Interactions between integrated pest management, pollinator supplementation, and normalized difference vegetation index in pumpkin, Cucurbita maxima (Cucurbitales: Cucurbitaceae), production

Author:

Waithaka Nduta A12ORCID,Kasina Muo2ORCID,Samita Namikoye E1ORCID,Guantai Mary M3,Omuse Evanson R4ORCID,Toukem Nadia K5ORCID,Lattorff H Michael G4ORCID,Abdel-Rahman Elfatih M4,Adan Marian4ORCID,Mohamed Samira A4,Dubois Thomas4

Affiliation:

1. Department of Agricultural Science and Technology, Kenyatta University , P.O. Box 43844-00100, Nairobi , Kenya

2. Apiculture and Beneficial Insects Research Institute (ABIRI), Kenya Agricultural and Livestock Research Organization (KALRO) , P.O. Box 32-30403, Marigat , Kenya

3. Kenya Plant Health Inspectorate Service (KEPHIS) , P.O. Box 19164-00501, Nairobi , Kenya

4. International Centre for Insect Physiology and Ecology (icipe) , P.O. Box 30772-00100, Nairobi , Kenya

5. Department of Zoology and Entomology, University of Pretoria , Hatfield, 0028 Pretoria , South Africa

Abstract

Abstract Sustainable production of pumpkin (Cucurbita maxima Duchesne) partly relies on integrated pest management (IPM) and pollination services. A farmer-managed field study was carried out in Yatta and Masinga Sub-Counties of Machakos County, Kenya, to determine the effectiveness of a recommended IPM package and its interaction with stingless bee colonies (Hypotrigona sp.) for pollinator supplementation (PS). The IPM package comprised Lynfield traps with cuelure laced with the organophosphate malathion, sprays of Metarhizium anisopliae (Mechnikoff) Sorokin isolate ICIPE 69, the most widely used fungal biopesticide in sub-Saharan Africa, and protein baits incorporating spinosad. Four treatments—IPM, PS, integrated pest and pollinator management (which combined IPM and PS), and control—were replicated 4 times. The experiment was conducted in 600 m2 farms in 2 normalized difference vegetation index (NDVI) classes during 2 growing seasons (October 2019–March 2020 and March–July 2020). Fruits showing signs of infestation were incubated for emergence, fruit fly trap catches were counted weekly, and physiologically mature fruits were harvested. There was no effect of IPM, PS, and NDVI on yield across seasons. This study revealed no synergistic effect between IPM and PS in suppressing Tephritid fruit fly population densities and damage. Hypotrigona sp. is not an efficient pollinator of pumpkin. Therefore, we recommend testing other African stingless bees in pumpkin production systems for better pollination services and improved yields.

Funder

German Federal Ministry of Economic Cooperation and Development

Deutsche Gesellschaft für Internationale Zusammenarbeit

International Agricultural Research

Norwegian Agency for Development Cooperation, the Section for Research, Innovation, and Higher Education

Swedish International Development Cooperation Agency

Swiss Agency for Development and Cooperation

Federal Democratic Republic of Ethiopia; and the Government of the Republic of Kenya

Government of the Republic of Kenya

Publisher

Oxford University Press (OUP)

Subject

Insect Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference73 articles.

1. Predicting stem borer density in maize using RapidEye data and generalized linear models;Abdel-Rahman;Int J Appl Earth Obs,2017

2. Use of earth observation satellite data to guide the implementation of integrated pest and pollinator management (IPPM) technologies in an avocado production system;Adan;Remote Sens Appl Soc Environ,2021

3. Biopesticide research and product development in Africa for sustainable agriculture and food security—experiences from the International Centre of Insect Physiology and Ecology (icipe);Akutse;Front Sustain Food Syst,2020

4. Agroecosystem resilience to an invasive insect species that could expand its geographical range in response to global climate change;Aluja;Agric Ecosyst Environ,2014

5. Review of pest status, economic impact and management of fruit-infesting flies (Diptera: Tephritidae) in Africa;Badii;Afr J Agric Res,2015

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