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Articles

Nitrogen Deficiency in Semi-Arid Kenya: Can Pigeonpea fix it?

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References

  • Abaidoo RC, Keyser HH, Singleton PW, Dashiell KE, Sanginga N. 2007. Population size, distribution and symbiotic characteristics of indigenous Bradyrhizobium sp. that nodulates TGx soybean genotypes in Africa. Appl Soil Ecol. 35(1):57–67. doi: 10.1016/j.apsoil.2006.05.006
  • Abunyewa AA, Karbo KN. 2005. Improved fallow with pigeonpea for soil fertility improvement and to increase maize production in a smallholder crop-livestock farming system in the sub humid zone of Ghana. Land Degrad Dev. 16(5):447–454. doi: 10.1002/ldr.672
  • Adjei-Nsiah S, Kuyper TW, Leeuwis C, Abekoe MK, Giller KE. 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. Field Crops Res. 103(2):87–97. doi: 10.1016/j.fcr.2007.05.001
  • Adu-Gyamfi JJ, Myaka FA, Sakala WD, Odgaard R, Vesterager JM, Høgh-Jensen H. 2007. Biological nitrogen fixation and nitrogen and phosphorus budgets in farmer-managed intercrops of maize-pigeonpea in semi-arid southern and eastern Africa. Plant Soil. 295(1–2):127–136. doi: 10.1007/s11104-007-9270-0
  • Akanvou R, Kropff MJ, Bastiaans L, Becker M. 2002. Evaluating the use of two contrasting legume species as relay intercrop in upland rice cropping systems. Field Crops Res. 74(1):23–36. doi: 10.1016/S0378-4290(01)00198-8
  • Ali M. 1990. Pigeonpea: Cropping systems. (p 233–256). In: Nene YL, Hall SD, Sheila VK (Eds). The pigeonpea. Wallingford: CAB International.
  • Ariga J, Jayne TS, Kibaara B, Nyoro JK. 2008. Trends and Patterns in Fertilizer Use By Smallholder Farmers in Kenya, 1997–2007. Working Paper Series No. 28. Nairobi, Kenya: Tegemeo Institute.
  • Audi P, Nagarajan L, Jones R. 2008. Seed interventions and cultivar diversity in pigeonpea: a farmer based assessment in Eastern Kenya. J New Seeds. 9(2):111–127. doi: 10.1080/15228860802073016
  • Bationo A, Waswa BS. 2011. New challenges and opportunities for integrated soil fertility management in Africa. In: Bationo A, Waswa B, Okeyo JM, Maina F, Kihara J (Eds). Innovation as Key to the Green Revolution in Africa: Exploring the Scientific Facts. Vol. 1. New York, USA: Springer.
  • Bremner JM, Mulvaney CS. Nitrogen-Total. 1982. (p 595–624). In: Page AL, Miller RH, Keeney DR (Eds). Methods of Soil Analysis, Part 2– Chemical and Microbiological Properties. 2nd ed. Madison WI, USA: Soil Science Society of America.
  • Brockwell J, Bottomley PJ, Thies JE. 1995. Manipulation of rhizobium microflora for improving legume productivity and soil fertility: A critical assessment. Plant Soil. 174(1–2):143–180. doi: 10.1007/BF00032245
  • Catroux G, Hartmann A, Revellin C. 2001. Trends in rhizobial inoculant production and use. Plant Soil. 230(1):21–30. doi: 10.1023/A:1004777115628
  • Chamango AMZ. 2001. Improving grain yield of smallholder cropping systems: A farmer participatory research (FPR) approach with legumes for soil fertility improvement in Central Malawi. (p 413–417). Proceedings of the Seventh Eastern and Southern Africa Regional Maize Conference held on 11–15 February 2001. Nairobi, Kenya: CIMMYT.
  • Chikowo R, Mapfumo P, Nyamugafata P, Giller K. 2004. Maize productivity and mineral N dynamics following different soil fertility management practices on depleted sandy soil in Zimbabwe. Agric Ecosyst Environ. 102(2):119–131. doi: 10.1016/j.agee.2003.08.009
  • Chirwa PW, Black CR, Ong CK, Maghembe J. 2006. Nitrogen dynamics in cropping systems in southern Malawi containing Gliricidia sepium, pigeonpea and maize. Agrofor Syst. 67(1):93–106. doi: 10.1007/s10457-005-0949-z
  • Chirwa TS, Mafongoya PL, Mbewe DNM, Chishala BH. 2004. Changes in soil properties and their effects on maize productivity following Sesbania sesban and Cajanus cajan improved fallow systems in Eastern Zambia. (p 89–111). In: Bationo A (Ed). Managing nutrient cycles to sustain soil fertility in sub-Saharan Africa. Nairobi, Kenya: Academy Science Publishers.
  • Degrande A. 2001. Farmer assessment and economic evaluation of shrub fallows in the humid lowlands of Cameroon. Agrofor Syst. 53(1):11–19. doi: 10.1023/A:1012220807248
  • Egbo OM, Ngumalen B. 2010. Pigeonpea / Sorghum Intercropping in Southern Guinea Savanna: Effects of Planting Density of Pigeonpea. Nat Sci. 8(11):156–167.
  • Faris DG. 1983. ICRISAT’s research on pigeonpea. (p 17–20 ). In: Grain Legumes in Asia. Patancheru, India:.ICRISAT.
  • Fening JO, Danso SKA. 2002. Variation in symbiotic effectiveness of cowpea bradyrhizobia indigenous to Ghanaina soils. Appl Soil Ecol. 21(1):23–29 doi: 10.1016/S0929-1393(02)00042-2
  • Food and Agriculture Organization (FAO). 2014. Food and Agriculture Organization of the United Nations online agricultural statistical database. Rome, Italy: Food and Agriculture Organization.
  • Food and Agriculture Organization of the United Nations (FAO)/UNESCO. 1997. Soil Map of the World. Revised Legend. World Soil Resources (41p). Report 60. Rome, Italy: Food and Agriculture Organization.
  • Gathumbi SM, Cadisch G, Giller KE. 2002. 15N natural abundance as a tool for assessing N2 fixation of herbaceous, shrub and tree legumes in improved fallows. Soil Biol Biochem. 34(8):1059–1071. doi: 10.1016/S0038-0717(02)00038-X
  • GENSTAT. 2016. Release 14.2. Lawes Agricultural Trust-IACR. Rothamsted Experimental Station, UK.
  • Gicheru PT. 1996. Detailed soil survey of three newly-opened farms in Kathekakai Co-operative Society Farm (section B) in Konza region, Machakos District. Report No. D73. Kenya Soil Survey. Nairobi, Kenya: Ministry of Agriculture.
  • Gicheru PT, Ita BN. 1987. Detailed soil survey of Katumani National Dryland Farming Research Station Farms (Machakos District). Report No. D43. Kenya Soil Survey. Nairobi,
  • Giller KE. 2001. Nitrogen Fixation in Tropical Cropping Systems. 2: 1969–1970. Wallingford, UK: CABI Publishing.
  • Government of Kenya (GoK). 2013. Agricultural sector development support programme (ASDSP). Updated programme Document. Nairobi, Kenya: Ministry of Agriculture, Livestock and Fisheries.
  • Gwata ET, Shimelis H. 2013. Evaluation of pigeonpea germplasm for important agronomic traits in Southern Africa. (pp 1–16). In: Goyal A, Muhammad Asif M (Eds). Crop Production. Intech, Rijeka, Croatia. DOI: 10.5772/56094
  • Høgh-Jensen H., Myaka FA, Sakala WD, Kamalongo D, Ngwira A, Vesterager JMI, Odgaard R, Adu-Gyamfi JJ. 2007. Yields and qualities of pigeonpea varieties grown under smallholder farmers’ conditions in Eastern and Southern Africa. Afr J Agric Res. 2(6):269–278.
  • Holderbaum JT, Decker AM, Messinger JJ, Mulford FR, Vough LR. 1990. Fall-seeded legume cover crops for no tillage corn in the humid east. Agron J. 82(1):117–124. doi: 10.2134/agronj1990.00021962008200010026x
  • International Atomic Energy Agency (IAEA). 2001. Use of Isotopes and Radiation Methods in Soil and Water Management and Crop nutrition, Training Course Series No. 29. Vienna: IAEA.
  • Itabari JK, Kwena K, Esilaba AO, Kathuku AN, Muhammad L, Mangale N, Kathuli P. 2011. Land and water management research and development in arid and semi-arid lands of Kenya (p 427–438). In: Bationo A, Waswa B, Okeyo JM, Maina F, Kihara J (Eds). Innovations as key to the Green Revolution in Africa - Vol.1. Exploring the scientific facts. Springer, Science + Business Media BV, Netherlands. DOI: 10.10007/978-90-481-2543-2-58
  • Jaetzold R, Schmidt H, Hornet ZB, Shisanya CA. 2006. Farm Management Handbook of Kenya. Natural Conditions and Farm Information (Eastern Province), Vol 11/C, 2nd edn. Nairobi, Kenya: Ministry of agriculture/GTZ.
  • Karaya H, Njoroge K, Mugo S, Ariga ES, Kanampiu F, Nderitu JH. 2012. Determination of levels of Striga germination stimulants for maize gene bank accessions and elite inbred lines. Int J Plant Prod. 6:209–224.
  • Katayama K, Ito O, Matsunaga R, Adu-Gyamfi JJ, Rao TP, Anders MM, Lee KK. 1995. Nitrogen balance and root behaviour in four pigeonpea-based intercropping systems. Fert Res. 42(1–3):315–319. doi: 10.1007/BF00750523
  • Keating BA, Siambi MN, Wafula BM. 1992. The impact of climatic variability on cropping research in semi-arid Kenya between 1955 and 1985. (p 16–25). In: Probert ME (Ed.). Sustainable dry land cropping. ACIAR Proc. No.41. Canberra, Australia: Australian Centre for International Agricultural Research (ACIAR).
  • Kumar K, Goh KM. 2000. Crop residues and management practices:effects on soil quality, soil nitrogen dynamics, crop yield and nitrogen recovery. Agron J. 688:199–319.
  • Kumar RR, Karjol K, Naik GR. 2011. Variation of sensitivity to drought stress in pigeonpea (Cajanus cajan (L.) Millsp.) during seed germination and early seedling growth. World Journal of Science and Technology 1:11–18.
  • Kumar Rao JVDK, Dart PJ, Matsumoto T, Day JM. 1980. Nitrogen fixation by pigeon pea. (p190–199). In: Proceedings of the International Workshop on Pigeonpeas, volume 1, 15–19 December 1980. Patancheru, India: ICRISAT Centre.
  • Kumar Rao JVDK. 1990. Pigeonpea: Nitrogen fixation. In: Nene YL, Hall SD, Sheila VK (Eds). The Pigeonpea. CAB International, Wallingford, UK. pp 233–256.
  • Kwesiga F, Franzel S, Matongoya P, Ajayi O, Phiri D, Katanga R, Kuntashula E, Place F, Chira T. 2003. Improved fallows in Eastern Zambia:History, farmer practice and impacts. Paper presented at the WEnt, IFPRI, NEPAD, CTA Conference Success in African Agriculture, Pretoria, 1–3 December 2003. Conference Paper No. 12. Harare, Zimbabwe: World Agroforestry Centre (ICRAF).
  • Mapfumo P, Giller KE, Mpepereki S, Mafongoya PL. 1999. Dinitrogen fixation by pigeonpea of different maturity types on granitic sandy soils in Zimbabwe. Symbiosis. 27:305–318.
  • Mapfumo P, Mtambanengwe F. 2004. Base nutrient dynamics and productivity of sandy soils under maize-pigeon pea rotational systems in Zimbabwe. (p 225–238). In: Bationo A (Ed.). Managing nutrient cycles to sustain soil fertility in sub-Saharan Africa. Nairobi, Kenya: Academy Science Publishers.
  • McCown RL, Keating BA, Probert ME, Jones RK. 1992. Strategies for sustainable crop production in semi-arid Africa. Outlook Agric. 21(1):21–31. doi: 10.1177/003072709202100105
  • Mucheru-Muna M, Mugendi D, Pypers P, Mugwe J, Kungu J, Vanlauwe B, Merckx R. 2013. Enhancing maize productivity and profitability using organic inputs and mineral fertilizer in Central Kenya small-hold farms. Exp Agric. 2013.
  • Mugwe J, Mugendi D, Mucheru-Muna M, Merckx R, Chianu J, Vanlauwe B. 2009. Determinants of the decision to adopt integrated soil fertility management practices by smallholder farmers in the Central highlands of Kenya. Exp Agric. 45(1):61–75. doi: 10.1017/S0014479708007072
  • Myaka FA, Sakala WD, Adu-Gyamfi JJ, Kamalongo D, Ngwira A, Odgaard R, Nielson NE, Hogh-Jensen H. 2006. Yields and accumulations of N and P in farmer-managed intercrops of maize–pigeonpea in semi-arid Africa. Plant Soil. 285:207–220. doi: 10.1007/s11104-006-9006-6
  • NAAIAP. 2014. Soil suitability evaluation for maize production in Kenya. A report by NationalAccelerated Agricultural Inputs Access Programme (NAAIAP) in collaboration with Kenya Agricultural Research Institute (KARI). Nairobi, Kenya: Department of Kenya Soil Survey.
  • Nadar HM, Faught WA. 1984. Effects of legumes on the yield of associated and subsequent maize in intercropping and rotation systems without nitrogen fertilizer. East African Agricultural and Forestry Journal 44 (Special issue):127–136.
  • Nagarajan L, Audi P, Jones R. 2008. Supply of pigeonpea genetic resources in local markets of Eastern Kenya. Discussion Paper 00819. Addis Ababa, Ethiopia: International Food Policy Research Institute (IFPRI).
  • Natarajan M, Willey RW. 1981. Growth studies in sorghum/pigeonpea intercropping with particular emphasis on canopy development and light interception. In: Proceedings of the International Workshop on Intercropping, 10–13 January 1979, Hyderabad, India: International Crops Research Institute for Semi-Arid Tropics (ICRISAT).
  • National Environmental Management Authority (NEMA). 2013.Machakos District Environmental Action Plan 2009–2013. Nairobi, Kenya: National Environmental Management Authority.
  • Ngome AF, Mtei MK, Becker M. 2011. Leguminous cover crops differentially affect maize yields in Western Kenya. Journal of Agriculture and Rural Development in the Tropics. 112:1–10.
  • Okalebo JR, Othieno CO, Gudu SO, Woomer PL, Karanja NK, Serrem C, Maritim HK, Sanginga N, Bationo A, Muasya R, et al. 2011. The African green revolution and the role of partnerships in East Africa. In: Bationo A, Waswa B, Okeyo JM, Maina F, Kihara J (Eds). Innovations as key to the Green Revolution in Africa. Vol.1. Exploring the scientific facts. Springer, Science + Business Media BV, Netherlands. DOI: 10.10007/978-90-481-2543-2-58.
  • Rao MR, Mathuva MN. 2000. Legumes for improving maize yields and income in semi-arid Kenya. Agric Ecosyst Environ. 78(2):123–137. doi: 10.1016/S0167-8809(99)00125-5
  • Recha J, Kinyangi J, Omondi H. 2012. Climate related risk and opportunities for agricultural adaptation and mitigation in semi-arid eastern Kenya. Climate Change, Agriculture and Food Security (CCAFS) Program. Nairobi, Kenya: ILRI.
  • Red de Grupos de Agricultua de Cobertura. 2002.Information base on species with potential for green manure and crop cultivation. Wallingford, UK: Rockefeller Foundation, CABI International
  • Reid JB, Goss MJ, Robertson PD. 1982. Relationship between the decreases in soil stability as affected by the growth of maize roots and changes in organically bound iron and aluminium. J Soil Sci. 33(3):397–410. doi: 10.1111/j.1365-2389.1982.tb01776.x
  • Shiferaw B, Okello J, Muricho G, Omiti J, Silim S, Jones R. 2008. Unlocking the Potential of High-Value Legumes in the Semi-Arid Regions: Analyses of the Pigeonpea Value Chains in Kenya. Research Report No.1. International Crops Research Institute for Semi-Arid Tropics (ICRISAT), Nairobi, Kenya.
  • Silim SN, Bramel PJ, Akonaay HB, Mligo JK, Christiansen JL. 2005. Cropping systems, uses, and primary in situ characterization of Tanzanian pigeonpea (Cajanus cajan (L.) Millsp.) landraces. Genet Resour Crop Evol. 52(6):645–654. doi: 10.1007/s10722-003-6015-7
  • Silim SN, Omanga PA, Okwach GE. 1997. The contribution of pigeonpea to sustainability of cereal-based dryland cropping systems in Kenya. In: Okwach GE, Siambi MM (Eds). Agricultural resource management for sustainable cropping in semi-arid eastern Kenya. Proceedings of the first review workshop of the CARMASAK project, 27–29 May, 1997, Machakos, Kenya. CARMASAK Proceedings No. 1. Kenya Agricultural Research Institute (KARI), Nairobi, Kenya. ISBN 9966-879-33-1.
  • Smaling EMA. Soil nutrient depletion in Sub-Saharan Africa. 1993. In: Van Reuler H, Prins W (Eds). The role of Plant Nutrients for Sustainable Food Crop Production in Sub-Saharan Africa. Leidschendam, Netherlands: VKP.
  • Snapp SS, Silim SN. 2002. Farmer preferences and legume intensification for low nutrient environments. Plant Soil. 245(1):181–192. doi: 10.1023/A:1020658715648
  • Tarhalkar PP, Rao NGP. 1981. Genotype-plant density considerations in the development of an efficient intercropping system for sorghum. In: Proceedings of the International Workshop on Intercropping, 10–13 January 1979, International Crops Research Institute for Semi-Arid Tropics (ICRISAT), Hyderabad, India.
  • Taylor RW, Griffin JL, Meche GA. 1982. Yoeld and quality characteristics of vetch species for forage and cover crops. Progress Report. 15:53–56. Wisconsin, USA: University of Wisconsin-Madison, Department of Agronomy.
  • Tobita S, Ito O, Matsunaga R, Rao TP, Rego TJ, Johansen C, Yoneyama T. 1994. Field evaluation of nitrogen fixation and use of nitrogen fertilizer by sorghum/pigeonpea intercropping on an Alfisol in the Indian semi-arid tropics. Biol Fertil Soils. 17(4):241–248. doi: 10.1007/BF00383976
  • USAID. 2010. Staple Foods value Chain Analysis: Country Report - Kenya. Nairobi, Kenya: United States Agency for International Development (USAID).
  • Vanlauwe B, Kihara J, Chivenge P, Pypers P, Coe R, Six J. 2011. Agronomic use efficiency of N fertilizer in maize-based systems in Sub-Saharan Africa within the context of integrated soil fertility management. Plant Soil. 339(1–2):35–50 doi: 10.1007/s11104-010-0462-7
  • Wanderi SW, Mburu MWK, Silim SN, Kihanda FM. 2011. Nitrogen use in maize (Zea mays)-pigeonpea (Cajanus cajans) intercrop in semi-arid conditions of Kenya. (p 563–570). In: Bationo A, Waswa B, Okeyo JM, Maina F, Kihara J (Eds). Innovations as Key to the Green Revolution in Africa, Vol.1. Exploring the Scientific Facts. Springer, Science + Business Media BV, Netherlands. DOI: 10.10007/978-90-481-2543-2-58
  • Woomer PL. 2010. Biological nitrogen fixation and grain legume enterprise: Guidelines for N2 Africa master farmers. (17 p). Kenya, Nairobi: Tropical Soil Biology and Fertility Institute of the International Centre for Tropical Agriculture.
  • WRB *World Reference Base for Soil Resources). 2006. World Soil Resources Report No. 103. Rome, Italy: Food and Agriculture Organization of the United Nations.

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