{"id":6,"date":"2020-12-04T10:24:26","date_gmt":"2020-12-04T10:24:26","guid":{"rendered":"https:\/\/www.plantagbiosciences.org\/people\/francesca-gugino\/?page_id=6"},"modified":"2021-08-31T15:54:00","modified_gmt":"2021-08-31T15:54:00","slug":"bibliography","status":"publish","type":"page","link":"https:\/\/www.plantagbiosciences.org\/people\/francesca-gugino\/bibliography\/","title":{"rendered":"Bibliography"},"content":{"rendered":"\n<h2 class=\"has-large-font-size wp-block-heading\">Thesis <\/h2>\n\n\n\n<p>ADAMTEY, N., MUSYOKA, M. W., ZUNDEL, C., COBO, J. G., KARANJA, E., FIABOE, K. K. M., MURIUKI, A., MUCHERU-MUNA, M., VANLAUWE, B., BERSET, E., MESSMER, M. M., GATTINGER, A., BHULLAR, G. S., CADISCH, G., FLIESSBACH, A., M\u00c4DER, P., NIGGLI, U. &amp; FOSTER, D. 2016. Productivity, profitability and partial nutrient balance in maize-based conventional and organic farming systems in Kenya. <em>Agriculture, Ecosystems &amp; Environment,<\/em> 235<strong>,<\/strong> 61-79.<\/p>\n\n\n\n<p>ADJEI-NSIAH, S., KUYPER, T. W., LEEUWIS, C., ABEKOE, M. K. &amp; GILLER, K. E. 2007. Evaluating sustainable and profitable cropping sequences with cassava and four legume crops: Effects on soil fertility and maize yields in the forest\/savannah transitional agro-ecological zone of Ghana. <em>Field Crops Research,<\/em> 103<strong>,<\/strong> 87-97.<\/p>\n\n\n\n<p>AMUDAVI, D. M., KHAN, Z. R., WANYAMA, J. M., MIDEGA, C. A. O., PITTCHAR, J., HASSANALI, A. &amp; PICKETT, J. A. 2009. Evaluation of farmers&#8217; field days as a dissemination tool for push-pull technology in Western Kenya. <em>Crop Protection,<\/em> 28<strong>,<\/strong> 225-235.<\/p>\n\n\n\n<p>BABENDREIER, D., WAN, M., TANG, R., GU, R., TAMBO, J., LIU, Z., GROSSRIEDER, M., KANSIIME, M., WOOD, A., ZHANG, F. &amp; ROMNEY, D. 2019. Impact Assessment of Biological Control-Based Integrated Pest Management in Rice and Maize in the Greater Mekong Subregion. <em>Insects,<\/em> 10.<\/p>\n\n\n\n<p>BELLAMY, A. S. 2010. Weed control practices on Costa Rican coffee farms: is herbicide use necessary for small-scale producers? <em>Agriculture and Human Values,<\/em> 28<strong>,<\/strong> 167-177.<\/p>\n\n\n\n<p>BUCKLES, D. &amp; TRIOMPHE, B. 1999. Adoption of mucuna in the farming systems of northern Honduras. <em>Agroforestry Systems,<\/em> 47<strong>,<\/strong> 67-91.<\/p>\n\n\n\n<p>CASTELLANOS-NAVARRETE, A., TITTONELL, P., RUFINO, M. C. &amp; GILLER, K. E. 2015. Feeding, crop residue and manure management for integrated soil fertility management \u2013 A case study from Kenya. <em>Agricultural Systems,<\/em> 134<strong>,<\/strong> 24-35.<\/p>\n\n\n\n<p>CHAPAGAIN, T., PUDASAINI, R., GHIMIRE, B., GURUNG, K., CHOI, K., RAI, L., MAGAR, S., BK, B. &amp; RAIZADA, M. N. 2018. Intercropping of maize, millet, mustard, wheat and ginger increased land productivity and potential economic returns for smallholder terrace farmers in Nepal. <em>Field Crops Research,<\/em> 227<strong>,<\/strong> 91-101.<\/p>\n\n\n\n<p>CHEPCHIRCHIR, R. T., MACHARIA, I., MURAGE, A. W., MIDEGA, C. A. O. &amp; KHAN, Z. R. 2017. Impact assessment of push-pull pest management on incomes, productivity and poverty among smallholder households in Eastern Uganda. <em>Food Security,<\/em> 9<strong>,<\/strong> 1359-1372.<\/p>\n\n\n\n<p>CONSTANTINE, K. L., KANSIIME, M. K., MUGAMBI, I., NUNDA, W., CHACHA, D., RWARE, H., MAKALE, F., MULEMA, J., LAMONTAGNE-GODWIN, J., WILLIAMS, F., EDGINGTON, S. &amp; DAY, R. 2020. Why don&#8217;t smallholder farmers in Kenya use more biopesticides? <em>Pest Manag Sci,<\/em> 76<strong>,<\/strong> 3615-3625.<\/p>\n\n\n\n<p>D&#8217;ANNOLFO, R., GEMMILL-HERREN, B., AMUDAVI, D., SHIRAKU, H. W., PIVA, M. &amp; GARIBALDI, L. A. 2020. The effects of agroecological farming systems on smallholder livelihoods: a case study on push\u2013pull system from Western Kenya. <em>International Journal of Agricultural Sustainability,<\/em> 19<strong>,<\/strong> 56-70.<\/p>\n\n\n\n<p>DANIEL, R., BORINES, L. M., SOGUILON, C., MONTIEL, C., PALERMO, V. G., GUADALQUIVER, G. A., PEDROSO, M., MARCELINO, R., DIONIO, B. T., JURUENA, M. H. &amp; GUEST, D. 2014. Development of disease management recommendations for the durian and jackfruit industries in the Philippines using farmer participatory research. <em>Food Security,<\/em> 6<strong>,<\/strong> 411-422.<\/p>\n\n\n\n<p>DANSO-ABBEAM, G. &amp; BAIYEGUNHI, L. J. S. 2018. Welfare impact of pesticides management practices among smallholder cocoa farmers in Ghana. <em>Technology in Society,<\/em> 54<strong>,<\/strong> 10-19.<\/p>\n\n\n\n<p>DO, V. H., LA, N., MULIA, R., BERGKVIST, G., DAHLIN, A. S., NGUYEN, V. T., PHAM, H. T. &amp; \u00d6BORN, I. 2020. Fruit Tree-Based Agroforestry Systems for Smallholder Farmers in Northwest Vietnam\u2014A Quantitative and Qualitative Assessment. <em>Land,<\/em> 9.<\/p>\n\n\n\n<p>DOWD-URIBE, B. 2014. Engineering yields and inequality? How institutions and agro-ecology shape Bt cotton outcomes in Burkina Faso. <em>Geoforum,<\/em> 53<strong>,<\/strong> 161-171.<\/p>\n\n\n\n<p>EKBOM, A., KNUTSSON, P. &amp; OVUKA, M. 2001. Is sustainable development based on agriculture attainable in Kenya? A multidisciplinary case study of Murang&#8217;a district. <em>Land Degradation &amp; Development,<\/em> 12<strong>,<\/strong> 435-447.<\/p>\n\n\n\n<p>ELISANTE, F., NDAKIDEMI, P. A., ARNOLD, S. E. J., BELMAIN, S. R., GURR, G. M., DARBYSHIRE, I., XIE, G., TUMBO, J. &amp; STEVENSON, P. C. 2019. Enhancing knowledge among smallholders on pollinators and supporting field margins for sustainable food security. <em>Journal of Rural Studies,<\/em> 70<strong>,<\/strong> 75-86.<\/p>\n\n\n\n<p>EPPER, C. A., PAUL, B., BURRA, D., PHENGSAVANH, P., RITZEMA, R., SYFONGXAY, C., GROOT, J. C. J., SIX, J., FROSSARD, E., OBERSON, A. &amp; DOUXCHAMPS, S. 2020. Nutrient flows and intensification options for smallholder farmers of the Lao uplands. <em>Agricultural Systems,<\/em> 177.<\/p>\n\n\n\n<p>FALCONNIER, G. N., DESCHEEMAEKER, K., TRAORE, B., BAYOKO, A. &amp; GILLER, K. E. 2018. 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Transforming food systems with agroecology. <em>Agroecology and Sustainable Food Systems,<\/em> 40<strong>,<\/strong> 187-189.<\/p>\n\n\n\n<p>GNAHOUA, J.-B. G., ETTIEN, D. J. B., N\u2019ZU\u00c9, B., DE NEVE, S. &amp; BOECKX, P. 2016. Assessment of low-input technologies to improve productivity of early harvested cassava in C\u00f4te d\u2019Ivoire. <em>Agroecology and Sustainable Food Systems,<\/em> 40<strong>,<\/strong> 941-964.<\/p>\n\n\n\n<p>HERNANDEZ-AGUILERA, J. N., G\u00d3MEZ, M. I., RODEWALD, A. D., RUEDA, X., ANUNU, C., BENNETT, R. &amp; VAN ES, H. M. 2018. Quality as a Driver of Sustainable Agricultural Value Chains: The Case of the Relationship Coffee Model. <em>Business Strategy and the Environment,<\/em> 27<strong>,<\/strong> 179-198.<\/p>\n\n\n\n<p>JJAGWE, J., CHELIMO, K., KARUNGI, J., KOMAKECH, A. J. &amp; LEDERER, J. 2020. Comparative Performance of Organic Fertilizers in Maize (Zea mays L.) Growth, Yield, and Economic Results. <em>Agronomy,<\/em> 10.<\/p>\n\n\n\n<p>KANSIIME, M. K., GIRLING, R. D., MUGAMBI, I., MULEMA, J., ODUOR, G., CHACHA, D., OUVRARD, D., KINUTHIA, W. &amp; GARRATT, M. P. D. 2020a. Rural livelihood diversity and its influence on the ecological intensification potential of smallholder farms in Kenya. <em>Food and Energy Security,<\/em> 10.<\/p>\n\n\n\n<p>KANSIIME, M. K., MUGAMBI, I., MIGIRO, L., OTIENO, W., OCHIENG, J. &amp; KHAMIS, M. I. 2020b. Farmer participation and motivation for repeat plant clinic use: Implications for delivery of plant health advice in Kenya. <em>Cogent Environmental Science,<\/em> 6.<\/p>\n\n\n\n<p>KASSIE, M., JABBAR, M. A., KASSA, B. &amp; SALEEM, M. A. M. 1999. Benefits of Integration of Cereals and Forage Legumes With and Without Crossbred Cows in Mixed Farms: An ex ante Analysis for Highland Ethiopia. <em>Journal of Sustainable Agriculture,<\/em> 14<strong>,<\/strong> 31-48.<\/p>\n\n\n\n<p>KC, K. B., PANT, L. P., FRASER, E. D. G., SHRESTHA, P. K., SHRESTHA, D. &amp; LAMA, A. 2015. Assessing links between crop diversity and food self-sufficiency in three agroecological regions of Nepal. <em>Regional Environmental Change,<\/em> 16<strong>,<\/strong> 1239-1251.<\/p>\n\n\n\n<p>KIPKOECH, A. K., MITH\u00d6FER, D., YABANN, W. K., MARITIM, H. K. &amp; SCHULTHESS, F. 2008. Assessing yield and efficiency implications of relying on parasitoids for control of cereal stemborers: The case of small-scale maize farmers in Kenya. <em>Crop Protection,<\/em> 27<strong>,<\/strong> 1318-1326.<\/p>\n\n\n\n<p>KOMAREK, A. M. &amp; MSANGI, S. 2019. Effect of changes in population density and crop productivity on farm households in Malawi. <em>Agricultural Economics,<\/em> 50<strong>,<\/strong> 615-628.<\/p>\n\n\n\n<p>LAMERS, J. P. A., BRUENTRUP, M. &amp; BUERKERT, A. 2015. Financial performance of fertilisation strategies for sustainable soil fertility management in Sudano-Sahelian West Africa 1: profitability of annual fertilisation strategies. <em>Nutrient Cycling in Agroecosystems,<\/em> 102<strong>,<\/strong> 137-148.<\/p>\n\n\n\n<p>LAWAL, A., OMOTESHO, O. &amp; ADEWUMI, M. 2010. Land use pattern and sustainability of food crop production in the Fadama of Southern Guinea Savanna of Nigeria. <em>African Journal of Agricultural Research,<\/em> 5.<\/p>\n\n\n\n<p>LIANG, K., YANG, T., ZHANG, S., ZHANG, J.-E., LUO, M., FU, L. &amp; ZHAO, B. 2016. Effects of intercropping rice and water spinach on net yields and pest control: an experiment in southern China. <em>International Journal of Agricultural Sustainability,<\/em> 14<strong>,<\/strong> 448-465.<\/p>\n\n\n\n<p>MAITHYA, J. M., KIMENYE, L. N., MUGIVANE, F. I. &amp; RAMISCH, J. J. 2006. Profitability of agro-forestry based soil fertility management technologies: the case of small holder food production in Western Kenya. <em>Nutrient Cycling in Agroecosystems,<\/em> 76<strong>,<\/strong> 355-367.<\/p>\n\n\n\n<p>MUNYULI, T., KALIMBA, Y., MULANGANE, E. K., MUKADI, T. T., ILUNGA, M. T. &amp; MUKENDI, R. T. 2017. Interaction of the fluctuation of the population density of sweet potato pests with changes in farming practices, climate and physical environments: A 11-year preliminary observation from South-Kivu Province, Eastern DRCongo. <em>Open Agriculture,<\/em> 2.<\/p>\n\n\n\n<p>MURAGE, A. W., MIDEGA, C. A. O., PITTCHAR, J. O., PICKETT, J. A. &amp; KHAN, Z. R. 2015a. Determinants of adoption of climate-smart push-pull technology for enhanced food security through integrated pest management in eastern Africa. <em>Food Security,<\/em> 7<strong>,<\/strong> 709-724.<\/p>\n\n\n\n<p>MURAGE, A. W., PITTCHAR, J. O., MIDEGA, C. A. O., ONYANGO, C. O. &amp; KHAN, Z. R. 2015b. Gender specific perceptions and adoption of the climate-smart push\u2013pull technology in eastern Africa. <em>Crop Protection,<\/em> 76<strong>,<\/strong> 83-91.<\/p>\n\n\n\n<p>MUTISYA, S., SAIDI, M., OPIYO, A., NGOUAJIO, M. &amp; MARTIN, T. 2016. Synergistic Effects of Agronet Covers and Companion Cropping on Reducing Whitefly Infestation and Improving Yield of Open Field-Grown Tomatoes. <em>Agronomy,<\/em> 6.<\/p>\n\n\n\n<p>NAHAR, N., UDDIN, M. M., DE JONG, P., STRUIK, P. C. &amp; STOMPH, T. J. 2020. Technical efficacy and practicability of mass trapping for insect control in Bangladesh. <em>Agronomy for Sustainable Development,<\/em> 40.<\/p>\n\n\n\n<p>NKHATA, W., SHIMELIS, H., MELIS, R., CHIRWA, R., MATHEW, I., SHAYANOWAKO, A. &amp; MZENGEZA, T. 2021. Assessment of smallholder farmers\u2019 awareness of bean fly (Ophiomyia spp.) and management practices in central and northern Malawi: Implications for resistance breeding. <em>Crop Protection,<\/em> 139.<\/p>\n\n\n\n<p>OELOFSE, M., H\u00d8GH-JENSEN, H., ABREU, L. S., ALMEIDA, G. F., HUI, Q. Y., SULTAN, T. &amp; DE NEERGAARD, A. 2010. Certified organic agriculture in China and Brazil: Market accessibility and outcomes following adoption. <em>Ecological Economics,<\/em> 69<strong>,<\/strong> 1785-1793.<\/p>\n\n\n\n<p>PANNEERSELVAM, P., HERMANSEN, J. E., HALBERG, N. &amp; ARTHANARI, P. M. 2014. Impact of large-scale organic conversion on food production and food security in two Indian states, Tamil Nadu and Madhya Pradesh. <em>Renewable Agriculture and Food Systems,<\/em> 30<strong>,<\/strong> 252-262.<\/p>\n\n\n\n<p>PAUDEL, S., SAH, L. P., DEVKOTA, M., POUDYAL, V., PRASAD, P. V. V. &amp; REYES, M. R. 2020. Conservation Agriculture and Integrated Pest Management Practices Improve Yield and Income while Reducing Labor, Pests, Diseases and Chemical Pesticide Use in Smallholder Vegetable Farms in Nepal. <em>Sustainability,<\/em> 12.<\/p>\n\n\n\n<p>REBAUDO, F. &amp; DANGLES, O. 2011. Coupled information diffusion&#8211;pest dynamics models predict delayed benefits of farmer cooperation in pest management programs. <em>PLoS Comput Biol,<\/em> 7<strong>,<\/strong> e1002222.<\/p>\n\n\n\n<p>ROMNEY, D. L., THORNE, P., LUKUYU, B. &amp; THORNTON, P. K. 2003. Maize as food and feed in intensive smallholder systems: management options for improved integration in mixed farming systems of east and southern Africa. <em>Field Crops Research,<\/em> 84<strong>,<\/strong> 159-168.<\/p>\n\n\n\n<p>SAUER, J. &amp; TCHALE, H. 2006. Alternative Soil Fertility Management Options in Malawi &#8211; An Economic Analysis. 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J. 2020. Potential economic and nutritional benefits of complex rice systems for small-scale farmers in West Sumatra, Indonesia. <em>Biological Agriculture &amp; Horticulture,<\/em> 37<strong>,<\/strong> 40-54.<\/p>\n\n\n\n<p>TANWAR, R., SINGH, S., SHARMA, O. P., KANWAR, V., MUKHERJEE, I. &amp; CHATTOPADHYAY, C. 2016. Large-scale IPM validation in Basmati rice (Oryza sativa) in Western Uttar Pradesh, India. <em>Indian Journal of Agricultural Sciences,<\/em> 86<strong>,<\/strong> 1063-1072.<\/p>\n\n\n\n<p>TERRAZAS, G. 2017. Organic production of native potato landrace \u201cpintaboca\u201d (Solanum stenotomum Juz. &amp; Bukasov) in Bolivia: experimenting planting times and cultivation strategies. <em>Revista Latinoamericana de la Papa,<\/em> 21<strong>,<\/strong> 22-38.<\/p>\n\n\n\n<p>VAN WIJK, M. T., TITTONELL, P., RUFINO, M. C., HERRERO, M., PACINI, C., RIDDER, N. D. &amp; GILLER, K. E. 2009. Identifying key entry-points for strategic management of smallholder farming systems in sub-Saharan Africa using the dynamic farm-scale simulation model NUANCES-FARMSIM. <em>Agricultural Systems,<\/em> 102<strong>,<\/strong> 89-101.<\/p>\n\n\n\n<p>WALD\u00c9N, P., OLLIKAINEN, M. &amp; KAHILUOTO, H. 2019. Carbon revenue in the profitability of agroforestry relative to monocultures. <em>Agroforestry Systems,<\/em> 94<strong>,<\/strong> 15-28.<\/p>\n\n\n\n<p>WANG, Y., WANG, Y. &amp; ZHU, Y. 2018. What could encourage farmers to choose non-chemical pest management? Evidence from apple growers on the Loess Plateau of China. <em>Crop Protection,<\/em> 114<strong>,<\/strong> 53-59.<\/p>\n\n\n\n<p>WOELCKE, J. 2006. Technological and policy options for sustainable agricultural intensification in eastern Uganda. <em>Agricultural Economics,<\/em> 34<strong>,<\/strong> 129-139.<\/p>\n\n\n\n<p>YANG, P., LI, K., SHI, S., XIA, J., GUO, R., LI, S. &amp; WANG, L. 2005. Impacts of transgenic Bt cotton and integrated pest management education on smallholder cotton farmers. <em>International Journal of Pest Management,<\/em> 51<strong>,<\/strong> 231-244.<\/p>\n\n\n\n<p>YAP, V. Y., NEERGAARD, A. &amp; BRUUN, T. B. 2016. \u2018To Adopt or not to Adopt?\u2019 Legume Adoption in Maize\u2010Based Systems of Northern Thailand: Constraints and Potentials. <em>Land Degradation &amp; Development,<\/em> 28<strong>,<\/strong> 731-741.<\/p>\n\n\n\n<p>ZINGORE, S., GONZ\u00c1LEZ-ESTRADA, E., DELVE, R. J., HERRERO, M., DIMES, J. P. &amp; GILLER, K. E. 2009. An integrated evaluation of strategies for enhancing productivity and profitability of resource-constrained smallholder farms in Zimbabwe. <em>Agricultural Systems,<\/em> 101<strong>,<\/strong> 57-68.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Thesis ADAMTEY, N., MUSYOKA, M. W., ZUNDEL, C., COBO, J. G., KARANJA, E., FIABOE, K. K. 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