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Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants

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dc.contributor.author Newete, SW
dc.contributor.author Erasmus, BFN
dc.contributor.author Weiersbye, IM
dc.contributor.author Cho, Moses A
dc.contributor.author Byrne, MJ
dc.date.accessioned 2014-06-17T10:26:32Z
dc.date.available 2014-06-17T10:26:32Z
dc.date.issued 2014
dc.identifier.citation Newete, S.W., Erasmus, B.F.N., Weiersbye, I.M., Cho, M.A. and Byrne, M.J. 2014. Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants. International Journal of Remote Sensing, vol. 35(3), pp 799-817 en_US
dc.identifier.issn 0143-1161
dc.identifier.uri http://www.tandfonline.com/doi/pdf/10.1080/01431161.2013.873145
dc.identifier.uri http://hdl.handle.net/10204/7455
dc.description Copyright: 2013 Taylor& Francis. This is the pre/post print version of the work. The definitive version is published in International Journal of Remote Sensing, vol. 35(3), pp 799-817 en_US
dc.description.abstract Spectral signatures of water hyacinth grown with biocontrol agents (Neochetina eichornia and N. bruchi) and various heavy metal pollutants were collected at the plant canopy level using a hand-held spectrometer to detect biocontrol agent and heavy metal-induced plant stresses and the interaction between the two stressors. Water hyacinth was grown in 65L tubs, each with a single treatment, from one of; As (1 mg/L), Au (1 mg/L), Cu (2 mg/L), Fe (0.5, 2 and 4 mg/L), Hg (1 mg/L), Mn (0.5, 2 and 4 mg/L), U (1 mg/L) and Zn (4 mg/L), with the exception of the control treatment. Spectral measurements were taken before and after the addition of the weevils. Several spectral indicators of plant stress including RE_NDVI, mNDVI705, mSR, PRI, red-edge position (REP) calculated using first derivative and linear extrapolation and WBI (to detect water stress) were used to identify biotic and abiotic induced plant stresses of water hyacinth. The spectral indicators of both metal and weevil plant stressors were correlated with the leaf chlorophyll content from the SPAD readings at the end of the experiment. Correlation results of mNDVI(sub705) was the highest followed by REP_LE. Cu-, Hg-, and Zn-treated plants showed significantly lower chlorophyll contents compared with the control treatment. A similar trend with four additional treatments (As, Fe-M, Mn-L and Mn- H) was seen after the release of the weevils, indicating plant stress due to feeding by the biocontrol agent. These results indicate that hyperspectral remote sensing has potential as a tool to determine the health status of water hyacinth from a remote location, to inform management interventions in the control of the weed. However, its usage at a larger scape requires further studies. en_US
dc.language.iso en en_US
dc.publisher Taylor & Francis en_US
dc.relation.ispartofseries Workflow;12827
dc.subject Spectral signatures en_US
dc.subject Neochetina eichornia en_US
dc.subject N. bruchi en_US
dc.subject Heavy metal pollutants en_US
dc.subject Hyperspectral reflectance en_US
dc.subject Water hyacinth en_US
dc.title Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants en_US
dc.type Article en_US
dc.identifier.apacitation Newete, S., Erasmus, B., Weiersbye, I., Cho, M. A., & Byrne, M. (2014). Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants. http://hdl.handle.net/10204/7455 en_ZA
dc.identifier.chicagocitation Newete, SW, BFN Erasmus, IM Weiersbye, Moses A Cho, and MJ Byrne "Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants." (2014) http://hdl.handle.net/10204/7455 en_ZA
dc.identifier.vancouvercitation Newete S, Erasmus B, Weiersbye I, Cho MA, Byrne M. Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants. 2014; http://hdl.handle.net/10204/7455. en_ZA
dc.identifier.ris TY - Article AU - Newete, SW AU - Erasmus, BFN AU - Weiersbye, IM AU - Cho, Moses A AU - Byrne, MJ AB - Spectral signatures of water hyacinth grown with biocontrol agents (Neochetina eichornia and N. bruchi) and various heavy metal pollutants were collected at the plant canopy level using a hand-held spectrometer to detect biocontrol agent and heavy metal-induced plant stresses and the interaction between the two stressors. Water hyacinth was grown in 65L tubs, each with a single treatment, from one of; As (1 mg/L), Au (1 mg/L), Cu (2 mg/L), Fe (0.5, 2 and 4 mg/L), Hg (1 mg/L), Mn (0.5, 2 and 4 mg/L), U (1 mg/L) and Zn (4 mg/L), with the exception of the control treatment. Spectral measurements were taken before and after the addition of the weevils. Several spectral indicators of plant stress including RE_NDVI, mNDVI705, mSR, PRI, red-edge position (REP) calculated using first derivative and linear extrapolation and WBI (to detect water stress) were used to identify biotic and abiotic induced plant stresses of water hyacinth. The spectral indicators of both metal and weevil plant stressors were correlated with the leaf chlorophyll content from the SPAD readings at the end of the experiment. Correlation results of mNDVI(sub705) was the highest followed by REP_LE. Cu-, Hg-, and Zn-treated plants showed significantly lower chlorophyll contents compared with the control treatment. A similar trend with four additional treatments (As, Fe-M, Mn-L and Mn- H) was seen after the release of the weevils, indicating plant stress due to feeding by the biocontrol agent. These results indicate that hyperspectral remote sensing has potential as a tool to determine the health status of water hyacinth from a remote location, to inform management interventions in the control of the weed. However, its usage at a larger scape requires further studies. DA - 2014 DB - ResearchSpace DP - CSIR KW - Spectral signatures KW - Neochetina eichornia KW - N. bruchi KW - Heavy metal pollutants KW - Hyperspectral reflectance KW - Water hyacinth LK - https://researchspace.csir.co.za PY - 2014 SM - 0143-1161 T1 - Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants TI - Hyperspectral reflectance features of water hyacinth growing under feeding stresses of Neochetina spp. and different heavy metal pollutants UR - http://hdl.handle.net/10204/7455 ER - en_ZA


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