A field trial was set in 2018/2019 season to investigate the capacity of cashew seeds to germinate and its vegetative performance with respect to the storage period at Agricultural Research Institute-(TARI-Naliendele), Mtwara-Tanzania. The variable investigated was the duration of the cashew seeds storage period. Cashew seeds were harvested at polyclonal seed gardens (PSG) for three har vesting seasons 2016, 2017 and 2018 consecutively; seeds were sorted, weighe d and soaked before sowing to test viability in respective to storage time. Using a randomized complete block design obeying factorial approach the experiment was laid with three replications. The observed growth parameters were height (cm), number of leaves, leaf length (cm), leaf width (cm), leaf area (sq cm), leaf area index (LAI), canopy diameter (cm) and seedlings canopy ground area (sq cm). The a nalysis was done by using GenStat under Duncan Multiple Range Test (DMRT) on seed germination. The findings indicated that cashew seeds harvested in 2018 were the superior in both germination and growth vigor differing significantly (p < 0.05) from other seeds harvested in the previous years. Cashew seeds harvested in 2017 were weak and those harvested in 2016 were the worse such that no seeds were able even to germinate. Thus, it is recommendable to sow cashew seeds harvested at the current season for sowing than those stored for more than a year.
Catarino, L., Menezes, Y. and Sardinha, R. (2015) Cashew Cultivation in Guinea-Bissau–Risks and Challenges of the Success of a Cash Crop. Scientia Agricola, 72, 459-467. https://doi.org/10.1590/0103-9016-2014-0369
Adeigbe, O.O., Muyiwa, A.A., Adewale, B.D. and Olasupo, F.O. (2015) A Review on Cashew Research and Production in Nigeria in the Last Four Decades. Scientific Research Essays, 10, 196-209. https://doi.org/10.5897/SRE2014.5953
Nhantumbo, A. (2017) Determinants of Adoption of Technologies for Cashew Production in Nampula, Mozambique. Journal of Experimental Agriculture International, 17, 1-11.
Masenya, C., et al. (2018) Bank of Tanzania.
Azam-Ali, S. and Judge, E. (2001) Small-Scale Cashew Nut Processing. J Coventry, ITDG Schumacher Centre for Technology Development Bourton, Dunsmore.
Mitra, A., Pramanick, P. and a Parkhi, U. (2015) Leaf Composition of Cashew (Anacardium occidentale. L): A Case Study from the Jajpur District, Odisha. Journal of Chemical, Biological Physical Sciences, 5, 2634.
Dasgupta, P., et al. (2012) Rural Areas.
Antwi-Agyei, P., Fraser, E.D.G., Dougill, A.J., Stringer, L.C. and Simelton, E. (2012) Mapping the Vulnerability of Crop Production to Drought in Ghana Using Rainfall, Yield and Socioeconomic Data. Applied Geography, 32, 324-334. https://doi.org/10.1016/j.apgeog.2011.06.010
Bhavya, V.P., Anil Kumar, S., Ashok Alur, S.K.K., Shivakumar, K.M. and Shivanna, M. (2018) Effect of Different Cropping System on Important Soil Enzyme Activity, Orga nic Carbon and Microbial Activity with Different Depth. International Journal of Current Microbiology and Applied Sciences, 7, 315-322. https://doi.org/10.20546/ijcmas.2018.701.034
Pye, S., Watkiss, P. and Savage, M. (2010) Opportunities for Low Carbon Investment in Tanzania—An Assessment of Future Emissions Growth and Low Carbon Reduction Potential. Stockholm Environment Institute, UK.
Aravindakshan, K., et al. (1986) Studies on Certain Physico-Chemical Attributes of Apple and Nuts of Selected Cashew Types. Cashew Causerie, 8, 5-8.
Naka, T. and Martin, D.K. (2016) Assessment of Some Biochemical Parameters of Apple Juices from Two Cashew Varieties as Affected by Three Regions of co′te d Ivoire. Journal of Advances in Agriculture, 5, 621-633.
Makule, E.E, Masawe, P. and Kassim, N. (2017) Physio-Chemical Properties of Five Cashew Apple (Anacardium occidentale L.) Varieties Grown in Different Regions of Tanzania. International Journal of Biosciences, 11, 386-395.
Masawe, P.A.L. and Kapinga, F.A. (2017) The First Dwarf Cashew Varieties in Tanzania. Dar es Salaam: CRP ARI, Naliendele.
Sabaté, J. (2003) Nut Consumption and Body Weight. The American journal of Clinical Nutrition, 78, 647-650. https://doi.org/10.1093/ajcn/78.3.647S
Ngwegwe, S.S. (2019) Determinants of Tanzanian Business Community Engagement in Export Trade-In Dar Es Salaam: A Case of Agricultural Products. College of Business Education, Tanzania.
Kidunda, B.R., Kasuga, L.J., Magani, S.F. and Mwakanyamale, D.F. (2013) Adoption of Cashew Production Technologies by Farmers in the South Eastern Tanzania. Proceedings of 2013 International Conference on Food and Agricultural Sciences, Melakaelaka, 5 October 2013, 94-99.
Adebisi, M.A., Kehinde, T.O., Abdul-Rafiu, A.M., et al. (2015) Influence of Nut Size, Hydro Priming Duration and Storage Period on Seedling Emergence and Early Seedling Vigour Characters in Cashew (Anacardium occidentale L.). Pertanika Journal of Tropical Agricultural Science, 38, 465-480.
Kehinde, T., Adebisi, M.A., Alegiledoye, A.O., Ajani, O.O. and Shofuyi, K.A. (2015) Evaluation of Seed Nut Size as Index of Selection for Superior Seed Quality Attributes in Two Biotypes of Cashew (Anacardium occidentale). Plant Breeding, 72, 69-81. https://doi.org/10.1515/plass-2015-0032
Pradhan, B.K. and Badola, H.K. (2012) Effect of Storage Conditions and Storage Periods on Seed Germination in Eleven Populations of Swertia chirayita: A Critically Endangered Medicinal Herb in Himalaya. The Scientific World Journal, 2012, Article ID: 128105. https://doi.org/10.1100/2012/128105
Freeland, P. (1976) Tests for the Viability of Seeds. Journal of Biological Education, 10, 57-64. https://doi.org/10.1080/00219266.1976.9654060
Dahamarudin, L. and Rivaie, A. (2013) Germination Capacity, Growth and Yield of Three Upland Rice Varieties Increased Following Seed Invigoration Treatments. International Research Journal of Agricultural Science Soil Science, 3, 43-50.
Akos, I., Tagwai, M. and Dabo, J. (2017) Effect of Interaction between Seed Size and Sowing Depth of Cashew Anacardium occidentale (L) on Seedlings Emergence and Height Under Treatment with Organic and Inorganic Fertilizer in Gidan-Waya, Southern Guinea Savanna, Nigeria. Science World Journal, 12, 28-35.
Bezerra, M.A., de Lacerda, C.F., Filho, E.G., et al. (2007) Physiology of Cashew Plants Grown under Adverse Conditions. Brazilian Journal of Plant Physiology, 19, 449-461. https://doi.org/10.1590/S1677-04202007000400012
Oyewole, C. and Koffa, K. (2010) Effect of Storage, Size of Nut and Soaking Length on Sprout Emergence in Cashew. Thai Journal of Agricultural Science, 43, 39-45.
Adesina, J.M., Adedire, O. and Adeyemi, J.A. (2017) Potential of Four Tropical Plant Powders as Grain Protectants against Callosobruchus maculatus (Coleoptera: chrysomelidae). Progress in Biological Sciences, 7, 119-126.
Van Waes, J. and Debergh, P. (1986) Adaptation of the Tetrazolium Method for Testing the Seed Viability, and Scanning Electron Microscopy Study of Some Western European Orchids. Physiologia Plantarum, 66, 435-442. https://doi.org/10.1111/j.1399-3054.1986.tb05947.x
Zanjan, M.G. and Asli, D.E. (2012) A Study of Seed Germination and Early Seedling Growth of Wheat Genotypes Affected by Different Seed Pyridoxine-Priming Duration. Annals of Biological Research, 3, 5687-5691.
Yuan, X. and Wen, B. (2018) Seed Germination Response to High Temperature and Water Stress in Three Invasive Asteraceae Weeds from Xishuangbanna, SW China. PloS ONE, 13, e0191710. https://doi.org/10.1371/journal.pone.0191710
Mao, P., Guo, L., Gao, Y.X., et al. (2019) Effects of Seed Size and Sand Burial on Germination and Early Growth of Seedlings for Coastal Pinus thunbergii Parl. in the Northern Shandong Peninsula, China. Forests, 10, 281. https://doi.org/10.3390/f10030281
Reed, S. (2005) Effect of Storage Temperature and Seed Moisture on Germination of Stored Flowering Dogwood Seed. Journal of Environmental Horticulture, 23, 29-32. https://doi.org/10.24266/0738-2898-23.1.29
Conacher, C., Poiner, I.R., Bultler, J., et al. (1994) Germination, Storage and Viability Testing of Seeds of Zostera capricorni Aschers. from a Tropical Bay in Australia. Aquatic Botany, 49, 47-58. https://doi.org/10.1016/0304-3770(94)90005-1
Breda, N.J. (2003) Ground-Based Measurements of Leaf Area Index: A Review of Methods, Instruments and Current Controversies. Journal of Experimental Botany, 54, 2403-2417. https://doi.org/10.1093/jxb/erg263
Souza, F.H. and Marcos-Filho, J. (2001) The Seed Coat as a Modulator of Seed-Environment Relationships in Fabaceae. Brazilian Journal of Botany, 24, 365-375. https://doi.org/10.1590/S0100-84042001000400002
Guberac, V., Lalic, A., Maric, S., et al. (2003) Hermetically Sealed Storage of Cereal Seeds and Its Influence on Vigour and Germination. Journal of Agronomy, 189, 54-56.
Aliyu, O.M. and Akintaro, G.O. (2007) Studies on the Effect of Storage Period and Nut Size on the Seedling Vigour of Cashew. American-Eurasian Journal of Scientific Research, 2, 68-74.
Simpson, G. (1968) Association between Grain Yield Per Plant and Photosynthetic Area above the Flag-Leaf Node in Wheat. Canadian Journal of Plant Science, 48, 253-260. https://doi.org/10.4141/cjps68-046
Ewert, F. (2004) Modelling Plant Responses to Elevated CO2: How Important Is Leaf Area Index? Annals of Botany, 93, 619-627. https://doi.org/10.1093/aob/mch101
Luo, T., Pan, Y.D., Ouyang, H., et al. (2004) Leaf Area Index and Net Primary Productivity along Subtropical to Alpine Gradients in the Tibetan Plateau. Global Ecology, 13, 345-358.
Weis, I.M. (1982) The Effects of Propagule Size on Germination and Seedling Growth in Mirabilis hirsuta. Canadian Journal of Botany, 60, 1868-1874. https://doi.org/10.1139/b82-233
McDowell, N.G., Adams, H.D., Baily, J.D., et al. (2007) The Role of Stand Density on Growth Efficiency, Leaf Area Index, and Resin Flow in Southwestern Ponderosa Pine Forests. Canadian Journal of Forest Research, 37, 343-355. https://doi.org/10.1139/X06-233
Asrar, G., Fuchs, M., Haltfield, J.L., et al. (1984) Estimating Absorbed Photosynthetic Radiation and Leaf Area Index from Spectral Reflectance in Wheat. Agronomy journal, 76, 300-306. https://doi.org/10.2134/agronj1984.00021962007600020029x
Reiser, L. and Fischer, R.L. (1993) The Ovule and the Embryo Sac. The Plant Cell, 5, 1291. https://doi.org/10.2307/3869782
Zhu, J., Zhang, C. and Lynch, J.P. (2010) The Utility of Phenotypic Plasticity of Root Hair Length for Phosphorus Acquisition. Functional Plant Biology, 37, 313-322. https://doi.org/10.1071/FP09197
Shabala, S.N. and Lew, R.R. (2002) Turgor Regulation in Osmotically Stressed Arabidopsis Epidermal Root Cells. Direct Support for the Role of Inorganic Ion Uptake as Revealed by Concurrent Flux and Cell Turgor Measurements. Journal of Plant Physiology, 129, 290-299. https://doi.org/10.1104/pp.020005