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Effects of biopesticides extracted with a homemade solvent on stored maize protection

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Abass A .B., Ndunguru G., Mamiro P., Alenkhe B., Mlingi N., Bekunda M. (2014): Post-harvest food losses in a maize-based farming system of semi-arid savannah area of Tanzania. Journal of Stored Products Research. https://doi.org/10.1016/j.jspr.2013.12.004 Search in Google Scholar

Abass A.B., Fischler M., Schneider K., Daudi S., Gaspar A., Rüst J., Kabula E., Ndunguru G., Madulu D., Msola D. (2018): On-farm comparison of different postharvest storage technologies in a maize farming system of Tanzania Central Corridor. Journal of Stored Products Research 77: 55–65. https://doi.org/10.1016/j.jspr.2018.03.002 Search in Google Scholar

Abbott W.S. (1925): A method of computing the effectiveness of an insecticide. Journal of Economic Entomology 18: 265–267. https://doi.org/10.1093/jee/18.2.265a Search in Google Scholar

Affognon H., Mutungi C., Sanginga P., Borgemeister C. (2015): Unpacking post harvest losses in sub-Saharan Africa: a meta-analysis World Develop. 66: 49–68. https://doi.org/10.1016/j.worlddev.2014.08.002 Search in Google Scholar

Ahmad K., Adnan M., Khan M. A., Hussain Z., Junaid K., and Saleem N. (2015): Bioactive neem leaf powder enhances the shelf life of stored mungbean grains and extends protection from pulse beetle. Pakistan Journal of Weed Science Research 21: 71–81. https://doi.org/10.28941/pjwsr.v21i1.575 Search in Google Scholar

Ahmed S., Tabassum Mh., Hassan B. (2022): Evaluation of antitermite properties of wood extracts from Pongamia pinnata (L.) Pierre (Leguminosae) against subterranean termites An Acad Bras Cienc 94: e20190591 doi 10.1590/0001-3765202220190591 Search in Google Scholar

Akinbuluma M.D. (2020): Volatile oils from Cedrela odorata L. as protectants against Sitophilus zeamais (Coleoptera: Curculionidae). American Journal of Essential Oils and Natural Products 8: 20–24. Search in Google Scholar

Akob C.A., Ewete F.K. (2007): The efficacy of ashes of four locally used plant materials against Sitophilus zeamais (Coleoptera: Curculionidae) in Cameroon. International Journal of Tropical Insect Science 27: 21–26. https://doi.org/10.1017/S1742758407699615 Search in Google Scholar

Amoabeng B.W., Gurr G.M., Gitau C.W., Stevenson P.C. (2014): Cost: benefit analysis of botanical insecticide use in cabbage: implications for smallholder farmers in developing countries. Crop Protection 57: 71–76. https://doi.org/10.1016/j.cropro.2013.11.019 Search in Google Scholar

Appiah-Twumasi M., Donkoh S.A., Ansah I.G.K. (2020): Farmer innovations in financing smallholder maize production in Northern Ghana. Agricultural Finance Review 80: 421–436. https://doi.org/10.1108/AFR-05-2019-0059 Search in Google Scholar

Asogwa E.U., Osisanya E.O. (2003): The control of Sitophilus zeamais (Motsch) in stored maize using crude bark and wood extracts of Cedrela odorata (L. Kennedy) and Pirimiphos-methyl. Bioscience Research Communications 15: 134–139. Search in Google Scholar

Attia M.A., Wahba T.F., Shaarawy N., Moustafa F.I., Guedes R.N.C., Dewer Y. (2020): Stored grain pest prevalence and insecticide resistance in Egyptian populations of the red flour beetle Tribolium castaneum (Herbst) and the rice weevil Sitophilus oryzae (L.). Journal of Stored Products Research 87: 101611. https://doi.org/10.1016/j.jspr.2020.101611. Search in Google Scholar

Ayalew A.A. (2020): Insecticidal activity of Lantana camara extract oil on controlling maize grain weevils. Toxicology Research and Application 2020: 4. https://doi.org/10.5061/dryad.8kprr4xjf Search in Google Scholar

Baba G.O., Onu I., Adamu R.S., Utono I.M. (2020): Field bioefficacy of mahogany seed extract (Khaya senegalensis: Meliaceae, (desv.) a. Juss) for management of bollworm infestation on cotton in Zaria, Nigeria. Acta Entomology and Zoology 1: 31–36. https://doi.org/10.33545/27080013.2020.v1.i1a. Search in Google Scholar

Bai Y., Xiao S., Zhang Z., Zhang Y., Sun H., Zhang K., Wang X., Bai Z., Li C., Liu L. (2020): Melatonin improves the germination rate of cotton seeds under drought stress by opening pores in the seed coat. Peer Journal of Plant Biology 6: 8 e9450. https://doi.org/10.7717/peerj.9450 Search in Google Scholar

Bargmann T., Vandvi V., Måren I.E. (2014): Life after fire: smoke and ash as germination cues in ericads, herbs and graminoids of northern heathlands. Applied Vegetation Science 17: 670–679. https://doi.org/10.1111/avsc.12106 Search in Google Scholar

Bathla S., Jaidka M., Kaur R. (2019): Nutritive Value. In (Ed.), Maize – Production and Use. IntechOpen. https://doi.org/10.5772/intechopen.88963 Search in Google Scholar

Befikadu D. (2014): Factors affecting quality of grain stored in Ethiopian traditional storage structures and opportunities for improvement. International Journal of Sciences: Basic and Applied Research 18: 235–257. Search in Google Scholar

Bett P.K., Deng A.L., Ogendo J.O., Kariuki S.T., Kamatenesi-Mugisha M., Mihale J.M., Torto B. (2017): Residual contact toxicity and repellence of Cupressus lusitanica Miller and Eucalyptus saligna Smith essential oils against major stored product insect pests. Industrial Crops and Products 110: 65–74. https://doi.org/10.1016/j.indcrop.2017.09.046 Search in Google Scholar

Bhusal K., Khanal D. (2019): Role of Maize Weevil, Sitophilus zeamais Motsch. on spread of Aspergillus section flavi in different Nepalese maize varieties. Advances in Agriculture 2019: pp 5. https://doi.org/10.1155/2019/7584056 Search in Google Scholar

Bradford K.J., Dahal P., Van Asbrouck J., Kunusoth K., Bello P., Thompson J., Wu F. (2018): The dry chain: Reducing postharvest losses and improving food safety in humid climates. Trends in Food Science and Technology 71: 84–93. https://doi.org/10.1016/j.tifs.2017.11.002. Search in Google Scholar

Chaubey M.K. (2019): Essential oils as green pesticides of stored grain insects. European Journal of Biological Research 9: 202–244. http://dx.doi.org/10.5281/zenodo.3528366 Search in Google Scholar

Chaudhary S., Kanwar R.K., Sehgal A., Cahill D.M., Barrow C.J., Sehgal R., Kanwar J.R. (2017): Progress on Azadirachta indica based biopesticides in replacing synthetic toxic pesticides. Frontiers in Plant Science 8: 2. https://doi.org/10.3389/fpls.2017.00610 Search in Google Scholar

Cooking with Sindaco (2022): Local gin process 100% alcohol (Akpeteshie), https://fb.watch/gGyyvCdPSk/ Search in Google Scholar

Danquah F.O, Ge H., Frempong L .N., Korankye B.A. (2020): Resource-use efficiency in maize production: the case of smallholder farmers in Ghana. Agronomia Colombiana 38: 404 – 417. https://doi.org/10.15446/agron.colomb.v38n3.85069 Search in Google Scholar

Darfour B., Rosentrater K.A. (2016): Maize in Ghana: an overview of cultivation to processing. American Society of Agricultural and Biological Engineers paper number 162460492, St. Joseph, Michigan. doi: 10.13031/aim.20162460492 Search in Google Scholar

Deletre E., Schatz B., Bourguet D., Chandre F., Williams L., Ratnadass A., Martin T. (2016): Prospects for repellent in pest control: current developments and future challenges. Chemoecology 26: 127–142. https://doi.org/10.1007/s00049-016-0214-0 Search in Google Scholar

Derkyi N.S. A., Acquaah S.O., Owusu-Akyaw M. (2010): Bioactivity of some natural products against the cowpea storage weevil Callosobruchus maculatus L. International Journal of Biological and Chemical Sciences 4: 616–623. doi: 10.4314/ijbcs.v4i3.60465 Search in Google Scholar

Dhanani T., Shah S., Gajbhiye N.A., Kumar S. (2017): Effect of extraction methods on yield, phytochemical const ituents a nd antioxidant activity of Withania somnifera. Arabian Journal of Chemistry 10: S193–S1199. http://dx.doi.org/10.1016/j.arabjc.2013.02.015 Search in Google Scholar

Ekeh F.N., Odo G.E., Nzei J.I., Ohanu C.M., Ugwu F., Ngwu G., Njokuocha R. (2018): Effects of aqueous and oil leaf extracts of Pterocarpus santalinoides on the maize weevil, Sitophilus zeamais pest of stored maize grains. African Journal of Agricultural Research 13: 617–626. https://doi.org/10.5897/AJAR2018.13014 Search in Google Scholar

FAO (2019): What are the world's most important staple foods? FAO Production Yearbook for 2019. Search in Google Scholar

Gajger I.T., Sakač M., Gregorc A. (2017): Impact of thiamethoxam on honeybee queen (Apis mellifera carnica) reproductive morphology and physiology. Bulletin of Environmental Contamination and Toxicology 99: 297–302. https://doi.org/10.1007/s00128-017-2144-0 Search in Google Scholar

Gallo L., Ramírez-Rigo M.V., Piña J., Bucalá V. (2015): A comparative study of spray-dried medicinal plant aqueous extracts. Drying per formance and product quality. Chemical Engineering Research and Design 104: 681–694. http://dx.doi.org/10.1016/j.cherd.2015.10.009 Search in Google Scholar

Gariba S. Y., Dzidzienyo D. K., Eziah V. Y. (2021): Assessment of four plant extracts as maize seed protectants against Sitophilus zeamais and Prostephanus truncatus in Ghana. Cogent Food and Agriculture 7:1. https://doi.org/10.1080/23311932.2021.1918426 Search in Google Scholar

GENSTAT® for Windows TM (2012): Introduction 15th Edition, VSN International, Hemel Hempstead. Search in Google Scholar

Gómez-Tah J.R., Ruz-Febles N.M., Campos-Navarrete M.J., Canul-Solís J.R., Castillo-Sánchez L.E. (2020): Ethanolic extract of Cedrela odorata and Delonix regia for the control of Anthonomus eugenii. Journal of Entomology and Zoology Studies 8: 1349–1352. Search in Google Scholar

Gonfa T., Teketle S., Kiros T. (2020): Effect of extraction solvent on qualitative and quantitative analysis of major phyto-constituents and in-vitro antioxidant activity evaluation of Cadaba rotundifolia Forssk leaf extracts. Cogent Food & Agriculture 6. https://doi.org/10.1080/23311932.2020.1853867 Search in Google Scholar

Govindarajan M., Mathivanan T., Elumalai K., Krishnappa K., Anandan A. (2011): Ovicidal and repellent activities of botanical extracts against Culex quinquefasciatus, Aedes aegypti and Anopheles stephensi (Diptera: Culicidae). Asian Pacific Journal of Tropical Biomedicine 1: 43–48. https://doi.org/10.1016/S2221-1691(1160066-X) Search in Google Scholar

Granella S.J., Granella S., Bechlin T.R., Bechlin T., Christ D., Coelho S.R.M. (2021): A potential role of nitric oxide in postharvest pest control: A review. Journal of the Saudi Society of Agricultural Sciences. https://doi.org/10.1016/j.jssas.2021.12.002 Search in Google Scholar

Grzywacz D., Stevenson P.C., Mushobozi W.L ., Belmain S., Wilson K. (2014): The use of indigenous ecological resources for pest control in Africa. Food Security 6: 71–86. https://doi.org/10.1007/s12571-013-0313-5 Search in Google Scholar

Guru-Pirasanna-Pandi G., Adak T., Gowda B., Patil N., Annamalai M., Jena M. (2018): Toxicological effect of underutilized plant, Cleistanthus collinus leaf extracts against two major stored grain pests, the rice weevil, Sitophilus oryzae and red flour beetle, Tribolium castaneum. Ecotoxicology and Environmental Safety 154: 92–99. DOI: 10.1016/j.ecoenv.2018.02.024 Search in Google Scholar

Haines C.P. (Ed). (1991): Insects and arachnids of tropical stored product pests: Their biology and identification. Natural Resources Institute, UK. Search in Google Scholar

Hamel D., Rozman V., Liška A. (2020): Storage of cereals in warehouses with or without pesticides. Insects 11: 846. http://dx.doi.org/10.3390/insects11120846 Search in Google Scholar

Huma B., Hussain M., Ning C., Yuesuo Y. (2019): Human Benefits from Maize. Scholar Journal of Applied Sciences and Research 2: 4–7. Search in Google Scholar

Iloki-Assanga S.B., Lewis-Luján L.M., Lara-Espinoza C., Gil-Salido A.A., Fernández-Angulo D., Rubio-Pino J. ., Haines D.D. (2015): Solvent effects on phytochemical const ituent profiles and antioxidant activities, using four different extraction formulations for analysis of Bucida buceras L. and Phoradendron californicum. BMC Research Notes 8: 396. https://doi.org/10.1186/s13104-015-1388-1 Search in Google Scholar

Kadir R., Ali Nm, Soit Z., Khamaruddin Z. (2014): Anti-termitic potential of heartwood and bark extract and chemical compounds isolated from Madhuca utilis Ridl. H. J. Lam and Neobalanocarpus heimii King P.S. Ashton. Holzforschung 68: 713–720. https://doi.org/10.1515/hf-2013-0101 Search in Google Scholar

Kapinova A., Kubatka P., Golubnitschaja O., Kello M., Zubor P., Solar P., Pec M. (2018): Dietary phytochemicals in breast cancer research: anticancer effects and potential utility for effective chemoprevention. Environmental Health and Preventive Medicine 23: 36. https://doi.org/10.1186/s12199-018-0724-1 Search in Google Scholar

Kemabonta K.A., Falodu B.B. (2013): Bio-efficacy of three plant products as post-harvest grain protectants against Sitophilus oryzae (Linnaeus) (Coleoptera: Curcul ionidae) on stored wheat (Triticum aestivum Linnaeus). International Journal of Natural Science 4: 259–264. Search in Google Scholar

Khasabulli B.D., Musyimi D.M., Georg O., Gichuhi M. (2018): N. Allelopathic effect of Bidens pilosa on seed germination and growth of Amaranthus dubius. Journal of Asian Scientific Research 8: 103–112. https://doi.org/10.18488/journal.2.2018.83.103.112 Search in Google Scholar

Kumar D., Kalita P. (2017): Reducing postharvest losses during storage of grain crops to strengthen food security in developing countries. Foods 6: 8. doi: 10.3390/foods6010008 Search in Google Scholar

Laizer H.C., Chacha M.N., Ndakidemi P.A. (2021): Allelopathic effects of Sphaeranthus suaveolens on seed germination and seedling growth of Phaseolus vulgaris and Oryza sativa. Advances in Agriculture, 2021, 9 p. https://doi.org/10.1155/2021/8882824 Search in Google Scholar

Lamichhane J.R., Constantin J., Schoving C., Maury P., Debaeke P., Aubertot J., Dürr C. (2020): Analysis of soybean germination, emergence, and prediction of a possible nor thward establ ishment of the crop under climate change. European Journal of Agronomy 113: 125972. https://doi.org/10.1016/j.eja.2019.125972 Search in Google Scholar

Lidório H., Sobrinh J., Menegae J., Leão J., Nunes U., Munareto J., Barbier G., Leivas A. (2020): Aqueous extracts of plants on the physiological and sanitary quality of Chenopodium quinoa seeds as an alternative to convent ional seed treatment. Jour nal of Agricultural Studies 8: 237–250. doi: http://dx.doi.org/10.5296/jas.v8i2.15848 Search in Google Scholar

Liu Z.L., Chu S.S., Z hi Q.L. (2012): Chemical composition and toxicity of essential oil of Boenninghausenia sessilicarpa (Rutaceae) against two grain storage insects. Journal of Medicinal Plants Research 6: 2920–2924. https://doi.org/10.5897/JMPR11.526 Search in Google Scholar

Lobulu J., Shimelis H., Laing M., Mushongi A. A. (2019): Maize production constraints, traits preference and current Striga control options in western Tanzania: farmers’ consultation and implications for breeding. Acta Agriculturae Scandinavica B 69: 734–746. https://doi.org/10.1080/09064710.2019.1652680 Search in Google Scholar

Macêdo J.F.S., Ribeiro L.S., Bruno R.L.A., Alves E. ., de Andrade A.P., Lopes K.P., da Costa F.B., Zanuncio J.C., Ribeiro W.S. (2020): Green leaves and seeds alcoholic extract cont rols Sporobulus indicus germination in laboratory conditions. Scientific Reports 10: 1599. https://doi.org/10.1038/s41598-020-58321-y Search in Google Scholar

Mahdi-Pour B., Jothy S.L ., Latha L.Y, Chen Y. Sasidharan S. (2012): Antioxidant activity of methanol extracts of different parts of Lantana camara. Asian Pacific Journal of Tropical Biomedicine 2: 960–965. https://doi.org/10.1016/S2221-1691(13)60007-6 Search in Google Scholar

Makate N. (2010): The susceptibility of different maize varieties to post-harvest infestation by Sitophilus zeamais (MOTSCH) (Coleoptera: Curculionidae). Scientific Research and Essay 5: 30–34. http://hdl.handle.net/10311/1411 Search in Google Scholar

Margreiter V., Pagitz K., Berg C., Schwager P., Erschbamer B. (2020): Pros and cons of using a standard protocol to test germination of alpine species. Plant Ecology 221: 1045–1067. https://doi.org/10.1007/s11258-020-01061-w Search in Google Scholar

Mohammad Y.M., Haniffa H.M., Sujarajiini V. (2023): Insecticidal effect of selected medicinal plants on Sitophilus zeamais Mostschulsky in stored maize. Biocatalysis and Agricultural Biotechnology 48:102635. https://doi.org/10.1016/j.bcab.2023.102635. Search in Google Scholar

Möhler H., Diekötter T., Bauer G.M., Donath T.W. (2021): Conspecific and heterospecific grass litter effects on seedling emergence and growth in ragwort (Jacobaea vulgaris). PLoS ONE 16: e0246459. https://doi.org/10.1371/journal.pone.0246459 Search in Google Scholar

Mulungu K., Ng’ombe J.N. (2019): Climate change impacts on sustainable maize production in Sub-Saharan Africa: A Review. In (Ed.) Maize – Production and Use. IntechOpen. https://doi.org/10.5772/intechopen.90033 Search in Google Scholar

Morrison III, W.R., Arthur F.H., Bruce A. (2021): Characterizing and predicting sublethal shifts in mobility by multiple stored product insects over time to an old and novel contact insecticide in three key stored commodities. Pest Management. Science 77: 1990–2006. https://doi.org/10.1002/ps.6228 Search in Google Scholar

Nawaz H., Shad M.A., Rehman N., Andaleeb H., Ullah N. (2020): Effect of solvent polarity on extraction yield and antioxidant properties of phytochemicals from bean (Phaseolus vulgaris ) seeds. Brazilian Journal of Pharmaceutical Sciences 56: e17129. https://doi.org/10.1590/s2175-97902019000417129 Search in Google Scholar

Nelson D C., Flematti G R., Ghisalberti E L., Dixon K W., Smith S.M. (2012): Regulation of seed germination and seedling growth by chemical signals from burning vegetation. Annual Review of Plant Biology 63: 107–130. DOI: 10.1146/annurev-arplant-042811-105545 Search in Google Scholar

Nwosu L.C., Adedire C.O. Ogunwolu E.O. (2015): Feeding site preference of Sitophilus zeamais (Coleoptera: Curculionidae) on maize grain. International Journal of Tropical Insect Science 35: 62–68. DOI: https://doi.org/10.1017/S1742758415000065 Search in Google Scholar

Obeng-Ofori D. (2007): The use of botanicals by resource poor farmers in Africa and Asia for the protection of stored agricultural products. Stewart Postharvest Review: 3: 1–8. DOI: 10.2212/spr.2007.6.10 Search in Google Scholar

Obeng-Ofori D., Reichmuth C.H. (1997): Bioactivity of eugenol, a major component of essential oil of Ocimum suave (Wild.) against four species of stored-product Coleoptera. International Journal of Pest Ma nagement 43: 89–94. DOI: 10.1080/096708797229040 Search in Google Scholar

Obour P.B., Arthur I.K., Owusu K.T. (2020): Maize production failure in Ghana: a case study of Ejura – Sekyedumase municipality. Sustainability 14: 3514. https://doi.org/10.3390/su14063514 Search in Google Scholar

Ojo J.A., Omoloye A.A. (2012): Rearing of maize weevil, Sitophilus zeamais on an artificial maize-cassava diet. Journal of Insect Science 12: 69. https://doi.org/10.1673/031.012.6901 Search in Google Scholar

Ojo J.A., Omoloye A.A. (2016): Development and life history of Sitophilus zeamais (Coleoptera: Curculionidae) on cereal crops. Advances in Agriculture 2016: 1–8. https://doi.org/10.1155/2016/7836379 Search in Google Scholar

Okwute S.K. (2012): Plants as potential sources of pesticidal agents: A review. In (Ed.), Pesticides – Advances in Chemical and Botanical Pesticides. IntechOpen. https://doi.org/10.5772/46225 Search in Google Scholar

Omotayo O.P., Omotayo A.O., Mwanza M., Babalola O.O. (2019): Prevalence of mycotoxins and their consequences on human health. Toxicological Research 35: 1–7. https://doi.org/10.5487/TR.2019.35.1.001 Search in Google Scholar

Opit G. P., Campbell J., Arthur F., Armstrong P., Osekre E., Washburn S., Baban O., McNeill S., Mbata G., Ayobami I., Reddy P. V. (2014): A report on assessment of maize postharvest losses in the middle belt of Ghana. United States Agency for International Development. https://doi.org/10.14455/doa.res.2014.134 Search in Google Scholar

Paes J.L., Faroni L.R.D., Dhingra O.D., Cecon P.R., Silva T.A. (2012): Insecticidal fumigation action of mustard essential oil against Sitophilus zeamais in maize grains. Crop Protection 34: 56–58. https://doi.org/10.1016/j.cropro.2011.11.021 Search in Google Scholar

Parwada C., Chikuvire T.J., Kamota A., Mandumbu R., Mutsengi K. (2018): Use of botanical pesticides in controlling Sitophilus zeamais (maize weevil) on stored Zea mays (maize) grain. Modern Concepts & Developments in Agronomy 1: 64–67. https://doi.org/10.31031/MCDA.2018.01.000517 Search in Google Scholar

Peng M.W., Wang M., Jiang P., Chang Y.L., Chu G.M. (2018): The impact of low temperature on seed germination of two desert species in Junggar basin of China. Applied Ecology and Environmental Research 16: 5771–5780. DOI: 10.15666/aeer/1605_57715780 Search in Google Scholar

Perera A., Karunaratne M., Chinthaka S. (2018): Bioactivity and Volatile profiling of Azadirachta indica leaves for the management of maize weevil, Sitophilus zeamais (Motsch.) infestations. Journal of Tropical Forestry and Environment 8:10–24. https://doi.org/10.31357/jtfe.v8i1.3479 Search in Google Scholar

Powell A. A. (2022): Seed vigour in the 21st century. Seed Science and Technology, Suppl. 50: 45–73. https://doi.org/10.15258/sst.2022.50.1.s.04 Search in Google Scholar

Rahmat B., Kurniati F., Pajar L. (2019): The effectiveness of teak wood-sawdust liquid smoke and areca-nut extract as a pesticide on Pomacea canaliculate. American Journal of Agricultural and Biological Sciences 14: 69–74. https://doi.org/10.3844/ajabssp.2019.69.74 Search in Google Scholar

Rajashekar Y., Bakthavatsala, N., Shivanandappa T. (2012): Botanicals as grain protectants. Psyche: A Journal of Entomology 13 pp. Article ID 646740. https://doi.org/10.1155/2012/646740 Search in Google Scholar

Reegan A.D., Gandhi M.R., Paulraj M.G., Ignacimuthu S. (2015): Ovicidal and oviposition deterrent activities of medicinal plant extracts against Aedes aegypti L. and Culex quinquefasciatus Say mosquitoes (Diptera: Culicidae). Osong Public Health and Research Perspectives 6: 64–69. https://doi.org/10.1016/j.phrp.2014.08.009. Search in Google Scholar

Regnault-Roger C., Vincent C., Arnason J.T. (2012): Essential oils in insect control: low-risk products in a high-stakes world. Annual Review of Entomology 57: 405–424. https://doi.org/10.1146/annurev-ento-120710-100554 Search in Google Scholar

Sabbour M.M. (2012): Entomotoxicity assays of two nanoparticle materials 1-(Al203 and TiO2) against Sitophilus oryzae under laboratory and store conditions in Egypt. Jour nal of Novel Applied Sciences 1: 103–108. https://civilica.com/doc/418871 Search in Google Scholar

Sasidharan S, Chen Y, Saravanan D, Sundram KM, Yoga Latha L. (2011): Extraction, isolation and characterization of bioactive compounds from plants’ extracts. African Journal of Traditional, Complementary, and Alternative Medicines 8: 1–10. DOI:10.4314/AJTCAM.V8I1.60483 Search in Google Scholar

Sawicka B. (2019): Postharvest losses of agricultural produce. W. Leal Filho et al. (eds.), Zero Hunger, Springer Nature Switzerland AG. pp 1–16. doi:10.1007/978-3-319-69626-3_40-1. Search in Google Scholar

Scheiterle L., Birner R. (2018): Assessment of Ghana’s comparative advantage in maize production and the role of fertilizers. Sustainability 10: 4181. http://dx.doi.org/10.3390/su10114181 Search in Google Scholar

Shinohara T., Ducournau S., Matthews S., Wagner M-H., Powell A.A. (2021): Early counts of radicle emergence, counted manually and by image analysis, can reveal differences in the production of normal seedlings and the vigour of seed lots of cauliflower. Seed Science and Technology 49: 219–235. DOI: https://doi.org/10.15258/sst.2021.49.3.04 Search in Google Scholar

Siddique A.B., Wright D. (2003): Effects of different seed drying methods on moisture percentage and seed quality (viability and vigour) of pea seeds (Pisum sativum L.). Journal of Agronomy 2: 201–208. DOI: 10.3923/ja.2003.201.208 Search in Google Scholar

Simbarashe M., James C., Sipiwe G. (2013): Screening of stored maize (Zea mays L). Journal of Plant Research 3: 17–22. DOI: 10.5923/j.plant.20130303.01. Search in Google Scholar

Sintim H.O. (2014): A justification for the advances in natural products in plant and grain protection. Proceedings of the Annual Meeting of the Sunyani Polytechnic Lecture Series #VII, Sunyani, Ghana. Pp. 408–423. ISBN: 978-9988-0-9955-X Search in Google Scholar

Skulberg K.R., Nyrud A.Q., Nore K. (2022): Hygroscopic buffering effects in exposed cross-laminated timber surfaces and indoor climate in a Norwegian primary school, Wood Material Science and Engineering 17: 43–52. https://doi.org/10.1080/17480272.2021.2019830 Search in Google Scholar

Soltys D., Krasuska U., Bogatek R., Gniazdowska A. (2013): Allelochemicals as bioherbicides-present and perspectives. In Herbicides-current research and case studies in use (eds Price, A. J. and Kelton J. A.) IntechOpen. DOI: 10.5772/56185 Search in Google Scholar

Sori W., Ayana A. (2012): Storage pests of maize and their status in Jimma Zone, Ethiopia. African Journal of Agricultural Research 7: 4056–4060. http://10.140.5.162//handle/123456789/2839 Search in Google Scholar

Stathers T.E., Arnold S.E.J., Rumney C.J. Hopson C. (2020): Measuring the nutritional cost of insect infestation of stored maize and cowpea. Food Security 12: 285–308 https://doi.org/10.1007/s12571-019-00997-w Search in Google Scholar

Sugri I., Abubakari M., Owusu R.K., Bidzak in J.K. (2021): Postharvest losses and mitigating technologies: Evidence from Upper East Region of Ghana. Sustainable Futures 3: 100048. https://doi.org/10.1016/j.sftr.2021.100048. Search in Google Scholar

Suleiman R., Rosentrater K. A., Bern C. T. (2013): Effects of deterioration parameters on storage of maize. Agricultural and Biosystems Engineering Conference Proceedings and Presentations. http://lib.dr.iastate.edu/abe_eng_conf/339. Search in Google Scholar

Tagba P., Osseyi E., Fauconnier M.L ., Lamboni C. (2018): Aromatic composition of ‘sodabi’, a traditional liquor of fermented oil palm wine. Advance Journal of Food Science and Technology 14: 15–22, 10.19026/ajfst.14.5421 Search in Google Scholar

Talukder D., Khanam L. A. M. (2009): Toxicity of four plant based products against three stored product pests. Journal of Bio-Science 17: 149–153. https://doi.org/10.3329/jbs.v17i0.7124 Search in Google Scholar

Tilahun F.E., Daniel H.B. (2016): Effect of neem leaf and seed powders against adult maize weevil (Sitophilus zeamais Motschulsk y) mortality. International Journal of Agricultural Research 11: 90–94. DOI: 10.3923/ijar.2016.90.94 Search in Google Scholar

Toews M.D. Subramanyam B. (2003): Contribution of contact toxicity and wheat condition to mortality of stored-product insects exposed to spinosad. Pest Management Science 59: 538–544. https://doi.org/10.1002/ps.660 Search in Google Scholar

Trivedi A., Nayak N. Kumar J. (2018): Recent advances and review on use of botanicals from medicinal and aromatic plants in stored grain pest management. Journal of Entomology and Zoology Studies 6: 295–300. Search in Google Scholar

Truong D.H., Nguyen D.H., Ta N.T.A., Bui A.V., Do T.H., Nguyen H. C. (2019): Evaluation of the use of different solvents for phytochemical constituents, a ntioxidants, and in vitro anti-inflammatory activities of Severinia buxifolia. Journal of Food Quality 8178294. https://doi.org/10.1155/2019/8178294 Search in Google Scholar

Tulashie S.K., Appiah A.P., Torku G.D., Darko A.Y. Wiredu A. (2017): Determination of methanol and ethanol concentrations in local and foreign alcoholic drinks and food products (Banku, Ga kenkey, Fante kenkey and Hausa koko) in Ghana. Food Contamination 4: 14. https://doi.org/10.1186/s40550-017-0059-5 Search in Google Scholar

Berhe M., Subramanyam B., Chichaybelu M., Demissie G., Abay F., Harvey J. (2022): Post-harvest insect pests and their management practices for major food and export crops in East Africa: an Ethiopian case study. Insects 13: 1068. https://doi.org/10.3390/insects13111068 Search in Google Scholar

Valizadeh B., Jalali Sendi J., Oftadeh M., Ebadollahi A., Krutmuang P. (2021): Ovicidal and physiological effects of essential oils extracted from six medicinal plants on the elm leaf beetle, Xanthogaleruca luteola (Mull.). Agronomy 11: 2015. https://doi.org/10.3390/agronomy11102015 Search in Google Scholar

Van Duong N., Khanh L.Q., Xuan B.T., Hung C.T. Que L.X. (2020): Using oxygen depletion to reduce maize weevils without chemicals in a storage minienvironment. Vietnam Journal of Chemistry 58: 327–332. https://doi.org/10.1002/vjch.2019000168 Search in Google Scholar

WABS (2008): Maize value chain study in Ghana: enhancing efficiency and competitiveness, Accra Ghana. http://wwwvaluechains4poororg/file/Maize_ValueChain_WAB_Dec_08pdf Search in Google Scholar

Wang J., Zhang R., Huang Y., Feng S. (2018): Allelopathic effects of aqueous leaf extracts from four shrub species on seed germination and initial growth of Amygdalus pedunculata Pall. Forests 9: 711. https://doi.org/10.3390/f9110711 Search in Google Scholar

Xiao S, Liu L.T., Wang H., Li D.X., Bai Z.Y., Zhang Y.J., Sun H.C., Zhang K., Li C.D. (2019): Exogenous melatonin accelerates seed germination in cotton (Gossypium hirsutum L.). PLoS ONE 14: e0216575. https://doi.org/10.1371/journal.pone.0216575 Search in Google Scholar

Yohannes A., Asayew G., Melaku G., Derbew M., Kedir S., Raja N. (2014): Evaluation of certain plant leaf powders and aqueous extracts against maize weevil, Sitophilus zeamais Motsch. (Coleoptera: Curculionidae). Asian Journal of Agricultural Science 6: 83–88. http://dx.doi.org/10.19026/ajas.6.5152 Search in Google Scholar

Zhao J., Yang Z., Zou J. Li Q. (2022): Allelopathic effects of sesame extracts on seed germination of moso bamboo and identification of potential allelochemicals. Scientific Reports 12: 6661 https://doi.org/10.1038/s41598-022-10695-x Search in Google Scholar

eISSN:
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Sujets de la revue:
Life Sciences, Plant Science