تأثیر سطوح مختلف محدودیت مصرف آب بر عملکرد و فرآسنجه‌های خونی بره‌های نر بلوچی

نوع مقاله : علمی پژوهشی - تغذیه نشخوارکنندگان

نویسندگان

1 علوم دامی، دانشکده کشاورزی، دانشگاه فردوسی مشهد، مشهد، ایران

2 دانشگاه فردوسی مشهد، واحد پردیس بین الملل

3 گروه علوم دامی، مرکز آموزش علمی - کاربردی_ جهاد کشاورزی-خراسان رضوی

چکیده

به منظور بررسی اثر سطوح مختلف محدودیت مصرف آب روی عملکرد رشد و برخی ازالکترولیت ها و فراسنجه های خون در بره نر بلوچی از 21 بره تک قلو با میانگین سن (4 ± 90 روز) و میانگین وزن (2/2± 7/26 کیلوگرم) استفاده شد. بره ها به طور تصادفی به سه دسته بر اساس میزان آب مصرفی تقسیم شدند (7 بره به ازای هر گروه). در گروه شاهد به بره ها اجازه مصرف آب بطور آزاد در طول دوره آزمایش داده شد. مصرف آب بره های گروه 2 و 3 به ترتیب به 72% و 44% میانگین مصرف روزانه محدود شد. طول مدت آزمایش 49 روز بود که شامل 14 روز عادت پذیری و 35 روز دوره آزمایش که این 35 روز به 3 دوره آزمایشی به ترتیب شامل، 7 روز دوره کاهش تدریجی آب مصرفی، 14 روز دوره محدودیت مصرف آب به مقدار ثابت 72% و 44% میانگین مصرف روزانه برای تیمارهای 2 و 3 و 14 روز دوره دسترسی آزاد به آب برای همه تیمارها تقسیم شده بود. میزان آب و خوراک مصرفی به طور روزانه و افزایش وزن، الکترولیت ها و فراسنجه های خون شامل گلوکز، تری گلیسرید، کراتینین، نیتروژن اوره ای خون، کلسترول، پروتئین کل، کورتیزول، هماتوکریت و هموگلوبین خون، کلسیم، سدیم و پتاسیم در روزهای1، 7 ، 21 و 35 آزمایش اندازه گیری شدند. نتایج بدست آمده نشان داد که مقدار ماده خشک مصرفی و نسبت آب مصرفی به خوراک مصرفی و افزایش وزن روزانه در گروه 2 و 3 نسبت به گروه شاهد اختلاف معنی داری داشت. همچنین دهیدراسیون موجب افزایش غلظت سدیم، کلسترول، کراتینین، نیتروژن اوره ای خون و مقدار هموگلوبین خون در مقایسه با گروه شاهد شد. بطور کلی نتایج این آزمایش نشان داد که بره نژاد بلوچی می تواند محدودیت مصرف آب را برای مدت بیش از 14 روز بدون تغییرات عمده در فراسنجه ها و الکترولیت های خون تحمل کند.

کلیدواژه‌ها


عنوان مقاله [English]

The effects of different levels of water restriction on growth performance and blood metabolites of male Baluchi lambs

نویسندگان [English]

  • Abdolmansour Tahmasebi 1
  • vahid vosooghi poostin dooz 2
  • Alireza Froughi 3
1 Dept. of Animal Science, College of Agri. Ferdowsi University of Mahhad, Mashhad, Iran
3 Department of Animal Science, Center for Scientific-Applied Agricultural Jihad-Khorasan Razavi
چکیده [English]

Introduction: Sheep has played an important role in meat production and income generation in Iranian farming systems. Their profitability, however, is highly depended on nutrient supply. Drinking water is major nutrient that is responsible for different utilization of nutrients and thereby productivity and gain of animals in most parts of the world. Inadequate water and its quality such as salinity, acidity, and toxic elements depress the biological, physiological process and performance of sheep. Iran has a different type of Agro-ecological climate but most part of this country is under arid or semi arid condition and thus face to shortage of water. Bluchi sheep is the most important breed which is well adapted in harsh marginal arid in the east region of Iran, however, little information is available regarding of the mechanism of adaptation in this breed for biological process to allowing them to cope during water restriction in this zone. Therefore this experiment was conducted to investigate some electrolytes and blood metabolites and hormones under the influence of different levels of water availability and the ability to tolerate water restriction in Baluchi lambs.
Materials and Methods: This study was conducted during May-June 2013 at the Baluchi sheep research center (Abbas Abad) in Northeast of Iran. Twenty-one single lambs, (90 ± 4 days old and 26.7 ± 2.2 kg BW) were used in this study. Lambs were randomly subjected to three levels of water restriction (seven lambs per group). Lambs in control group, allowed to drinking water freely. For the second treatment, the water supply to the lambs were restricted to 72% of their average daily intake and for the third treatment, water intake was restricted to 44% of their average daily intake. The whole experiment period was 49 days and was divided in 3 periods with 14 days adaptation.. The three time periods were including, 7 days for the stepwise water reduction period, and 14 days fixed limit to the amount of 72% and 44% of their average intake for treatment 2 and 3 and during last period (14 days) all groups had free access to water. The sheep were allocated to individual feeding pens and feed were provided ad libitum. Weight gain, blood metabolites and electrolytes (glucose, triglycerides, creatinine, blood urea, cholesterol, total proteins, cortisol, hematocrit, blood hemoglobin, Na+,Ca2+, K+ were determined on 1, 7, 21 and 35 days of experiment. The data from experiments were analyzed using Minitab and GLM procedure and for comparison of means Duncan test was applied.
Results and Discussion: The obtained results indicated that feed intake, daily weight gain and the ratio of water consumption to feed intake in treatments 2 and 3 in compare with control group was statistically different. The results showed that there was a direct relationship between the reduction in water consumption and feed intake. It seems that this weight loss in treatments 2 and 3 can be due to a combination of reduced feed intake and loss of body water. Additional dehydration led to increase blood concentration creatinine, blood urea in compare with the control group. High blood urea and creatinine may be due to an imbalance in the production and disposal of these substances by the kidneys and fecal .Water restriction led to increased concentration of plasma sodium than the control group, however this increase was not significant. Treatment 3, on day 21, compared with other treatments,was an exception and one of the possible reasons for this can be due the influence of the hormone aldosterone and ADH on the kidneys. Hematocrit and hemoglobin in the blood tend to rise by water restriction but this will not led to significant differences between treatments. Except the hemoglobin on day 21 between treatments 3 with other treatments, significant differences were found which can be due to reduced blood plasma volume because of dehydration lambs. Significant differences in blood cholesterol levels were observed between treatments 3 and others on day 21 which probably this increase may be related to mobilization of fat tissue in lambs that are encountered with reducing water consumption.
Conclusion: The overall results showed that water restrictions could lead to a significant reduction in dry matter intake and daily weight gain in Baluchi lambs. In addition, results showed that Baluchi lamb has potential to withstand under water restriction up to 44% of their average daily water intake without significant changes in blood electrolytes. This breed can survive and adopt under arid conditions which is common in some desert area in Iran.

کلیدواژه‌ها [English]

  • Blood metabolites
  • Male Baluchi lambs
  • Performance
  • Water restriction
1- Dayani, O. M, Rahmani. 2010. Water and its metabolism in animals. Shahid bahonar university of kerman publication 306. (In Persian).
2- Aganga, A.A., Umunna, N.N., Oyedipe, E.O., Okoh, P.N., 1989. Influence of water restriction on some serum components in Yankasa ewes. Small Ruminant Research, 2: 19–26.
3- Alamer, M., 2010. Effect of Water Restriction on Thermoregulation and Some Biochemical Constituents in Lactating Aaradi Goats during Got Weather Conditions. Scientific journal of king Faisal University, 11 (2): 1431.
4- Ashour, G., Benlemlih, S., 2000. Adaptation of Mediterranean breeds to heat stress and water deprivation. In: Guessous, F., Rihani, N., Ilham, A. (Eds.), Livestock Production and Climatic Uncertainty in the Mediterranean, Proceedings of the Joint ANPA-EAAP-CIHEAM-FAO Symposium, EAAP publication No. 94. Agadir, Morocco, pp. 63–74.
5- Baird, D.T., Giles, M., Cockburn, F., 1973. The PO2, PCO2, pH and oxygen content of ovarian venous blood of sheep. Journal of Endourology, 57: 405–411.
6- Caasamassima, D., Pizzo, R., Palazzo, M., D’Alessandro, A.G., 2008. Effect of water restriction on productive performance and blood parameters in comisana sheep reared under intensive condition. Small Ruminant Research, 78: 169- 175.
7- Degen, A. A., 1977. Responses to dehydration in native fat-tailed Awassi and imported German Mutton Merino sheep. Journal of Physiological Zoological, 50: 284–293.
8- Forbes, J.M., 1967. The water intake in ewes. British journal of nutrition, 22: 33-43.
9- Ghosh, P.K., Khan, M.S., Abichandani, R.K., 1976. Effect of water deprivation in summer on Marwari sheep. Journal of Agriculture Science, 887: 221–223.
10- Hadjigeorgiou, I., Dardamani, K., Goulas, C., Zervas, G., 2000. The effect of water availability on feed intake and digestion in sheep. Small Ruminant Research, 37: 147-150.
11- Hamadeh, S.K., Rawda, N., Jaber, L.S., Habre, A., Abisaid, M., Barbour, E.K., 2006. Physiological responses to water restriction in dry and lactating Awassi ewes. Journal of livestock science, 101: 101– 109.
12- Igbokwe, I.O., 1993. Haemoconcentration in Yankasa sheep exposed to prolonged water deprivation. Small Ruminant Research, 12: 99–105.
13- Jaber, L.S., Habre, A., Rawda, N., AbiSaid, M., Barbour, E.K., Hamadeh, S.K., 2004. The effect of water restriction on certain physiological parameters in Awassi sheep. Small Ruminant Research, 54: 115– 120.
14- Kheir, I.M., Ahmad, M.M., 2008. Effect of water and feed restriction on some physiological and hematological parameters and blood constituents of Sudanese desert goat fed high and low quality forages under semi-arid condition. Indian journal of Animal research, 42: 39-43.
15- Laden, S., Nehmadi, L., Yagil, R., 1987. Dehydration tolerance in Awassi fat-tailed sheep. Canadian Journal Zoology, 65: 363-367.
16- MacFarlane, W.V., 1964. Terrestrial animals in dry heat: ungulates. In: Dill, D.B., Adolph, E.F.A., Wilberg, C.C. (Eds.), Handbook of Physiology, Section 4: Adaptation to the Environment. American Physiological Society, Washington, D.C., pp. 509– 539.
17- MacFarlane, W.V., Morris, R.J.H., Howard, B., McDonald, J., Budtz-Olsen, O.E., 1961. Water and electrolyte changes in tropical Merino sheep exposed to dehydration during summer. Australian journal agriculture research, 12: 889–912.
18- Martin, W.B., Aitken, I.D., 2000. Diseases of Sheep, Appendix A and Appendix B, third ed. Blackwell Science, Oxford. pp. 499–501.
19- More, T., Howard, B., Siebert, B.D., 1983. Effect of level of water intake on water, energy and nitrogen balance and thyroxine secretion in sheep and goats. Australian journal agriculture research, 34: 441-446.
20- NRC, 1985. Nutrient Requirements of Sheep. National Academy Press, Washington, DC, USA.
21- Parker, A.J., Hamlin, J.P., Coleman, C.J., Fitzpatrick, L., 2003. Dehydration in stressed ruminants may be the result of a cortisol- induced diuresis. Journal of Animal Science (Cambridge), 81: 512-519.
22- Parrot, R.F., Lloyd, D.m., Goode, J.A., 1996. Stress hormone response of sheep to food and water deprivation at high and low ambient temperatures. Journal of Animal Welfare, 5: 45-56.
23- Ruminants. Exp. Physiol. 79: 281–300.
24- Schalm, O.W., Jain, N.C., Carroll, E.J., 1975. Veterinary Hematology, third ed. Lea & Febiger, Philadelphia.
25- Schoeman, S.J., Vizzer, J.A., 1995. Comparative water consumption and efficiency in three divergent sheep types. Journal of Agriculture (Cambridge), 124: 139-143.
26- Silanikove, N. 1994: The struggle to maintain hydration and osmoregulation.
27- Silanikove, N., 2000. The physiological basis of adaptation in goats to harsh environments. Small Ruminant Research, 35: 181– 193.
28- Singh, M., More, T., Rai, A.K., Karim, S.A., 1982. A note on the adaptability of native and cross-bred sheep to hot summer conditions of semi-arid and arid areas. Journal of Agriculture Science, 99: 525– 528.
29- Spector, W.S., (Ed.) 1956. Handbook of Biological Data, Saunders, Philadelphia, PA.
30- Tasker, J.B., 1971. Fluids, electrolytes, and acid-base balance. In: Kaneko, J.J., Cornelius, C.E. (Eds.), Clinical Biochemistry of Domestic Animals, second ed., vol. II. Academic Press, New York and London, pp. 77–78.
31- YapeKii, W., Drydent, M., 2005. Effect of drinking saline water on food and water intake, food digestibility, and nitrogen and mineral balances of rusa deer stags (Cervustimorensisrussa). Journal of Animal Science, 81: 99-105.
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