found, our results show that the gross levels of carbohydrates do not appear to limit flower formation in citrus.


Author(s):  
Kelly Easterday ◽  
Chippie Kislik ◽  
Tod E. Dawson ◽  
Sean Hogan ◽  
Maggi Kelly

Unmanned aerial vehicles (UAVs) equipped with multispectral sensors present an opportunity to monitor vegetation with on-demand high spatial and temporal resolution. In this study, we use multispectral imagery from quadcopter UAVs to monitor the progression of a water manipulation experiment on a common shrub, Baccharis pilularis (coyote brush), at the Blue Oak Ranch Reserve (BORR) near San Jose, California. We recorded multispectral data from the plants at several altitudes with nearly hourly intervals to explore the relationship between two common spectral indices, NDVI and NDRE, and plant water content and water potential, as physiological metrics of plant water status, across a gradient of water deficit. An examination of the spatial and temporal thresholds at which water limitations were most detectable revealed that the best separation between levels of water deficit were at higher resolution (lower flying height), and in the morning (NDVI) and early morning (NDRE). We found that both measures were able to identify moisture deficit in plants and distinguish them from control and watered plants; however, NDVI was better able to distinguish between treatments than NDRE and was more positively correlated with field measurements of plant water content than NDRE. Finally, we explored how relationships between spectral indices and water status changed when the imagery was scaled to courser resolutions provided by satellite-based imagery (PlanetScope) and found that PlanetScope data was able to capture the overall trend in treatments but was not able to capture subtle changes in water content. These kinds of experiments that evaluate the relationship between direct field measurements and UAV camera sensitivity are needed to enable translation of field-based physiology measurements to landscape or regional scales.


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