Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis
The rugose spiraling whitefly (RSW), Aleurodicus rugioperculatus Martin is a new invasive pest occurring in several crops including coconut since 2016 in India from Tamil Nadu, Karnataka, Kerala and Andhra Pradesh. The population dynamics of new invasive whitefly species, A. rugioperculatus study...
| Published in: | Journal of Agrometeorology |
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| Main Authors: | , , |
| Format: | Article |
| Language: | English |
| Published: |
Association of agrometeorologists
2021-06-01
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| Subjects: | |
| Online Access: | https://journal.agrimetassociation.org/index.php/jam/article/view/67 |
| _version_ | 1850375382625157120 |
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| author | K.ELANGO S. JEYARAJAN NELSON P.DINESHKUMAR |
| author_facet | K.ELANGO S. JEYARAJAN NELSON P.DINESHKUMAR |
| author_sort | K.ELANGO |
| collection | DOAJ |
| container_title | Journal of Agrometeorology |
| description |
The rugose spiraling whitefly (RSW), Aleurodicus rugioperculatus Martin is a new invasive pest occurring in several crops including coconut since 2016 in India from Tamil Nadu, Karnataka, Kerala and Andhra Pradesh. The population dynamics of new invasive whitefly species, A. rugioperculatus study indicated that RSW was found throughout the year on coconut and the observation recorded on weekly interval basis shows that A. rugioperculatus population escalated from the first week of July 2018 (130.8 nymph/ leaf/ frond) reaching the maximum during the first week of October (161.0 nymph/ leaf/ frond) which subsequently dwindled to a minimum during April. Due to variation in the agro-climatic conditions of different regions, arthropods show varying trends in their incidence also in nature and extent of damage to the crop. Influence of weather parameters on rugose spiralling whitefly incidence is lacking, which is essential for developing management strategies. The forecasting model to predict rugose spiralling whitefly incidence in coconut was developed by ARIMAX model of weekly cases and weather factors. In exploring different prediction models by fitting covariates to the time series data, ARIMA (0,2,1) with Maximum temperature was found best model for predicting the rugose spiralling whitefly incidence and all covariates were found non-significant predictors except maximum temperature.
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| format | Article |
| id | doaj-art-e534da0777bc406fa53c4319ffd79dcb |
| institution | Directory of Open Access Journals |
| issn | 0972-1665 2583-2980 |
| language | English |
| publishDate | 2021-06-01 |
| publisher | Association of agrometeorologists |
| record_format | Article |
| spelling | doaj-art-e534da0777bc406fa53c4319ffd79dcb2025-08-19T22:59:35ZengAssociation of agrometeorologistsJournal of Agrometeorology0972-16652583-29802021-06-0123210.54386/jam.v23i2.67Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysisK.ELANGO0S. JEYARAJAN NELSON1P.DINESHKUMAR2Department of Agricultural Entomology, TNAU, Coimbatore, IndiaDepartment of Agricultural Entomology, TNAU, Coimbatore, IndiaDepartment of Agricultural statistics, BCKV, Mohanpur, India The rugose spiraling whitefly (RSW), Aleurodicus rugioperculatus Martin is a new invasive pest occurring in several crops including coconut since 2016 in India from Tamil Nadu, Karnataka, Kerala and Andhra Pradesh. The population dynamics of new invasive whitefly species, A. rugioperculatus study indicated that RSW was found throughout the year on coconut and the observation recorded on weekly interval basis shows that A. rugioperculatus population escalated from the first week of July 2018 (130.8 nymph/ leaf/ frond) reaching the maximum during the first week of October (161.0 nymph/ leaf/ frond) which subsequently dwindled to a minimum during April. Due to variation in the agro-climatic conditions of different regions, arthropods show varying trends in their incidence also in nature and extent of damage to the crop. Influence of weather parameters on rugose spiralling whitefly incidence is lacking, which is essential for developing management strategies. The forecasting model to predict rugose spiralling whitefly incidence in coconut was developed by ARIMAX model of weekly cases and weather factors. In exploring different prediction models by fitting covariates to the time series data, ARIMA (0,2,1) with Maximum temperature was found best model for predicting the rugose spiralling whitefly incidence and all covariates were found non-significant predictors except maximum temperature. https://journal.agrimetassociation.org/index.php/jam/article/view/67Aleurodicus rugioperculatusARIMAX,coconutincidence forecasting |
| spellingShingle | K.ELANGO S. JEYARAJAN NELSON P.DINESHKUMAR Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis Aleurodicus rugioperculatus ARIMAX, coconut incidence forecasting |
| title | Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis |
| title_full | Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis |
| title_fullStr | Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis |
| title_full_unstemmed | Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis |
| title_short | Incidence forecasting of new invasive pest of coconut rugose spiraling whitefly (Aleurodicus rugioperculatus) in India using ARIMAX analysis |
| title_sort | incidence forecasting of new invasive pest of coconut rugose spiraling whitefly aleurodicus rugioperculatus in india using arimax analysis |
| topic | Aleurodicus rugioperculatus ARIMAX, coconut incidence forecasting |
| url | https://journal.agrimetassociation.org/index.php/jam/article/view/67 |
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