Factors Influencing Aster Leafhopper (Hemiptera: Cicadellidae) Abundance and Aster Yellows Phytoplasma Infectivity in Wisconsin Carrot Fields
In Wisconsin, vegetable crops are threatened annually by infection of the aster yellows phytoplasma (AYp), the causal agent of aster yellows (AY) disease, vectored by the aster leafhopper, Macrosteles quadrilineatus Forbes. Aster leafhopper abundance and infectivity are influenced by processes opera...
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Published in: | Environmental entomology Vol. 42; no. 3; pp. 477 - 490 |
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Main Authors: | , , , , |
Format: | Journal Article |
Language: | English |
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Lanham, MD
Entomological Society of America
01-06-2013
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Abstract | In Wisconsin, vegetable crops are threatened annually by infection of the aster yellows phytoplasma (AYp), the causal agent of aster yellows (AY) disease, vectored by the aster leafhopper, Macrosteles quadrilineatus Forbes. Aster leafhopper abundance and infectivity are influenced by processes operating across different temporal and spatial scales. We applied a multilevel modeling approach to partition variance in multifield, multiyear, pest scouting data sets containing temporal and spatial covariates associated with aster leafhopper abundance and infectivity. Our intent was to evaluate the relative importance of temporal and spatial covariates to infer the relevant scale at which ecological processes are driving AY epidemics and identify periods of elevated risk for AYp spread. The relative amount of aster leafhopper variability among and within years (39%) exceeded estimates of variation among farm locations and fields (7%). Similarly, time covariates explained the largest amount of variation of aster leafhopper infectivity (50%). Leafhopper abundance has been decreasing since 2001 and reached its minimum in 2010. The average seasonal pattern indicated that periods of above average abundance occurred between 11 June and 1 August. Annual infectivity appears to oscillate around an average value of 2% and seasonal periods of above average infectivity occur between 19 May and 15 July. The coincidence of the expected periods of high leafhopper abundance and infectivity increases our knowledge of when the insect moves into susceptible crop fields and when it spreads the pathogen to susceptible crops, representing a seasonal interval during which management of the insect can be focused. |
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AbstractList | In Wisconsin, vegetable crops are threatened annually by infection of the aster yellows phytoplasma (AYp), the causal agent of aster yellows (AY) disease, vectored by the aster leafhopper, Macrosteles quadrilineatus Forbes. Aster leafhopper abundance and infectivity are influenced by processes operating across different temporal and spatial scales. We applied a multilevel modeling approach to partition variance in multifield, multiyear, pest scouting data sets containing temporal and spatial covariates associated with aster leafhopper abundance and infectivity. Our intent was to evaluate the relative importance of temporal and spatial covariates to infer the relevant scale at which ecological processes are driving AY epidemics and identify periods of elevated risk for AYp spread. The relative amount of aster leafhopper variability among and within years (39%) exceeded estimates of variation among farm locations and fields (7%). Similarly, time covariates explained the largest amount of variation of aster leafhopper infectivity (50%). Leafhopper abundance has been decreasing since 2001 and reached its minimum in 2010. The average seasonal pattern indicated that periods of above average abundance occurred between 11 June and 1 August. Annual infectivity appears to oscillate around an average value of 2% and seasonal periods of above average infectivity occur between 19 May and 15 July. The coincidence of the expected periods of high leafhopper abundance and infectivity increases our knowledge of when the insect moves into susceptible crop fields and when it spreads the pathogen to susceptible crops, representing a seasonal interval during which management of the insect can be focused. |
Author | Kotolski, L Groves, R. L Esker, P. D Haren, R. Van Frost, K. E |
Author_xml | – sequence: 1 givenname: K. E surname: Frost fullname: Frost, K. E organization: Department of Plant Pathology, University of Wisconsin-Madison, 1630 Linden Drive, Madison, WI 53706 – sequence: 2 givenname: P. D surname: Esker fullname: Esker, P. D organization: Centro de Investigaciones en Protección de Cultivos, Universidad de Costa Rica, San José, Costa Rica – sequence: 3 givenname: R. Van surname: Haren fullname: Haren, R. Van organization: Pest Pros, Inc., Plainfield, WI 54966 – sequence: 4 givenname: L surname: Kotolski fullname: Kotolski, L organization: Pest Pros, Inc., Plainfield, WI 54966 – sequence: 5 givenname: R. L surname: Groves fullname: Groves, R. L |
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CitedBy_id | crossref_primary_10_1603_EN12240 crossref_primary_10_1016_j_cropro_2018_11_015 crossref_primary_10_1093_jee_toab127 crossref_primary_10_3389_fpls_2016_00885 crossref_primary_10_1016_j_cell_2021_08_029 crossref_primary_10_1146_annurev_ento_031616_035444 crossref_primary_10_1371_journal_pone_0227726 |
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Keywords | variance component analysis Daucus carota Insecta Animal migration Mollicutes Pest Homoptera Dicotyledones Infectivity Angiospermae Bacteria Phytoplasma Variance analysis aster yellows phytoplasma insect migration aster yellows Cicadomorpha Macrosteles quadrilineatus Vegetable crop Arthropoda Spermatophyta Umbelliferae Invertebrata Cicadellidae Population density |
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Snippet | In Wisconsin, vegetable crops are threatened annually by infection of the aster yellows phytoplasma (AYp), the causal agent of aster yellows (AY) disease,... |
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SubjectTerms | Animals aster yellows Aster yellows phytoplasma Biological and medical sciences carrots data collection Daucus carota - growth & development Daucus carota - microbiology disease outbreaks farms Fundamental and applied biological sciences. Psychology Geography Hemiptera Hemiptera - microbiology Hemiptera - physiology insect control insect migration insects Macrosteles quadrilineatus Models, Biological pathogenicity pathogens pests Phytopathology. Animal pests. Plant and forest protection Phytoplasma - physiology Plant Diseases - microbiology PLANT-INSECT INTERACTIONS Poisson Distribution Population Dynamics Protozoa. Invertebrates Records, symptoms, damages, economic importance, population surveys risk seasonal variation Seasons variance variance component analysis vegetable crops Wisconsin |
Title | Factors Influencing Aster Leafhopper (Hemiptera: Cicadellidae) Abundance and Aster Yellows Phytoplasma Infectivity in Wisconsin Carrot Fields |
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