اثر افزودن تفاله گوجه‌فرنگی (solanum lycopersicum) بر فراسنجه‌‌های تخمیر در شکمبه، سلامت و رشد گوساله‌‌های شیری هلشتاین

نوع مقاله : مقاله پژوهشی

نویسندگان

1 گروه علوم دامی، دانشکدة کشاورزی، دانشگاه صنعتی اصفهان، اصفهان، ایران

2 گروه علوم دامی، دانشکدة کشاورزی، دانشگاه سمنان، سمنان، ایران

چکیده

جایگزینی منابع الیافی غیرعلوفه­ای به‌جای غلات جیره می­تواند راهکار مناسبی در جهت بهبود شرایط شکمبه­ای باشد. پژوهش حاضر به‌منظور بررسی تأثیر تفاله گوجه‌فرنگی (solanum lycopersicum) خشک‌شده بر فراسنجههای شکمبه‌ای و خونی گوساله‌های شیری هلشتاین انجام شد. مطالعه حاضر با استفاده از 30 رأس گوساله هلشتاین تازه متولد‌شده (میانگین وزن: 2/0± 7/39 کیلوگرم) در قالب یک طرح کاملاً تصادفی با سه تیمار و 10 تکرار انجام گردید. تیمارهای غذایی شامل 1- استارتر پلت به‌عنوان شاهد، 2- خوراک آغازین پلت جایگزین‌شده با 5/7 درصد تفاله گوجه‌فرنگی خشک و 3- استارتر پلت جایگزین‌شده با 15 درصد تفاله گوجه‌فرنگی خشک به‌صورت مخلوط. در 70 روزگی، با استفاده از لوله مری و پمپ خلأ نمونه‌گیری مایع شکمبه حدود سه ساعت پس از تغذیه صبح انجام شد. خون‌گیری در سنین 35 و 70 روزگی از تعداد شش گوساله در هر تیمار از سیاهرگ وداج سه ساعت پس از خوراک صبح انجام شد. داده‌های به‌دست‌آمده توسط نرم‌افزار SAS ویرایش 21 و رویه مختلط مورد آنالیز قرار گرفت. سطح معنی‌داری پنج درصد در نظر گرفته شد. ماده خشک مصرفی و افزایش وزن روزانه در کل دوره به‌طور معنی­داری تحت تأثیر تیمار‌‌های آزمایشی قرار گرفت (01/0 >P). تیمار شامل 15 درصد تفاله گوجه‌فرنگی خشک‌شده بالاترین و شاهد کمترین مقدار ماده خشک مصرفی و افزایش وزن روزانه را در کل دوره داشتند. بالاترین pH شکمبه در بعد از شیرگیری در تیمار شامل 15 درصد تفاله گوجه‌فرنگی خشک بود و این تیمار تفاوت معنی‌داری نسبت به شاهد نشان داد (01/0 >P). تیمار شامل 15 درصد تفاله گوجه‌فرنگی بالاترین و شاهد کمترین غلظت ازت آمونیاکی شکمبه را در 70 روزگی داشتند. تیمار شامل 15 درصد تفاله گوجه‌فرنگی خشک‌شده بالاترین و شاهد پایین­ترین تعداد لنفوسیت را در بین تیمار­ها داشتند. با توجه به نتایج به‌دست‌آمده، استفاده از تفاله گوجه‌فرنگی خشک منجر به بهبود شرایط تخمیر شکمبه‌ای و کاهش رفتار­های غیر تغذیه­ای (لیس زدن به دیوار و(...  شد.

کلیدواژه‌ها

موضوعات


عنوان مقاله [English]

The Effect of Adding Tomato (solanum lycopersicum) Pomace on Rumen Fermentation Parameters, Health and Growth of Holstein Dairy Calves

نویسندگان [English]

  • Reza Akbari Dahoui, 1
  • Masoud Alikhani 1
  • Rahman Jahanian 1
  • Majid Savari 2
1 Department of Animal Science, Faculty of Agriculture, Isfahan University of Technology, Isfahan, Isfahan, Iran
2 Department of Animal Science, Faculty of Agriculture, Semnan University, Semnan, Iran
چکیده [English]

Introduction: Many agricultural by-products are relatively high in fiber and are particularly suitable for feeding ruminants. Fibrous by-products have a smaller particle size than most forages, but can have a higher energy value than most forages, due to their high fermentable fiber content. The use of non-forage fiber sources can have a significant effect on the protein components of the diet. Tomato pulp is a by-product of the paste industry, which, depending on the processing method and characteristics of raw tomatoes, contains varying proportions of skin, seeds, and small amounts of tomato flesh. In Iran, about 81,000 tons of wet tomato pulp are produced annually, which can cause environmental pollution. The present study was conducted to investigate the effect of different levels of tomato pomace powder (TPP) on ruminal fermentation parameters and growth performance of Holstein calves.
Materials and Methods: This experiment was carried out using 30 Holstein calves (average weight: 39.7±0.2 kg) based on a completely-randomized design with 3 treatment groups including 10 individual pens per each dietary treatment. Dietary treatments consisted of 1) pelleted starter (control group), 2) pelleted starter + 7.5% TPP, 3) pelleted starter +15% TPP. Calves were fed 4 liters of colostrum in the first three days of life, 5 liters of milk twice daily from 4 to 50 days of age, and 2.5 liters of milk once daily from 50 to 55 days of age. Milk replacer consumption was stopped at 56 days of age in all calves. Calves had free access to water and starter feed from 3 days of age. Calves were kept in individual stalls on straw bedding, and bedding was changed and cleaned daily. The health of the calves in the present study was continuously assessed daily for the occurrence of diarrhea, pneumonia, and bloat. The possible effect of treatments on the health of calves was assessed daily for all calves in terms of fecal scores. Rumen fluid was sampled using an esophageal tube and a vacuum pump about 3 hours after morning feeding. Blood sampling was done with the help of vacuum tubes, at the ages of 35 and 70 days, from 6 calves in each treatment, 3 hours after morning feed. The obtained data were analyzed by SAS software and Mixed procedure. A significant level of P<0.05 was considered.
Results and Discussion: The highest rumen pH after weaning was in the treatment containing 15% TPP, and this treatment showed a significant difference compared to the control treatment (P = 0.009). The treatment containing 15% tomato pomace had the highest and the control treatment the lowest rumen ammonia nitrogen concentration (P=0.04). According to the results, the concentration of ammonia nitrogen at 70 days of age was affected by the treatments (P=0.05). It seems that the simultaneous consumption of tomato pulp and pellet diet increases the flow of saliva to the rumen through more initial chewing and then earlier rumination, resulting in more urea released through saliva, which caused an increase in rumen ammonia nitrogen.The treatment containing 15% tomato pomace had the highest and the control treatment had the lowest number of lymphocytes among the treatments (P < 0.05). In this study, the stool score of calves fed tomato pulp in the starter diet (higher fiber content) was lower than that of the control group (low fiber content). It is likely that diets containing tomato pulp, due to their high fiber content, influenced chewing activity, rumination, and salivation, thereby contributing to an increase in rumen pH. In contrast, the reduction in pH observed with the pellet treatment may be attributed to the heat generated during the pelleting process, which accelerates starch degradation in the rumen. This, in turn, leads to faster and greater production of volatile fatty acids, accompanied by a reduced absorption rate of these acids.
Conclusion: The presence of tomato pulp in the pellet diet reduced non-nutritive behaviors and increased the time spent on feeding actions such as rumination and eating. Regarding health indicators, tomato pulp consumption led to an improvement in fecal score compared to the control treatment. Blood analyses performed in this study showed that the 15% tomato pulp treatment had the lowest serum cholesterol and LDL levels. Given the high lymphocyte count in the blood of calves consuming tomato pulp, lycopene and vitamin C in tomato pulp can have a positive effect on the immune system of Holstein calves.
 



 

 





 

کلیدواژه‌ها [English]

  • Blood metabolites
  • Dairy calf
  • Rumen parameters
  • Tomato pomace

©2025 The author(s). This is an open access article distributed under Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source

  1. Abdollahzadeh, F., Pirmohammadi, R., Fatehi, F., & Bernousi, I. (2010). Effect of feeding ensiled mixed tomato and apple pomace on performance of Holstein dairy cows. Slovak Journal of Animal Science, 43(1), 31-35.
  2. Armentano, L. E., & Dentine, M. R. (1988 ). Wet corn gluten feed as a supplement for lactating dairy cattle and growing heifers. Journal of Dairy Science, 71, 990-995. https://doi.org/10.3168/jds.S0022-0302(88)79645-9.
  3. Castells, L., Bach, A., Aris, A., & Terré, M. (2013). Effects of forage provision to young calves on rumen fermentation and development of the gastrointestinal tract. Journal of Dairy Science, 96(8), 5226-5236. https://doi.org/10.3168/jds.2012-6419.
  4. Firkins, J. L. (1997). Effects of feeding nonforage fiber sources on site of fiber digestion. Journal of Dairy Science, 80(7), 1426-1437. https://doi.org/10.3168/jds.S0022-0302(97)76072-7.
  5. Franklin, S., Amaral-Phillips, D., Jackson, J., & Campbell, A. (2003). Health and performance of Holstein calves that suckled or were hand-fed colostrum and were fed one of three physical forms of starter. Journal of Dairy Science, 86(6), 2145-2153. https://doi.org/10.3168/jds.s0022-0302(03)73804-1
  6. Friedman, M., Fitch, T., & Yokoyama, W. (2000). Lowering of plasma LDL cholesterol in hamsters by the tomato glycoalkaloid tomatine. Food and Chemical Toxicology, 38(7), 549-553. https://doi.org/10.1016/S0278-6915(00)00050-8.
  7. Gasa, J., Castrillo, C., & Guada, J. (1988). Nutritive value for ruminants of the canning industry by-products: 1. Tomato pomace and pepper residues. Investigación Agraria, Producción y Sanidad Animales 1988, 3, 57–73.
  8. Grant, R. J. (1997). Interactions among forages and nonforage fiber sources. Journal of Dairy Science, 80, 1438–1446. https://doi.org/10.3168/jds.S0022-0302(97)76073-9.
  9. Harb, M. (1986). Fattening of Awassi male lambs using tomato pomace. Dirasat (Jordan), 13(5), 51-71.
  10. Heinrichs, J., & Ross, D. (1991). Environment influences nutritional requirements of calves. Feedstuffs, 63, 12 – 14.
  11. Heuer, C., Schukken, Y., & Dobbelaar, P. (1999). Postpartum body condition score and results from the first test day milk as predictors of disease, fertility, yield, and culling in commercial dairy herds. Journal of Dairy Science, 82(2), 295-304. https://doi.org/10.3168/jds.S0022-0302(99)75236-7.
  12. Hill, S., Hopkins, B., Davidson, S., Bolt, S., Diaz, D., Brownie, C.,  Brown, T.Huntington, G. B., Whitlow, L. (2009). The addition of cottonseed hulls to the starter and supplementation of live yeast or  mannanoligosaccharide in the milk for young calves. Journal of Dairy Science, 92(2), 790-798. https://doi.org/10.3168/jds.2008-1320
  13. Khan, M. A., Lee, H. J., Lee, W. S., Kim, H. S., Kim, S. B., Ki, K. S., Ha, j. K., Lee, H.G., & Choi, Y. J. (2007). Pre-and postweaning performance of Holstein female calves fed milk through step-down and conventional methods. Journal of Dairy Science, 90(2), 876-885. https://doi.org/10.3168/jds.S0022-0302(07)71571-0
  14. K Khan, M. A., Lee, H. J., Lee, W. S., Kim, H. S., Kim, S. B., Ki, K. S., Park, S. J., Ha, J. K., & Choi, Y. J. (2007). Starch source evaluation in calf starter: I. Feed consumption, body weight gain, structural growth, and blood metabolites in Holstein calves. Journal of Dairy Science, 90(11), 5259-5268. https://doi.org/10.3168/jds.2007-0338
  15. Kononoff, P. J., Ivan, S. K., & Klopfenstein, T. J. (2007). Estimation of the proportion of feed protein digested in the small intestine of cattle consuming wet corn gluten feed. Journal of Dairy Science, 90, 2377–2385. https://doi.org/10.3168/jds.2006-552.
  16. Laarman, A., Sugino, T., & Oba, M. (2012). Effects of starch content of calf starter on growth and rumen pH in Holstein calves during the weaning transition. Journal of Dairy Science, 95(8), 4478-4487. https://doi.org/10.3168/jds.2011-4822
  17. Mansoori, B., Modirsanei, M., & Kiaei, M. M. (2008). Influence of dried tomato pomace as an alternative to wheat bran in maize or wheat based diets, on the performance of laying hens and traits of produced eggs. Iranian Journal of Veterinary Research. 9: 341-346. https://doi.org/10.22099/IJVR.2008.2616.
  18. Mohebedini, H., Bedbadek, S., & Qarakhani, M. (2008). Use of tomato pomace in feeding livestock and poultry. Proceedings of the first national congress of tomato production and processing. Mashhad. (In Persian).
  19. Moini, H. (2014). The effect of the physical form of calf starter feed on liver and small intestine histology, blood metabolic indices and the population of some pathogenic bacteria in the small intestine, Master's Thesis, Faculty of Agriculture, Isfahan University of Technology. (In Persian).
  20. Mowrey, A., & Spain, J. N. (1999). Results of a nationwide survey to determine feedstuffs fed to lactating dairy cows. Journal of Dairy Science, 82(2), 445-451. https://doi.org/10.3168/jds.S0022-0302(99)75251-3
  21. Persia, M., Parsons, C., Schang, M., & Azcona, J. (2003). Nutritional evaluation of dried tomato seeds. Poultry Science, 82(1), 141-146. https://doi.org/10.1093/ps/82.1.141
  22. Pond, W. G., Church, D. B., Pond, K. R., & Schoknecht, P. A. (2004). Basic animal nutrition and feeding: John Wiley & Sons.
  23. Porter, J. C., Warner, R. G., & Kertz, A. F. (2007). Effect of fiber level and physical form of starter on growth and development of dairy calves fed no forage. The Professional Animal Scientist, 23, 395-400. https://doi.org/10.15232/S1080-7446(15)30994-3
  24. Savari, M., Khorvash, M., Amanlou, H., Ghorbani, G.R., Ghasemi, E., Mirzaei, M. (2018). Effects of rumendegradable protein: rumen-undegradable protein ratio and corn processing on production performance, nitrogen efficiency, and feeding behavior of Holstein dairy cows. Journal of Dairy Science. 101: 1–12. https://doi.org/10.3168/jds.2017-12776
  25. Shi, J., & Maguer, M. L. (2000). Lycopene in tomatoes: chemical and physical properties affected by food processing. Critical reviews in food science and nutrition, 40(1), 1-42. https://doi.org/10.1080/10408690091189275
  26. Suárez, B., Van Reenen, C., Stockhofe, N., Dijkstra, J., & Gerrits, W. (2007). Effect of roughage source and roughage to concentrate ratio on animal performance and rumen development in veal calves. Journal of Dairy Science, 90(5), 2390-2403. https://doi.org/10.3168/jds.2006-524.
  27. Tahmasebi, R. (2001). Investigating the chemical characteristics of corn and tomato pomace silage and its effect on the productive performance of Holstein dairy cows, master's thesis in animal science, Ferdowsi University of Mashhad. (In Persian).
  28. Thomas, D. B., & Hinks, C. E. (1982). The effect of changing the physical form of roughage on the performance of the early-weaned calf. Animal Production., 35, 375–384. https://doi.org/10.1017/S0003356100001069
  29. Younker, R. S., Winland, S. D., Firkins, J. L., & Hull, B. L. (1998 ). Effects of replacing forage fiber or nonfiber carbohydrates with dried brewers grains. Journal of Dairy Science, 81, 2645–2656. https://doi.org/10.3168/jds.S0022-0302(98)75822-9
  30. Yuangklang, C., Vasupen, K., Srenanul, P., Wongsuthavas, S., Mitchaothai, J., & Kongwaha, K. (2007). Effect of substitution of soybean meal by dried tomato pomace on feed intake, rumen fermentation and nitrogen utilisation in goats. Proceedings of the British Society of Animal Science. 2007;2007:134-134. https://doi.org/10.1017/S1752756200020378

 

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