Zacytuj

Adagba M. A., Lagoke S. T. O., Singh B. N., Ndahi W. B. (2002): Potential of cinosulfuron and CGA152005 seed treatment for control of Striga hermonthica in upland rice. Acta Agronomica Hungarica 50: 7–18.10.1556/AAgr.50.2002.1.2Search in Google Scholar

Adeyemi O. R., Adigun J. A, Hosu D. O., Fanawopo H. O., Daramola O. S., Osipitan O. A. (2017): Growth and yield response of two lowland rice varieties (NERICA L-19 and WITA 4) as influenced by period of weed interference in the forest savanna agro ecological cone of Southwest Nigeria. Nigeria Journal of Ecology 16: 142–160.Search in Google Scholar

Adigun J. A., Kolo E., Adeyemi O. R., Daramola O. S., Badmus A. A., Osipitan A. A. (2017): Growth and yield response of upland rice to nitrogen levels and weed control methods International Journal of Agronomy and Agricultural Research 11: 92–101.Search in Google Scholar

Adigun J. A., Lagoke S. T. O. (2003): Weed control in transplanted rainfed and irrigated tomatoes in the Nigerian savanna. Nigerian Journal of Weed Science 16: 23–29.Search in Google Scholar

Akobundu I. O., Fagade S. O. (1978): Weed problems of African rice lands. In ‘‘Rice in Africa’’, I. W. Buddenhagen and G. J. Persley (Eds), Academic Press, London, pp. 181–192.Search in Google Scholar

Akobundu I. O. (1981): Weed control in direct-seeded lowland rice under poor water control conditions. Weed Research 21: 273–27810.1111/j.1365-3180.1981.tb00128.xSearch in Google Scholar

Akobundu I. O., Ahissou A. (1985): Effect of inter-row spacing and weeding frequency on the performance of selected rice cultivars on hydromorphic soils of West Africa. Crop Protection 4: 71–76.10.1016/0261-2194(85)90006-7Search in Google Scholar

Akobundu I. O. (1987): Weed Science in the Tropics. Principles and Practices. John Wiley and Sons, Chichester, UK, 522 p.Search in Google Scholar

Ampong-Nyarko K., De Datta S. K. (1991): A Handbook for Weed Control in Rice. International Rice Research Institute Manila, Philippines 113 p.Search in Google Scholar

Becker M., Johnson D. E., Wopereis M. C. S., Sow A. (2003): Rice yield gaps in irrigated systems along an agro-ecological gradient in West Africa. Journal of Plant Nutrition and Soil Science 166: 61–67.10.1002/jpln.200390013Search in Google Scholar

Bergman Lodin J., Paulson S., Mugenyi M. S. (2012): New seeds, gender norms and labor dynamics in Hoima District, Uganda. Journal of Eastern African Studies 6: 405–422.10.1080/17531055.2012.696889Search in Google Scholar

Chauhan B. S., Singh R. G., Mahajan G. (2012): Ecology and management of weeds under conservation agriculture: A review. Crop Protection 38: 57–65.10.1016/j.cropro.2012.03.010Search in Google Scholar

Chauhan B. S., Matloob A., Mahajan G., Aslam F., Florentine S. K., Jha P. (2017): Emerging Challenges and Opportunities for Education and Research in Weed Science. Frontier in Plant Science 8: 1–13.10.3389/fpls.2017.01537559187628928765Search in Google Scholar

Danmaigoro O., Ishaya D. B., Ibrahim U. (2019): Growth attributes and yield of rice (Oryza sativa. L) as affected by weed control treatments, poultry manure and stand density. Production Agriculture and Technology 13: 65–73.Search in Google Scholar

Daramola O. S., Adeyemi O. R., Adigun J. A., Adejuyigbe C. O. (2019): Row spacing and weed management methods influences growth and yield of soybean. AgriculturaTropica et Subtropica 52: 59–71.10.2478/ats-2019-0007Search in Google Scholar

Daramola O. S., Adeyemi O. R., Adigun J. A., Adejuyigbe C. O. (2020): Weed interference and control in soybean as influence by row spacing in the transition zone of South West Nigeria. Journal of Crop Improvement 34: 103–121.10.1080/15427528.2019.1674759Search in Google Scholar

Datta A., Ullah H., Ferdous Z. (2017): Water Management in Rice. In: ‘Rice Production Worldwide’, B. S. Chauhan., K. Jabran and G. Mahajan (Eds), Springer, Singapore, pp. 255–277.10.1007/978-3-319-47516-5_11Search in Google Scholar

Ekeleme F., Kamara A. Y., Omoigui L. O., Tegbaru A., Mshelia J., Onyibe J. E. (2008): Guide to Rice Production in Borno State, Nigeria. IITA, Ibadan, Nigeria, 20 p.Search in Google Scholar

Ekeleme F., Kamara A. Y., Oikeh S. O., Omoigui L. O., Amaza P., Abdoulaye T., Chikoye D. (2009): Response of upland rice cultivars to weed competition in the savannas of West Africa. Crop Protection 28: 90 – 96.10.1016/j.cropro.2008.09.006Search in Google Scholar

Ekeleme F., Hauser S., Atser G., Dixon A., Weller S., Olorunmaiye P., Usman H., Olojede A., Chikoye D. (2016): Weeds management in cassava in Africa: Challenges and opportunities. Outlooks on Pest Management 27: 208–212.10.1564/v27_oct_04Search in Google Scholar

Enyinnia T. (1992): Chemical weed control in rain-fed upland rice in Nigeria. Tropical Pest Management 38: 408–410.10.1080/09670879209371737Search in Google Scholar

Gianessi L. P. (2013): The increasing importance of herbicides in worldwide crop production. Pest Management Science 69: 1099–1105.10.1002/ps.359823794176Search in Google Scholar

GRiSP (Global Rice Science Partnership) (2013): Rice Almanac. 4th Edition, International Rice Research Institute, Los Baños, 232 p.Search in Google Scholar

Haefele S. M., Johnson D. E., M’Bodj D., Wopereis M. C. S., Miezan K. M. (2004): Field screening of diverse rice genotypes for weed competitiveness in irrigated lowland ecosystems. Field Crops Research 88: 39–56.10.1016/j.fcr.2003.11.010Search in Google Scholar

Hong, N. H., Xuan T. D., Eiji T., Khanh T. D. (2004): Paddy weed control by higher plants from Southeast Asia. Crop Protection 23: 255–261.10.1016/j.cropro.2003.08.008Search in Google Scholar

Ishaya D. B., Dadari, S. A., Shebayan J. A. Y. (2007): Evaluation of herbicides for weed control in three varieties of upland rice (Oryza sativa L.) in the Nigerian Savannah. Crop Protection 26: 1490 – 1495.10.1016/j.cropro.2006.12.015Search in Google Scholar

Ismaila U., Wada A. C., Daniya E., Gbanguba A. U. (2013): Meeting the Local Rice Needs in Nigeria Through Effective Weed Management. Sustainable Agriculture Research 2: 37–48.10.5539/sar.v2n2p37Search in Google Scholar

Johnson D. E. (1996): Weed Management in Small Holder Rice Production in the Tropics. Natural Resources Institute, Kent, UK, 11 p.Search in Google Scholar

Johnson D. E. (1997): Weeds of Rice in West Africa. WARDA, Bouaké, 24 p.Search in Google Scholar

Johnson J. M., Rodenburg J., Tanaka A., Senthilkumar K., Ahouanton K., Dieng I. (2018): Farmers’ perceptions on mechanical weeders for rice production in sub-Saharan Africa. Experimental Agriculture 55: 1–15.10.1017/S001447971700059XSearch in Google Scholar

Kadir J., Charudattan R. (2000): Dactylaria higginsii, a fungal bio-herbicide agent for purple nutsedge (Cyperus rotundus). Biological Control 17: 113–124.10.1006/bcon.1999.0791Search in Google Scholar

Kasim H., Musa I., Muhamman M. A. (2017): Effects of Spacings and Butachlor Levels On Weed Control, Growth and Yield of NERICA 1 Rice (Oryza sativa L. ×Oryza glaberrima L.). Journal of Agricultural Sciences 62: 361–369.10.2298/JAS1704361KSearch in Google Scholar

Knezevic S. Z. (2014): Integrated Weed Management in Soybean. In: Recent Advances in Weed Management, Chauhan, B. S., Mahajan G. (Eds), pp. 223–237.10.1007/978-1-4939-1019-9_10Search in Google Scholar

Knezevic S. Z., Datta A. (2015): The Critical Period for Weed Control: Revisiting Data Analysis Weed Science 63: 188–202.10.1614/WS-D-14-00035.1Search in Google Scholar

Kolo M. G. M., Umaru I. (2012): Weed competitiveness and yield of inter-and intra-specific upland rice (Oryza sativa L.) under different weed control practices at Badeggi, Niger State, Nigeria. African Journal of Agricultural Research 7: 1687–1693.10.5897/AJAR11.1096Search in Google Scholar

Kolo E., Adigun J. A., Adeyemi O. R., Daramola O. S., Bodunde J. G (2020): Effect of nitrogen levels and weed management methods on weed abundance and yield of upland rice. Journal of Agricultural Sciences 65: 137–150.10.2298/JAS2002137KSearch in Google Scholar

Lemerle D., Verbeek B., Orchard B. (2001): Ranking the ability of wheat varieties to compete with Lolium rigidum. Weed Research 41:197–209.10.1046/j.1365-3180.2001.00232.xSearch in Google Scholar

Mishra J. S., Rao A. N., Singh V. P., Kumar R. (2017): Weed management in major field crops. Advances in Weed Management 4: 1–21.Search in Google Scholar

Nhamo N., Rodenburg J., Zenn N., Makomb G., Luzi-Kihupi, A. (2014): Narrowing the rice yield gap in East and Southern Africa: Using and adapting existing technologies. Agricultural Systems 131: 45 – 55.10.1016/j.agsy.2014.08.003Search in Google Scholar

Oerke E. C., Dehne H. W. (2004): Safeguarding production–losses in major crops and the role of crop protection. Crop Protection 23: 275–285.10.1016/j.cropro.2003.10.001Search in Google Scholar

Ogundele O. O. Okoruwa V. O. (2006): Technical efficiency differentials in rice production technologies in Nigeria, AERC research paper 154, Nairobi: AERC, 154 p.Search in Google Scholar

Ogwuike P., Rodenburg J., Diagne P., Afiavi R. Noameshie A., Amovin-Assagba E. (2014): Weed management in upland rice in sub-Saharan Africa: impact on labor and crop productivity Food Security 6: 327–337.10.1007/s12571-014-0351-7Search in Google Scholar

Okafor L. I. (1986): Chemical weed control in direct-seeded irrigated rice in the Lake Chad Basin, Nigeria. Crop Protection 5: 203–208.10.1016/0261-2194(86)90103-1Search in Google Scholar

Seck PA., Diagn eA., Mohanty S., Wopereis M.C.S. (2012): Crops that feed the world: Rice. Food Security 4: 7–24.10.1007/s12571-012-0168-1Search in Google Scholar

Saleh M. K., Oyinbo O. (2017): Rice Production under Different Weed Management Technologies Adopted by Rice Farmers in Katsina State, Nigeria Journal of Agricultural Extension 21: 1–16.10.4314/jae.v21i1.12Search in Google Scholar

Shave P. A., Anzenge M. S. (2017): Weed management in lowland rice in Makurdi, Nigeria. Indian Journal of Weed Science 49: 79–81.10.5958/0974-8164.2017.00019.3Search in Google Scholar

Silva A. A., Ferreira F. A., Ferreira L. R., Santos J. B. (2007): Biologia de plantas daninhas. In: Silva AA, Silva JF. (Eds.): Tópico semmanejo de plantas daninhas. Viçosa: Universidade Federal de Viçosa 5: 18–61.Search in Google Scholar

Sims B., Corsi S., Gbehounou G., Kienzle J., Taguchi M., Friedrich T. (2018): Sustainable Weed Management for Conservation Agriculture: Options for Smallholder Farmers Agriculture 8: 118 DOI 10.3390/agriculture808011810.3390/agriculture8080118Search in Google Scholar

Rodenburg J., Johnson D. E. (2009): Weed management in rice-based cropping systems in Africa. Advances in Agronomy 103: 149–218.10.1016/S0065-2113(09)03004-1Search in Google Scholar

Rodenburg J., Meinke H., Johnson D. E. (2011): Challenges for weed management in African rice systems in a changing climate. Journal of Agricultural Science 149: 427–435.10.1017/S0021859611000207Search in Google Scholar

Udemezue J. C. (2018): Analysis of Rice Production and Consumption Trends in Nigeria. Journal of Plant Science and Crop Protection 1: 305.Search in Google Scholar

USDA (2018): Production, supply and distribution online. Retrieved from https://apps.fas.usda.gov/psdonline/app/index.html#/app/home [Google Scholar]Search in Google Scholar

Tu T. O., Alden S., Rao V. S. (2012): Manual and Mechanical weeding control techniques managing invasive plants: Concepts, principles and practices. United States Fish and Wildlife Service, California Press, pp. 39–48.Search in Google Scholar

Usman A., M. A., Adagba J. K., Kehinde M. N., Ukwungwu T., Ogunshola K. (2001). In: Weed in rice. WARDA (2003), pp. 75–79.Search in Google Scholar

Zhao D. L., Atlin G. N., Bastiaans L., Spiertz J. H. J. (2006): Cultivar weed competitiveness in aerobic rice: Heritability, correlated traits, and the potential for indirect selection in weed-free environments. Crop Science 46: 372–38010.2135/cropsci2005.0192Search in Google Scholar

Zhao D. L., Bastiaans L., Atlin G. N., Spiertz J. H. J. (2007): Interaction of genotype management on vegetative growth and weed suppression of aerobic rice. Field Crops Research 100: 327–340.10.1016/j.fcr.2006.08.007Search in Google Scholar

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