Life tables of Bactericera cockerelli in solanaceous crops

This technical report demonstrates that the development, survival, and reproductive capacity of Bactericera cockerelli are strongly dependent on the interaction between temperature and host plant. While Solanum nigrum acts as an unsuitable host (a potential biological barrier), sweet potato (Ipomoea...

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Main Authors: Panchi, N., Gamarra, H., Chicaiza, D., Carhuapoma, Pablo, Kreuze, Jan F.
Format: Informe técnico
Language:Inglés
Published: 2025
Subjects:
Online Access:https://hdl.handle.net/10568/180252
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author Panchi, N.
Gamarra, H.
Chicaiza, D.
Carhuapoma, Pablo
Kreuze, Jan F.
author_browse Carhuapoma, Pablo
Chicaiza, D.
Gamarra, H.
Kreuze, Jan F.
Panchi, N.
author_facet Panchi, N.
Gamarra, H.
Chicaiza, D.
Carhuapoma, Pablo
Kreuze, Jan F.
author_sort Panchi, N.
collection Repository of Agricultural Research Outputs (CGSpace)
description This technical report demonstrates that the development, survival, and reproductive capacity of Bactericera cockerelli are strongly dependent on the interaction between temperature and host plant. While Solanum nigrum acts as an unsuitable host (a potential biological barrier), sweet potato (Ipomoea batatas) and cape gooseberry (Physalis peruviana) allow the psyllid to complete its life cycle under fluctuating temperatures, which has critical implications for integrated pest management at the landscape scale. The study aligns strongly with Crop Protection, Climate-smart Agriculture, and Resilient Agrifood Systems, providing key evidence for managing the potato psyllid under climate change scenarios.
format Informe técnico
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institution CGIAR Consortium
language Inglés
publishDate 2025
publishDateRange 2025
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spelling CGSpace1802522026-01-21T20:39:25Z Life tables of Bactericera cockerelli in solanaceous crops Panchi, N. Gamarra, H. Chicaiza, D. Carhuapoma, Pablo Kreuze, Jan F. integrated pest management temperature effects This technical report demonstrates that the development, survival, and reproductive capacity of Bactericera cockerelli are strongly dependent on the interaction between temperature and host plant. While Solanum nigrum acts as an unsuitable host (a potential biological barrier), sweet potato (Ipomoea batatas) and cape gooseberry (Physalis peruviana) allow the psyllid to complete its life cycle under fluctuating temperatures, which has critical implications for integrated pest management at the landscape scale. The study aligns strongly with Crop Protection, Climate-smart Agriculture, and Resilient Agrifood Systems, providing key evidence for managing the potato psyllid under climate change scenarios. 2025-12 2026-01-20T21:59:58Z 2026-01-20T21:59:58Z Report https://hdl.handle.net/10568/180252 en Open Access application/pdf Panchi, N.; Gamarra, H.; Chicaiza, D.; Carhuapoma, P.; Kreuze, J. 2025. Life tables of Bactericera cockerelli in solanaceous crops. International Potato Center (CIP). https://doi.org/10.4160/cip.2025.12.018
spellingShingle integrated pest management
temperature effects
Panchi, N.
Gamarra, H.
Chicaiza, D.
Carhuapoma, Pablo
Kreuze, Jan F.
Life tables of Bactericera cockerelli in solanaceous crops
title Life tables of Bactericera cockerelli in solanaceous crops
title_full Life tables of Bactericera cockerelli in solanaceous crops
title_fullStr Life tables of Bactericera cockerelli in solanaceous crops
title_full_unstemmed Life tables of Bactericera cockerelli in solanaceous crops
title_short Life tables of Bactericera cockerelli in solanaceous crops
title_sort life tables of bactericera cockerelli in solanaceous crops
topic integrated pest management
temperature effects
url https://hdl.handle.net/10568/180252
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AT gamarrah lifetablesofbactericeracockerelliinsolanaceouscrops
AT chicaizad lifetablesofbactericeracockerelliinsolanaceouscrops
AT carhuapomapablo lifetablesofbactericeracockerelliinsolanaceouscrops
AT kreuzejanf lifetablesofbactericeracockerelliinsolanaceouscrops