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Push-pull cropping system positively impacts diversity and abundance of springtails (Hexapoda: Collembola) as bioindicators of soil health

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dc.contributor.author Daniel, Munyao Mutyambai
dc.contributor.author Johnstone, Mutiso Mutua
dc.contributor.author Abdul, A. Jalloh
dc.contributor.author Saliou, Niassy
dc.contributor.author Thomas, Dubois
dc.contributor.author Zeyaur, Khan
dc.contributor.author Sevgan, Subramanian
dc.date.accessioned 2025-01-29T08:21:11Z
dc.date.available 2025-01-29T08:21:11Z
dc.date.issued 2024
dc.identifier.uri http://hdl.handle.net/20.500.12562/2045
dc.description publication en_US
dc.description.abstract Crop cultivation positively or negatively impacts soil biodiversity and associated ecological services. The push-pull technology (PPT), a climate-smart cereal-Desmodium spp.-Brachiaria spp. Companion cropping system, is known for providing nature-based solutions for pest and soil fertility challenges and has been practiced in sub-Saharan smallholder farmer fields for more than two decades. However, the extent to which this cropping system affects soil arthropod biodiversity in general and Collembola in particular is not well known. This study assessed the long-term effects of PPT on soil physicochemical properties, abundance, and diversity of Collembola communities, and soil biological quality (QBS) as indicators of soil health. Soil was collected from five maize monoculture and five push-pull smallholder farmer fields in western Kenya. Soil physicochemical properties were analysed using Walkley-Black and Bouyoucos hygrometer method. Collembola abundance and diversity were assessed following the Berlese funnel extraction method and morphological identification. Soil health was evaluated using a Collembola-based soil biological quality (QBS-c) index. Soil physicochemical properties significantly differed between push-pull and maize monoculture fields, with push-pull soils being less acidic, and having higher quantities of nitrogen and carbon. Compared to monoculture, push-pull soils had significantly higher number and diversity of Collembola, and QBS-c index values. Significant positive correlations were observed between Collembola abundance and soil pH, nitrogen, carbon, phosphorous, and electrical conductivity. This study provides experimental evidence that crop diversification through a push-pull cropping system soil legacies positively impacts Collembola abundance and diversity, serving as bioindicator of healthy soils. en_US
dc.description.sponsorship European Union USAID Swiss Agency for Development and Cooperation (SDC) Swedish International Development Cooperation Agency (Sida) Australian Centre for International Agricultural Research (ACIAR) Norwegian Agency for Development Cooperation (Norad) German Federal Ministry for Economic Cooperation and Development (BMZ) Government of the Republic of Kenya German Academic Exchange Service (DAAD) African Regional Postgraduate Programme in Insect Science (ARPPIS) en_US
dc.publisher European Journal of Soil Biology en_US
dc.rights Attribution-NonCommercial-ShareAlike 3.0 United States *
dc.rights.uri http://creativecommons.org/licenses/by-nc-sa/3.0/us/ *
dc.subject Agroecosystem en_US
dc.subject Collembola en_US
dc.subject Mesofauna en_US
dc.subject push-pull technology en_US
dc.subject Soil health en_US
dc.title Push-pull cropping system positively impacts diversity and abundance of springtails (Hexapoda: Collembola) as bioindicators of soil health en_US
dc.type Article en_US


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