Influence of Water Content on the Quality of Pigeonpea Seeds
- 1 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 2 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 3 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 4 Department of Agricultural, University of Rio Verde, Rio Verde, Brazil
- 5 Department of Agricultural, Federal University of Goiás, Jataí, Brazil
- 6 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 7 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 8 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 9 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
- 10 Department of Agricultural Engineering, Sate University of Goiás, Anápolís, Brazil
Abstract
The species Cajanus cajan L. where pigeonpea is from presents a harvest potential in tropical regions for it is used as human and animal feed, besides being used as green fertilizer. However, the harvest area of this Fabaceae is still insignificant, due to especially the lack of quality seeds. In this context, it is possible to affirm that drying and store are portrayed as important steps for obtaining superior quality seeds. The aim of this study is to evaluate the physiologic quality of dwarf pigeonpea seeds, with different water content during storage. A factorial scheme 3 × 6 was adopted in the delimitation completely randomized, with four replications. Treatments were constituted by the combination of lots of seeds containing three different water contents (11 % , 14 % and 16%), submitted to a 10-month storage period, with evaluations every two months (0 , 2 , 4 , 6 , 8 and 10). Seeds were stocked in a bag type kraft under normal lab conditions, that is, no control. Physiologic quality of the seeds was evaluated through the following tests: Germination Pattern Test — GPT, first count of germination, accelerated aging and electric conductivity. It can be concluded that pigeonpea with hard seeds containing water content at 11% existing superior physiologic quality throughout the 10-month storage, under no controlled condition, certainly promoted by the less intense breathing from the reserves cumulated in the seed lot. Pigeonpea seeds storage with water content superior to 14% promotes a sharp decrease of physiologic quality, due to an increase in metabolic activity.
- Saxena, K.B. (2008) Genetic Improvement of Pigeon Pea: A Review. Tropical Plant Biology, 1, 159-178. https://doi.org/10.1007/s12042-008-9014-1
- Saxena, K.B., Kumar, R.V. and Sultana, R. (2010) Quality Nutrition through Pigeonpea—A Review. Health, 2, 1335-1344. https://doi.org/10.4236/health.2010.211199
- Mula, M.G. and Saxena, K.B. (2010) Lifting the Level of Awareness on pigeonpea—A Global Perspective. International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru.
- Ferreira, V.F., Oliveira, J.A.A., Ferreira, T.F., Reis, L.V., Andrade, V. and Costa Neto, J. (2013) Quality of Maize Seeds Harvested and Husked at High Moisture Levels. Journal Seed Science, 35, 263-273. https://doi.org/10.1590/S2317-15372013000300001
- Leprince, O. and Buitink, J. (2010) Desiccation Tolerance: From Genomics to the Field. Plant Science, 179, 554-564. https://doi.org/10.1016/j.plantsci.2010.02.011
- Suma, A., Sreenivasan, K., Singh, A.K. and Radhamani, J. (2013) Role of Relative Humidity in Processing and Storage of Seeds and Assessment of Variability in Storage Behaviour in Brassica spp. and Eruca sativa. The Scientific World Journal, 1, 1-9. https://doi.org/10.1155/2013/504141
- Zonta, J.B., Araujo, E.F., Araujo, R.F., Dias, L.A.S. and Ribeiro, P.H. (2014) Storage of Phisic Nut Seeds in Different Environments and Packagings. Bioscience Journal, 30, 599-608.
- Pandey, A.K., Palni, U.T. and Tripathi, N.N. (2012) Evaluation of Clausena pentaphylla (Roxb.) DC Oil as Fungitoxicant against Storage Mycoflora of Pigeon Pea Seeds. Journal of the Food and Agriculture, 93, 1680-1686. https://doi.org/10.1002/jsfa.5949
- Lisboa, C.F., Cunha, D.A., Teixeira, I.R., Devilla, I.A. and Campos, A.J. (2014) Physiological Deterioration of Pigeon Pea Seeds during Storage. African Journal of Agricultural Research, 9, 3473-3479.
- Copeland, L.O. and McDonald, M.B. (1999) Principles of Seed Science and Technology. Kluwer Academic Publishers, London, 409 p. https://doi.org/10.1007/978-1-4615-1783-2
- Marcos Filho, J. (2015) Fisiologia de sementes de plantas cultivadas. [Seed Physiology of Cultivated Plants.] Abrates, Londrina, 660 p.
- Nakagawa, J., Cavariani, C. and Toledo, M.Z. (2009) Germinação de sementes armazenadas de guandu. [Germination of Stored Pigeonpea Seeds.] Revista Brasileira de Sementes, 31, 43-48. https://doi.org/10.1590/S0101-31222009000400005