The performance of lowland rice ( Oryza sativa L.) cultivars on iron toxic soil augmented with compost
Автор: Dada O.A., Aminu J.A.
Журнал: Журнал стресс-физиологии и биохимии @jspb
Статья в выпуске: 4 т.9, 2013 года.
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Performance of lowland rice grown on anaerobic wetland soil is greatly affected by iron toxicity disorder in Nigeria. Better nutrient management and cultivation of resistant varieties have been recommended as strategy to manage this nutrient disorder. Information on intraspecific lowland NERICA cultivars grown on iron toxic soil augmented with compost is scanty. Therefore, the effect of different rates of compost on growth, dry matter and grain yield of lowland NERICA cultivars grown on iron toxic soil was investigated. A greenhouse experiment comprising of three (two NERICAs and ITA 212) lowland rice cultivars and four varying rates of compost arranged in completely randomized design with six replicates was conducted in greenhouse of Botany Department, University of Ibadan. Data collected on growth and yield parameters were analysed using ANOVA and LSD at P≤ 0.05. Correlation and simple linear regression were used to establish relationship between growth and iron toxicity scores. Results showed that iron toxicity significantly (p≤0.05) reduced growth and yield of lowland rice. Growth and grain yield of NERICA cultivars were significantly better (P ≤0.05) on soil augmented with compost than control. Grain yield was significantly related to the number of leaves affected by iron toxicity. Cultivating lowland NERICA-L-1 on iron toxic soil augmented with 8t ha -1of compost will enhance better growth, dry matter characteristics and increase lowland NERICA grain yield.
Iron toxicity, lowland nerica, compost, wetland, grain yield
Короткий адрес: https://sciup.org/14323802
IDR: 14323802
Список литературы The performance of lowland rice ( Oryza sativa L.) cultivars on iron toxic soil augmented with compost
- Abifarin, A. O. (1989). Progress in breeding rice for tolerance to iron toxicity. In: WARDA Annual Report 1989. Bouaké, Côte d’Ivoire: West Africa Rice Development Association. pp 34-39
- Arancon, N.Q. and Edwards, C.A. (2005). Effects of vermicomposts on plant growth. Paper presented during the International Symposium Workshop on Vermi Technologies for Developing Countries (ISWVT 2005), Los Banos, Philippines November 16-18, 2005. 1-25
- Audebert, A. (2006). Diagnosis of risk and approaches to iron toxicity management in lowland rice farming. In Iron Toxicity in Rice-based Systems in West Africa. A. Audebert, L.T. Narteh, P. Kiepe, D. Millar and B. Beks (Eds.) Africa Rice Center (WARDA). Cotonou, Benin. 6 -17
- Ayeni, L.S. (2011). Integrated plant nutrition management: a panacea for sustainable crop production in Nigeria. International Journal of Soil Science 6(1): 19 -24
- Bremner, J. M., Mulvaney C. S. (1982). Nitrogen total. p.595-624. In A.L. page (ed.), Methods of soil analysis. Agron. No.9, part 2: Chemical and microbiological properties, 2nd ed., Am. Soc. Agron., Madison, WI, USA. Coalition for African Rice Development (CARD) (2009). National rice development strategy (NRDS). 73p
- Diatta, S. and Sahrawat, L.K (2006). Iron toxicity of rice in West Africa: Screening tolerant varieties and the role of N, P, K and ZN. In Iron Toxicity in Rice-based Systems in West Africa. A. Audebert, L.T. Narteh, P. Kiepe, D. Millar and B. Beks (Eds.). Africa Rice Center (WARDA). Cotonou, Benin. 75 -81
- Drozd J. and Weber J. (1996). The role of humic substances in the ecosystem and in environmental protection. Abstracts of the 8 Meeting of the International Humic Substances Society. ISBN 83-90643-0-9, PTSH Wroclaw, 330 pp
- Gomez, A.K. (1972). Techniques for field experiments with rice. The IRRI, Philippines. 45 p
- Herviyanti, Teguh B.P, Faehri A, Amrizals. (2006). Humic acid and water management to decrease Ferro (Fe2+) solution and increase productivity of established new rice field. J Trop Soils, 7(1): 2012: 9-17
- IITA, (2002). Resources and crop management: IITA 2002 Annual Report, Ibadan
- IRRI, (1984). Terminology for rice growing environments. International Rice Research Institute, Manila
- Masajo, T. M., Alluri, K., Abifarin, A. O and Jankiram, D. (1986). Breeding for high and stable yields in Africa. In: The Wetlands and Rice in Sub-saharan Africa. A S R Juo and J A Lowe (Eds). International Institute of Tropical Agriculture, Ibadan, Nigeria. pp 107-114
- McLean, E.O., (1982). Soil pH and lime requirement. Pp. 199-224, In A.L. page (ed), methods of soil analysis, part 2: chemical and microbiological properties. Am. Soc. Agron. Madison, WI, USA
- Olaleye, O. A; Ogunkunle, O.A; Singh, B. N; Odeleye, F.O; Dada, O.A and Senjobi, B.A. (2009). Elemental composition of two rice cultivars under potentially toxic on Aquept and Aquent. Not. Sci. Biol. 1(1): 46-49
- Oworu, O. O and Dada, O. A. (2009). Influence of Compost on Growth, Nutrient Uptake and Dry Matter Accumulation of Grain Amaranths (Amaranthus hypochondriacus. L.) on Oxic Paleulstalf. Nigeria Journal of Science 43: 7-18
- Phillips, D; Nkonya, E; Pender, J and Oni, O.A. (2009). Constraints to Increasing Agricultural Productivity in Nigeria: A Review. Nigeria Strategy Support Program (NSSP) Background Paper No. NSSP 006. 1-72
- Rahji, M.A.Y and Adewumi, O. A. (2008). Market supply response and demand for local rice in Nigeria: implications for self-sufficiency policy Journal of Central European Agriculture 9(3): 567-574
- SAS. (2002). Statistical Analysis System (Version 9) by SAS Institute Inc., Cary, NC, USA
- Singh, B. N., Fagade, S., Ukwungwu, M. N., Williarn, C., Jagtap, S.S., Oladimeji, O., Effisue, A. and Okhidievbie, O. (1997). Rice growing environments and biophysical constraints in different agro-ecological zones of Nigeria. Meteorological Journal 2(1): 35-44
- Walkley, A. (1947). A Critical Examination of a Rapid Method for Determination of Organic Carbon in Soils -Effect of Variations in Digestion Conditions and of Inorganic Soil Constituents. Soil Sci. 63: 251-257