Effect of pepper and salt blends on microbial quality of quanta: Ethiopian dried red meat
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Published:2022-12-27
Issue:4
Volume:7
Page:229-237
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ISSN:2414-441X
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Container-title:Theory and practice of meat processing
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language:
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Short-container-title:Teor. prakt. pererab. mâsa (Print)
Author:
Seleshe S.1ORCID, Seifu E.2ORCID, Kidane S. W.3ORCID
Affiliation:
1. Daegu University 2. Botswana University of Agriculture and Natural Resources 3. University of Eswatini
Abstract
This study was conducted to assess the effect of spice blends varying in salt and pepper concentrations on the microbial quality of Quanta: Ethiopian dried red meat. The experiment had seven treatments: 25% spices, 25% salt, and 50% pepper (T1); 25% spices, 20% salt, and 55% pepper (T2); 25% spices, 15% salt, and 60% pepper (T3); 25% spices, 10% salt, and 65% pepper (T4); 25% spices, 5% salt, and 70% pepper (T5); 100% spices (without salt and pepper), a positive control (T6); a negative control without any added ingredient (T7). Microbiological analyses were performed initially on the raw sliced meat and spice blends, and after application of the treatments on the 10thand 20thdays of drying. High initial loads of total bacteria (APC) and Enterobacteriaceae (EC) were observed in the raw meat samples and spice blends and increased over the drying periods (10 and 20 days) in all treatments. No significant difference (p>0.05) was observed among the treatments (T1-T7) for APC and EC at a given drying period and between the drying periods. Salmonella spp. was not detected in any of the seven treatments either on the 10th and 20th days of drying. However, Escherichia coli was detected in six (T1-T6) of the dry meat samples except in T7 both on the 10thand 20thdays of drying suggesting that the spice blends served as a source of contamination of the dried meat samples with E. coli. However, the spice blends used in combination with drying were effective in inhibiting the growth of Salmonella species in the dry meat samples. Spices as well as the raw meat used for Quanta preparation should be produced and handled under hygienic conditions to minimize the microorganisms that they harbor.
Publisher
The Gorbatov's All-Russian Meat Research Institute
Subject
Food Science,Animal Science and Zoology
Reference55 articles.
1. Henchion, M., Moloney, A.P., Hyland, J., Zimmermann, J., McCarthy, S. (2021). Review: Trends for meat, milk and egg consumption for the next decades and the role played by livestock systems in the global production of proteins. Animal, 15, Article 100287. https://doi.org/10.1016/j.animal.2021.100287 2. Ponnampalam, E.N., Bekhit, A.E.D., Bruce, H., Scollan, N.D., Muchenje, V., Silva, P., Jacobs, J.L. (2019). Production strategies and processing systems of meat: current status and future outlook for innovation — a global perspective. Chapter in a book: Sustainable Meat Production and Processing. London: Academic Press. 17–44. 3. Rudy, M., Kucharyk, S., Duma-Kocan, P., Stanisławczyk, R., Gil, M. (2020). Unconventional methods of preserving meat products and their impact on health and the environment. Sustainability (Switzerland), 12(15), Article 5948. https://doi.org/10.3390/su12155948 4. Desierea, S., Hungb, Y., Verbekeb, W., D’Haese, M. (2018). Assessing current and future meat and fish consumption in Sub-Sahara Africa: Learnings from FAO Food Balance Sheets and LSMS household survey data. Global Food Security, 16, 116–126. https://doi.org/10.1016/j.gfs.2017.12.004 5. Solomon, A., Workalemahu, A., Jabbar, M.A., Ahmed, M.M., Hurissa, B. (2003). Livestock marketing in Ethiopia: A review of structure, performance and development initiatives. Socio Economic and Policy Research. Working Paper 52. Nairobi, Kenya: International Livestock Research Institute.
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