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Trend Analysis of Dry Bean Production, Yield, Consumption, Import and Export in South Africa from 1970 to 2019 Cover

Trend Analysis of Dry Bean Production, Yield, Consumption, Import and Export in South Africa from 1970 to 2019

Open Access
|Sep 2024

References

  1. Abid, S., Shah, N.A., Hassan, A., Farooq, A., Masood, M.A. (2014). Growth and trend in area, production and yield of major crops of Khyber Pakhtunkhwa, Pakistan. Asian J. Agric. Rural Dev., 4(2), 149–155.
  2. Akhter, S., Sarker, J.R., Das, K.R. (2016). Growth and trend in area, production and yield of major crops of Bangladesh. Int. J. Econ. Fin. Manag. Sci., 4(1), 20–25. https://doi:10.11648/j.ijefm.20160401.13
  3. Ayele, A., Worku, M., Bekele, Y. (2021). Trend, instability and decomposition analysis of coffee production in Ethiopia (1993–2019). Heliyon, 7(9), e08022. https://doi.org/10.1016/j.heliyon.2021.e08022
  4. Bansal, S., Singh, L. (2020). An analysis of growth and variability in area, production and yield of groundnut in Punjab. Int. J. Farm Sci., 10(1), 61–65. http://dx.doi.org/10.5958/2250-0499.2020.00013.0
  5. Baudoin, M.A., Vogel, C., Nortje, K., Naik, M. (2017). Living with drought in South Africa: lessons learnt from the recent El Niño drought period. Int. J. Disast. Risk Red., 23, 128–137. doi.org/10.1016/j.ijdrr.2017.05.005
  6. Bee, N., Rahman, F. (2020). Growth rate of area, production and productivity of sugarcane crop in India. Int. J. Env. Agric. Res., 6(4), 13–19. retrieved from: https://ijoear.com/assets/articles_menuscripts/file/IJOEAR-APR-2020-7.pdf
  7. Bellucci, E., Bitocchi, E., Rau, D., Rodriguez, M., Biagetti, E., Giardini, A., Attene, G., Nanni, L., Papa, R. (2014). Genomics of Origin, Domestication and Evolution of Phaseolus vulgaris. In: R. Tuberosa, A. Graner, E. Frison (Eds.), Genomics of Plant Genetic Resources (pp. 484–489). Dordrecht: Springer.
  8. Breitenbach, M.C., Fényes, T.I. (2000). Maize and wheat production trends in South Africa in a deregulated environment in South Africa. Agrekon, 39(3), 292–312. http://dx.doi.org/10.1080/03031853.2000.9523578
  9. Cuddy, J.A., Valle, P.D. (1978). Measuring the instability of time series data. Oxf. Bull. Econ. Stat., 40(1), 79–85. https://doi.org/10.1111/j.1468-0084.1978.mp40001006.x
  10. Dandekar, V.M. (1980). Introduction-seminar on data base and methodology for the study of growth rates in agriculture. Ind. J. Agr. Econ., 35, 1–12. retrieved from: https://api.semanticscholar.org/CorpusID:151227084
  11. De Ron, A.M., Papa, R., Bitocchi, E., González, A.M., Debouck, D.G., Brick, M.A., Fourie, D., Marsolais, F., Beaver, J., Geffroy, V., McClean, P. (2015). Common bean. In: Grain Legumes (pp. 1–36). New York: Springer.
  12. DAFF (Department of Agriculture, Forestry and Fisheries). (2010). Dry bean. Retrieved 10th March 2019 from: https://www.daff.gov.za
  13. DAFF (Department of Agriculture, Forestry and Fisheries). (2018). Dry bean market value chain profile. Retrieved 10th March 2019 from: https://www.daff.gov.za
  14. DAFF (Department of Agriculture, Forestry and Fisheries). (2019a). Trends in the Agricultural Sector. Retrieved 1st Nov 2019 from: https://www.daff.gov.za
  15. DAFF (Department of Agriculture, Forestry and Fisheries). (2019b). Abstract of Agricultural Statistics. Retrieved 1st Nov 2019 from: https://www.daff.gov.za
  16. DALRRD (Department of Agriculture, Land Reform and Rural Development). (2020). A profile of the South African dry bean market value chain. Dry Bean Value Chain Profile 2020.pdf (dalrrd.gov.za).
  17. Deb, U., Pramanik, S. (2015). Groundnut production performance in Bangladesh: a district level analysis. Econ. Aff., 60(3), 391–400.
  18. Department of Basic Education (2020). Food Specifications – for products marketed to the National School Nutrition Programme (NSNP). Retrieved 10th Feb 2022 from: www.sahealthinfo.org/nutrition/safoodbased.htm
  19. Devi, Y.L., Arivelarasan, T., Kapngaihlian, J. (2017). Pulses production in India: Trend and decomposition analysis. Econ. Aff., 62(3), 435–438. 10.5958/0976-4666.2017.00054.7
    DeviY.L. ArivelarasanT. KapngaihlianJ. 2017 Pulses production in India: Trend and decomposition analysis Econ. Aff. 623 435 43810.5958/0976-4666.2017.00054.7
  20. DPO (Dry Bean Producers Organization). (2015). SA Dry beans Summer, 51 Edition. Retrieved 15th Feb 2019 from: www.beans.co.za
  21. Encyclopedia of Food Grains (2016). Second Edition. Vol. 1, pp. 297–306. Retrieved 15th Feb 2021 from: https://www.sciencedirect.com/referencework/9780123947864/encyclopedia-of-food-grains
  22. Fageria, N.K., Baligar, V.C., Moreira, A., Portes, T.A. (2010). Dry bean genotypes evaluation for growth, yield components and phosphorus use efficiency. J. Plant Nutr., 33(14), 2167–2181. http://dx.doi.org/10.1080/01904167.2010.519089
  23. FAOSTAT (2020). FAOSTAT: Crops. Retrieved 18 February 2022 from: www.fao.org/faostat
  24. Fourie, D. (2011). Susceptibility of South African dry bean cultivars to bacterial diseases. Afr. Crop Sci. J., 19(4), 387–392. Retrieved from: https://www.ajol.info/index.php/acsj/article/view/74198
  25. Garden-Robinson, J., McNeal, K. (2013). Nutrition, health benefits, preparation and use in menus. North Dakota State University Extension Service, North Dakota, USA.
  26. Gayathri, J. (2018). A trend analysis of area, production, and yield of groundnut in India. J. Econ., 6(3), 15–21. Retrieved from: https://shanlax.com/wp-content/uploads/SIJ_Economics_V6_N3_003.pdf
  27. Ghimire, D., Lamsal, G., Paudel, B., Khatri, S., Bhusal, B. (2018). Analysis of trend in area, production and yield of major vegetables of Nepal. Trends Hortic., 1(2), 1–11. http://dx.doi.org/10.24294/th.v1i2.914
  28. Greyling, J.C., Pardey, P.G. (2019). Measuring maize in South Africa: The shifting structure of production suring the twentieth century, 1904–2015, Agrekon, 58(1), 21–41. 10.1080/03031853.2018.1523017
    GreylingJ.C. PardeyP.G. 2019 Measuring maize in South Africa: The shifting structure of production suring the twentieth century, 1904–2015 Agrekon 58 1 21 41 10.1080/03031853.2018.1523017
  29. Greyling, J.C., Pardey, P.G. (2018). A bio-economic history of hybrid maize in South Africa during the 20th century. InSTePP Working paper. St Paul: International Science and Technology Practice and Policy (InSTePP) center, University of Minnesota, forthcoming.
  30. Greyling, J.C. (2012). The role of the agricultural sector in the South African economy. Stellenbosch: Stellenbosch University.
  31. Halagundegowda, G.R., Kumaresan, P., Manjunatha, G.R., Sangannavar, P., Saheb, N.A., Moorthy, S.M., Nair, J.S., Sreenivasa, B.T. (2023). Growth and instability in vanya silk production in India: An econometric analysis. Int. J. Stat. Appl. Math., SP-8(3), 175–181. Retrieved from: https://www.researchgate.net/publication/372009272_Growth_and_instability_in_vanya_silk_production_in_India_An_econometric_analysis
  32. Ikuemonisan, E.S., Mafimisebi, T.E., Ajibefun, I., Adenegan, K. (2020). Cassava production in Nigeria: Trends, instability and decomposition analysis (1970–2018). Heliyon 6(10), e05089. https://doi.org/10.1016/j.heliyon.2020.e05089
  33. Jain, A. (2018). Analysis of growth and instability in area, production, yield and price of rice in India. J. Soc. Change Dev., 2, 46–66. http://www.okd.in/downloads/jr_18_july/article_4.pdf
  34. Joshi, P.K., Rao, P.P. (2017). Global pulses scenario: status and outlook. Ann. New York Acad. Sci., 1392(1), 6–17. https://doi.org/10.1111/nyas.13298
  35. Katungi, E., Farrow, A., Chianu, J., Sperling, L., Beebe, S. (2009). Common bean in Eastern and Southern Africa: a situation and outlook analysis. Int. Centre Tropic. Agric., 61, 1–44. Retrieved from: https://www.researchgate.net/publication/228601612_Common_bean_in_Eastern_and_Southern_Africa_a_situation_and_outlook_analysis
  36. Kumar, P.P., Rao, S.R., Koshta, V.C.A., Khan, M.A., Lakhera, M.L., Teja, I.K. (2022). Performance of rapeseed-mustard in India-a temporal analysis. J. Oilseed Brass., 13(1), 45–52. Retrieved from: https://krishi.icar.gov.in/jspui/bitstream/123456789/72457/1/Journal%20of%20Oilseed%20Brassica.pdf
  37. Liebenberg, F., Pardey, P.G. (2010). South African agricultural production and productivity patterns. In: The shifting patterns of agricultural production and productivity worldwide (pp. 383–408).
  38. Liebenberg, F. (2013). South African agricultural production, productivity and research performance in the 20th century. (Doctoral dissertation, University of Pretoria).
  39. Malherbe, J., Smit, I.P.J., Wessels, K.J., Beukes, P.J. (2020). Recent droughts in the Kruger National Park as reflected in the extreme climate index. Afri. J. Ran. For. Sci., 37(1), 1–17. doi.org/10.2989/10220119.2020.1718755
    MalherbeJ. SmitI.P.J. WesselsK.J. BeukesP.J. 2020 Recent droughts in the Kruger National Park as reflected in the extreme climate index Afri. J. Ran. For. Sci. 371 1 17doi.org/10.2989/10220119.2020.1718755
  40. Mathobo, R., Marais, D., Steyn, J.M. (2017). The effect of drought stress on yield, leaf gaseous exchange and chlorophyll fluorescence of dry beans (Phaseolus vulgaris L.). Agric. Water Manag., 180, 118–125. dx.doi.org/10.1016/j.agwat.2016.11.005
    MathoboR. MaraisD. SteynJ.M. 2017 The effect of drought stress on yield, leaf gaseous exchange and chlorophyll fluorescence of dry beans (Phaseolus vulgaris L.) Agric. Water Manag. 180 118 125 dx.doi.org/10.1016/j.agwat.2016.11.005
  41. Merga, B., Haji, J. (2019). Economic importance of chickpea: Production, value, and world trade. Cogent Food Agric., 5(1), 1615718. https://doi.org/10.1080/23311932.2019.1615718
  42. Muedi, H.T., Fourie, D., McLaren, N.W. (2015). Distribution and severity of bacterial brown spot on dry beans in South Africa: An update. South Afr. J. Sci., 111(3–4), 1–6. http://dx.doi.org/10.17159/sajs.2015/20140015
  43. Mwamahonje, A. (2018). Screening of local and improved bean varieties for resistance to halo blight disease. Afr. J. Agric. Res., 13(32), 1667–1673. http://doi:10.5897/AJAR2018.13254
  44. Ocampo, I.L., Nuñez, M.L.C., Oomah, B.D., Campos-Vega, R., Piña, G.L. (2018). Common bean-based food products. In: R. Campos-Vega et al. (Eds.), Phaseolus vulgaris: Cultivars, Production and Uses Nova Science Publishers, Inc.
  45. Oehmke, J.F., Anandajayasekeram, P., Masters, W.A. (1997). Agricultural technology development and transfer in Africa: Impacts achieved and lessons learned. Washington, DC: AMEX International.
  46. Orr, A., Mwema, C., Gierend, A., Nedumaran, S. (2016). Sorghum and millets in Eastern and Southern Africa: facts, trends and outlook.
  47. Otto, F.E., Wolski, P., Lehner, F., Tebaldi, C., Van Oldenborgh, G.J., Hogesteeger, S., Singh, R., Holden, P., Fučkar, N.S., Odoulami, R.C., New, M. (2018). Anthropogenic influence on the drivers of the Western Cape drought 2015–2017. Env. Res. Lett., 13(12), 124010. doi.org/10.1088/1748-9326/aae9f9
    OttoF.E. WolskiP. LehnerF. TebaldiC. Van OldenborghG.J. HogesteegerS. SinghR. HoldenP. FučkarN.S. OdoulamiR.C. NewM. 2018 Anthropogenic influence on the drivers of the Western Cape drought 2015–2017 Env. Res. Lett. 13 12 124010 doi.org/10.1088/1748-9326/aae9f9
  48. Padder, B.A., Sharma, P.N., Awale, H.E., Kelly, J.D. (2017). Colletotrichum lindemuthianum, the causal agent of bean anthracnose. J. Plant Pathol., 317–330. https://www.jstor.org/stable/44686776
  49. Pathania, A., Sharma, S.K., Sharma, P.N. (2014). Common Bean. In: M. Sing, I.S. Bisht, M. Dutta (Eds.). Broadening the genetic base of grain legumes (pp. 11–50). Springer, The Netherlands. https://doi:10.1007/978-81-322-2023-7_2
  50. Rajarathinam, A., Vetriselvi, R. (2017). Modeling cereals crop production based on parametric and non-parametric models. Int. J. Agric. Stat. Sci., 13(1), 17–28. Retrieved from: https://www.researchgate.net/publication/347816990_MODELING_CEREALS_CROP_PRODUCTION_BASED_ON_PARAMETRIC_AND_NON-PARAMETRIC_MODELS
  51. Rana, M.J., Islam, S., Kamruzzaman, M. (2021). Growth and instability in area, production and productivity of major spices in Bangladesh. J. Agric. Food Res., 6, p.100216. https://doi.org/10.1016/j.jafr.2021.100216
  52. Rehman, F.U., Saeed, I., Salam, A. (2011). Estimating growth rates and decomposition analysis of agriculture production in Pakistan: pre and post sap analysis. Sarhad J. Agric., 27(1), 125–131. Retrieved from: https://www.academia.edu/7738006/ESTIMATING_GROWTH_RATES_AND_DECOMPOSITION_ANALYSIS_OF_AGRICULTURE_PRODUCTION_IN_PAKISTAN_PRE_AND_POST_SAP_ANALYSIS
  53. Saha, J.K., Adnan, K.M., Sarker, S.A., Bunerjee, S. (2021). Analysis of growth trends in area, production and yield of tea in Bangladesh. J. Agric. Food Res., 4, p.100136. https://doi.org/10.1016/j.jafr.2021.100136
  54. Sahu, A., Nahatkar, S., Kolar, P. (2020). Variability and growth in production of wheat in India. Econ. Aff., 65(2), 255–260. http://dx.doi.org/10.46852/0424-2513.2.2020.18
  55. Sathe, S.K., Siddiq, M., Butt, M.S., Sultan, M.T. (2011). Dry beans: production, processing, and nutrition. In: Handbook of Vegetables and Vegetable Processing (pp. 545–564).
  56. Siddiq, M., Uebersax, M.A. (2013). Dry Beans and Pulses Production, Processing and Nutrition, First Edition. John Wiley & Sons, Inc.
  57. Siddiq, M., Butt, M.S., Sultan, M.T. (2011). Dry beans: Production, Processing and Nutrition. In: N.K. Sinha (Ed.), Handbook of vegetables and vegetable processing (pp. 545–564). Wiley-Blackwell.
  58. Siddiq, M., Uebersax, M.A., Siddiq, F. (2022). Global production, trade, processing and nutritional profile of dry beans and other pulses. Dry Beans and pulses: Production, processing and Nutrition.
  59. Sihmar, R. (2014). Growth and Instability in Agricultural Production in Haryana: A District level Analysis. Int. J. Sci. Res. Publ., 4(7), 1–12. Retrieved from: https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=4bd1605c7fcbccfb1661ae0faa5936bfa64d36b2
  60. Singh, S., Schwartz, H. (2010). Breeding common bean for resistance to insect pests and nematodes. Canad. J. Plant Sci., 91(2), 239–250. https://doi.org/10.4141/CJPS10002
  61. Singh, S.P., Hazarika, J.P., Chanu, E.Y., Devi, A.A., Singh, N.A., Kh, N., Gogoi, H. (2022). Growth, instability and sources of output growth of ginger and turmeric: A Statewise analysis in Northeast region of India. Pharma Innov. J., 11(2), 1429–1435. Retrieved from: https://www.thepharmajournal.com/archives/2022/vol11issue2S/PartR/S-11-2-99-458.pdf
  62. Thirtle, C., Van Zyl, J. (2000). Explaining total factor productivity growth: The returns to research and extension in commercial agriculture. In: C.G. Thirtle, J. Van Zyl, N. Vink (Eds.), South African agriculture at the crossroads: An empirical analysis of efficiency, technology and productivity. London: Macmillan.
  63. TradeMap (2020). Retrieved 14th March 2021 from: www.trademap.org
  64. Van Niekerk, J.A., Conradie, B. (2023). Cereal Production in the Eastern Free State, 1981–2007: Can Agricultural Extension Deliver Food Security? South Afr. J. Agric. Exten. (SAJAE), 51(2), 68–88. https://doi.org/10.17159/2413-3221/2023/v51n2a14653
  65. Van Zyl, J., Nel, H.J.G., Groenewald, J.A. (1988). Agriculture’s contribution to the South African economy. Agrekon., 27(2), 1–9.
  66. Vorster, H.H., Badham, J.B., Venter, C.S. (2013). An introduction to the revised food-based dietary guidelines for South Africa. South Afr. J. Clinic. Nutr., 26, S5–S12.
  67. Wiesinger, J.A., Cichy, K.A., Glahn, R.P., Grusak, M.A., Brick, M.A., Thompson, H.J., Tako, E. (2016). Demonstrating a nutritional advantage to the fast-cooking dry bean (Phaseolus vulgaris L.). J. Agric. Food Chem., 64(45), 8592–8603. doi.org/10.1021/acs.jafc.6b03100
DOI: https://doi.org/10.17306/j.jard.2024.01802 | Journal eISSN: 1899-5772 | Journal ISSN: 1899-5241
Language: English
Page range: 327 - 337
Accepted on: Aug 26, 2024
Published on: Sep 30, 2024
Published by: The University of Life Sciences in Poznań
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2024 Rudzani Mathobo, Nkhumeleni Mathobo, published by The University of Life Sciences in Poznań
This work is licensed under the Creative Commons Attribution 4.0 License.