Solar Radiation Interception, Dry Matter Production and Yield among Different Plant Densities of Arachis spp. in Ibadan, Nigeria
Read full paper at:
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=48962#.VJjgNcCAM4
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=48962#.VJjgNcCAM4
Author(s)
The production of grain legumes is becoming a popular practice in the
humid south western Nigeria. Apart from the decreasing trends observed in
rainfall amount and duration as a result of climate change, solar radiation
interception also constitutes a limitation to crop production because of
persistent cloud cover. A trial was conducted at the University of Ibadan
experimental site to determine the effect of different plant densities of Arachis spp. on solar radiation
interception, dry matter production and yield in Ibadan, Nigeria with the aim
of ascertaining the best practice for groundnut production in the zone. The
treatments were three plant spacings (60 cm×20 cm,75 cm×20 cmand75 cm×40 cm), and three Arachis varieties
(Samnut 10, Samnut 21 and Pintoi) arranged in a split plot, randomized complete
block design with Arachis varieties as the main plot while plant
densities formed the subplot and replicated three times. Growth parameters
(number of leaves, dry leaf weight and dry stem weight) were measured at two
weeks interval while yield parameters (number of pods, dry pod weight, dry seed
weight and total dry matter) were determined at harvest. Intercepted radiation
by plants (PAR) was also taken along with the growth parameters. The highest
light interception from 42 - 105 days after planting (DAP) among the Arachis
spp. was recorded by Samnut 10, while at 42 - 87 DAP, plant density of75 cm×20 cmhad the highest light
interception. Dry matter production increased with light interception and was
highest at 105 DAP when light interception was between 55% and 60% for all Arachis varieties and all plant densities. In terms of pod weight and grain yield,
Samnut 10 performed better than Samnut 21 and also recorded the highest
Radiation Use Efficiency (RUE) for pod, seed and total dry matter. However, Arachis pintoi, a sterile and forage
plant with slower growth rate served as a cover crop capable of replenishing
soil nutrients and physical properties.
Cite this paper
Oluwasemire, K. and Odugbenro, G. (2014) Solar
Radiation Interception, Dry Matter Production and Yield among Different
Plant Densities of Arachis spp. in Ibadan, Nigeria. Agricultural Sciences, 5, 864-874. doi: 10.4236/as.2014.510093.
| [1] |
Simmonds, L.P. and Williams,
J.H. (1989) Population, Water Use and Growth of Groundnut Maintained on
Stored Water 11. Transpiration and Evaporation from Soil. Experimental
Agriculture, 25, 63-75. http://dx.doi.org/10.1017/S0014479700016458 |
| [2] | Karim, M.F. (1990) Growth, Development and Light Interception of Bambara Groundnut (Vigna Substaranea L Verdc.) and Groundnut (Arachis hypogaea) in Relation to Soil Moisture. M.Sc. Thesis, University of Nottingham, Nottingham. |
| [3] | Ravindra, V., Nautyal, P.C. and Joshi, Y.C. (1990) Physiological Analysis of Drought Resistance and Yield in Groundnut. Tropical Agriculture, 67, 290-296. |
| [4] |
Ntare, B.R., Williams, J.H. and
Dougbedji, F. (2001) Evaluation of Groundnut Genotypes for Heat
Tolerance under Yield Conditions in a Sahelian Environment Using a
Simple Physiological Model for Yield. The Journal of Agricultural
Sciences, 136, 81-88. http://dx.doi.org/10.1017/S0021859600008583 |
| [5] | Savage, G.P. and Keenan, J.I. (1994) The Composition and Nutritive Value Of groundnut Kernels. In: Smartt, J., Ed., The Groundnut Crop, Chapman and Hall, London. |
| [6] | Baruch, Z. and Fisher, M.J. (1996) Effect of Planting Method and Soil Texture on the Growth And development of Arachis pintoi. Tropical Grasslands, 30, 395-401. |
| [7] | Firth, D.J. and Wilson, G.P.M. (1995) Preliminary Evaluation of Species for Use as Permanent Ground Cover in Orchards on the North Coast of New South Wales. Tropical Grasslands, 29, 18-27. |
| [8] | Dwyer, G.T., O’Hare, P.J. and Cook, B.G. (1989) Pinto’s Peanut: A Ground Cover for Orchards. Queensland Agricultural Journal, 115, 153-154. |
| [9] |
Thomas, R.J., Asakawa, N.M.,
Rondon, M.A. and Alarcon, H.F. (1997) Nitrogen Fixation by Three
Tropical Forage Legumes in an Acid-Soil Savanna of Colombia. Soil
Biology and Biochemistry, 29, 801-808. http://dx.doi.org/10.1016/S0038-0717(96)00212-X |
| [10] | Jones, R.M. and Bunch, G.A. (2003) Experiences with Farm Pastures at the Former CSIRO Samford Research Station, South-East Queensland, and How These Relate to Results from 40 Years of Research. Tropical Grasslands, 37, 151-164. |
| [11] |
Tollenaar, M. and Bruuselma,
T.W. (1988) Efficiency of Maize Dry Matter Production during Periods of
Complete Leaf Area Expansion. Agronomy Journal, 80, 580-585. http://dx.doi.org/10.2134/agronj1988.00021962008000040008x |
| [12] |
Muchow, R.C. (1989) Comparative
Productivity of Maize, Sorghum and Pearl Millet in a Semi-Arid Tropical
Environment I. Yield Potential. Field Crops Research, 20, 191-205. http://dx.doi.org/10.1016/0378-4290(89)90079-8 |
| [13] |
Huber, H. and Stuefer, J.F.
(1997) Shade-Induced Changes in the Branching Pattern of a Stoloniferous
Herb: Functional Response or Allometric Effect? Oecologia, 110,
478-486. http://dx.doi.org/10.1007/s004420050183 |
| [14] |
Knapp, A.K. and Smith, D.L.
(1997) Leaf Angle, Light Interception and Water Relations. Demonstrating
How Plants Cope with Multiple Resource Limitations in the Field.
American Biology Teacher, 59, 365-368. http://dx.doi.org/10.2307/4450331 |
| [15] | Caliskan, S., Caliskan, M.E., Erturk, E. and Arioglu, H. (2008) Growth and Development of Virginia Type Groundnut Cultivars under Mediterranean Conditions. Acta Agriculturae Scandinavica Section B-Soil and Plant Science, 58, 105-113. |
| [16] | Pearcy, R.W. and Vallarades, F. (1999) Resource Acquisition by Plants: The Role of Crown Architecture. In: Press, M.C., Scholes, J.D. and Baker, M.G., Eds., Physiological Plant Ecology, Blackwell, MPG, Cornwall, 45-66. |
| [17] | Valladares, F. and Pearcy, R.W. (2000) The Role of Crown Architecture for Light Harvesting and Carbon Gain in Extreme Light Environments Assessed with a Realistic 3-D Model. Anales del Jardín Botánico de Madrid, 58, 3-16. |
| [18] |
Collino, D.J., Dardanelli, J.L.,
Sereno, R. and Racca, R.W. (2001) Physiological Responses of Argentine
Peanut Varieties to Water Stress. Light Interception, Radiation Use
Efficiency and Partitioning of Assimilates. Field Crops Research, 70,
177-184. http://dx.doi.org/10.1016/S0378-4290(01)00137-X |
| [19] | Ong, C.K., Simmonds, L.P. and Matthews, R.B. (1987) Responses to Saturation Deficit in a Stand of Groundnut (Arachis hypogaea L.). 2. Growth and Development. Annals of Botany, 59, 121-128. |
| [20] |
Mungai, D.N., Stigter, C.J.,
Coulson, C.L. and Ng’anga, J.K. (2000) Simply Obtained Global Radiation,
Soil Temperature and Soil Miosture in an Alley Cropping System in
Semi-Arid Kenya. Theoretical & Applied Climatology, 65, 63-78. http://dx.doi.org/10.1007/s007040050005 |
| [21] |
Marshall, B. and Willey, R.W.
(1983) Radiation Interception and Growth in an Intercrop of Pearl
Millet/Groundnut. Field Crop Research, 7, 141-160. http://dx.doi.org/10.1016/0378-4290(83)90018-7 |
| [22] |
Giunta, F., Pruneddu, G. and
Motzo, R. (2009) Radiation Interception and Biomass and Nitrogen
Accumulation in Different Cereal and Grain Legume Species. Field Crops
Research, 110, 76-84. http://dx.doi.org/10.1016/j.fcr.2008.07.003 |
| [23] | Weiss, E.A. (1983) Oil Seed Crops. Longman Inc., New York. |
| [24] | Chude, V.O., Olayiwola, C., Daudu, P. and Ekeoma, A. (Eds.) (2012) Fertilizer Use and Management Practices for Crops in Nigeria. 3rd Edition, Federal Fertilizer Department (FFD), Federal Ministry of Agriculture and Rural Development, Abuja, 204. |
| [25] | PCARRD (Philippine Council for Agriculture and Resources Research and Developemnt)/USDA (U.S. Department of Agriculture) (1986) Environmental Adaptation of Crops. PCARRD Book Series No. 37, Los Banos, Laguna. |
| [26] | Misari, S.M., Boye-Goni, S. and Kaigama, B.K. (1988) Groundnut Improvement, Production, Management and Utilization in Nigeria: Problems and Prospects. First ICRISAT Regional Goundnut Meeting for West Africa, Niamey, 61-64. |
| [27] | De la Cruz, R., Suarez, S. and Ferguson, J.E. (1994) The Contribution of Arachis pintoi as a Ground Cover in Some Farming Systems of Tropical America. In: Kerridge, P.C. and Hardy, B., Eds., Biology and Agronomy of Forage Arachis, CIAT, Cali, 102-108. |
| [28] |
Monteith, J.L. (1977) Climate
and Efficiency of Crop Production in Britain. Philosophical Transactions
of the Royal Society London B, 281, 277-294. http://dx.doi.org/10.1098/rstb.1977.0140 |
| [29] | Hay, R. and Porter, J. (2006) The Physiology of Crop Yield. 2nd Edition, Blackwell Publishing, Oxford. |
| [30] |
Wiegand, C.L., Gebermann, A.H.,
Gallo, K.P., Blad, B.L. and Dusek, D. (1990) Multisite Analysis of
Spectral-Biophysical Data for Corn. Remote Sensing of Environment, 33,
1-16. http://dx.doi.org/10.1016/0034-4257(90)90051-M |
| [31] | Daughtry, C.S.T., Gallo, K.P., Goward, S.N., Prince, S.D. and Kustas, W.P. (1992) Spectral Estimates of Absorbed Radiation and Phytomass Production in Corn and Soybean Canopies. Remote Sensing of Environment, 39, 141-152. |
| [32] |
Black, C and Ong, C. (2000)
Utilization of Light and Water in Tropical Agriculture. Agricultural and
Forest Meteorology, 104, 25-47. http://dx.doi.org/10.1016/S0168-1923(00)00145-3 |
| [33] | Matthews, R.B., Harris, D., Williams, J.H. and Nageswara Rao, R.C. (1988) The Physiological Basis for Yield Differences between Four Genotypes of Groundnut (Arachis hypogaea) in Response to Drought. 2. Solar Radiation Interception and Leaf Movement. Experimental Agriculture, 24, 203-213. http://dx.doi.org/10.1017/S0014479700015957 |
| [34] |
Haro, R.J., Otegui, M.E.,
Collino, D.J. and Dardanelli, J.L. (2007) Environmental Effects on Seed
Yield Determination of Irrigated Peanut Crops: Links with Radiation Use
Efficiency and Crop Growth Rate. Field Crops Research, 103, 217-228. http://dx.doi.org/10.1016/j.fcr.2007.06.004 |
| [35] | Canavar, Õ. and Kaynak, M.A. (2010) Growing Degree Day and Sunshine Radiation Effects on Peanut Pod Yield and Growth. African Journal of Biotechnology, 9, 2234-2241. eww141223lx |
评论
发表评论