Examining the Utility of Visible Near-Infrared and Optical Remote Sensing for the Early Detection of Rapid ‘Ōhi‘a Death
Open Access
- 7 June 2020
- journal article
- research article
- Published by MDPI AG in Remote Sensing
- Vol. 12 (11) , 1846
- https://doi.org/10.3390/rs12111846
Abstract
The early detection of plant pathogens at the landscape scale holds great promise for better managing forest ecosystem threats. In Hawai‘i, two recently described fungal species are responsible for increasingly widespread mortality in ‘ōhi‘a Metrosideros polymorpha, a foundational tree species in Hawaiian native forests. In this study, we share work from repeat laboratory and field measurements to determine if visible near-infrared and optical remote sensing can detect pre-symptomatic trees infected with these pathogens. After generating a dense time series of laboratory spectral reflectance data and red green blue (RGB) images for inoculated ‘ōhi‘a seedlings, seedlings subjected to extreme drought, and control plants, we found few obvious spectral indicators that could be used for reliable pre-symptomatic detection in the inoculated seedlings, which quickly experienced complete and total wilting following stress onset. In the field, we found similar results when we collected repeat multispectral and RGB imagery over inoculated mature trees (sudden onset of symptoms with little advance warning). We found selected vegetation indices to be reliable indicators for detecting non-specific stress in ‘ōhi‘a trees, but never providing more than five days prior warning relative to visual detection in the laboratory trials. Finally, we generated a sequence of linear support vector machine classification models from the laboratory data at time steps ranging from pre-treatment to late-stage stress. Overall classification accuracies increased with stress stage maturity, but poor model performance prior to stress onset and the sudden onset of symptoms in infected trees suggest that early detection of rapid ‘ōhi‘a death over timescales helpful for land managers remains a challenge.Keywords
Funding Information
- National Science Foundation (1839095, 1828799)
- Hawaii Department of Land and Natural Resources (C83015)
- Conservation X Labs (ROD_01)
This publication has 69 references indexed in Scilit:
- Advancements in the Analysis of the Arabidopsis Plasma Membrane ProteomeFrontiers in Plant Science, 2013
- The xylem as battleground for plant hosts and vascular wilt pathogensFrontiers in Plant Science, 2013
- Early detection and classification of plant diseases with Support Vector Machines based on hyperspectral reflectanceComputers and Electronics in Agriculture, 2010
- Brightness-normalized Partial Least Squares Regression for hyperspectral dataJournal of Quantitative Spectroscopy and Radiative Transfer, 2010
- Verification of color vegetation indices for automated crop imaging applicationsComputers and Electronics in Agriculture, 2008
- Update on the environmental and economic costs associated with alien-invasive species in the United StatesEcological Economics, 2005
- Normalized spectral mixture analysis for monitoring urban composition using ETM+ imageryRemote Sensing of Environment, 2004
- Regulation of leaf life-span and nutrient-use efficiency of Metrosideros polymorpha trees at two extremes of a long chronosequence in HawaiiOecologia, 2001
- The use of the empirical line method to calibrate remotely sensed data to reflectanceInternational Journal of Remote Sensing, 1999
- Biophysics and Biochemistry of the Vascular Wilt SyndromeAnnual Review of Phytopathology, 1970