بررسی اثر محدودیت و شوری آب مصرفی روی عملکرد، فراسنجههای خونی و قابلیت هضم ظاهری خوراک در برههای نر بلوچی
Subject Areas : Camelو. وثوقی-پوستین دوز 1 , ع. طهماسبی 2 , ع.ع. ناصریان 3 , ر. ولی زاده 4 , ه. ابراهیمی 5
1 - دانشگاه علوم کشاورزی و منابع طبیعی گرگان
2 - Department of Animal Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran
3 - Department of Animal Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran
4 - Department of Animal Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran
5 - Department of Animal Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran
Keywords: فراسنجههای خون, بره بلوچی, قابلیت هضم ظاهری, آب شور, محدودیت مصرف آب,
Abstract :
به منظور بررسی اثر محدودیت و شوری آب مصرفی بر عملکرد، فراسنجههای خونی و قابلیت هضم ظاهری خوراک در برههای نر بلوچی، از ۲۰ رأس بره نر (میانگین سن ٥±١٧۰ روز و میانگین وزن ٨/۲±٣١ کیلوگرم) بصورت فاکتوریل (۲×۲) در قالب طرح کاملاً تصادفی با 5 تکرار در هر تیمار استفاده شد. تیمارهای آزمایشی شامل گروه اول: دسترسی آزاد به آب مصرفی با سطح سختی کم، گروه دوم: دسترسی به ٥۰ درصد میانگین آب مصرفی روزانه با سطح سختی کم، گروه سوم: دسترسی آزاد به آب مصرفی با سطح سختی زیاد و گروه چهارم: دسترسی به ٥۰ درصد میانگین آب مصرفی روزانه با سطح سختی زیاد، بودند. طول مدت آزمایش ٤۲ روز که شامل ١٤ روز عادتپذیری و ۲٨ روز دوره آزمایش بود. نتایج بدست آمده نشان داد که محدودیت آب منجر به ایجاد اختلاف معنیداری در ماده خشک و آب مصرفی، افزایش وزن روزانه و نسبت آب مصرفی به خوراک مصرفی، هورمون آلدوسترون، نیتروژن اورهای خون، کلسترول، تریگلیسرید، هماتوکریت، کلر، پتاسیم، سدیم سرم،pH شکمبه و قابلیت هضم ADF،NDF، CP، ماده آلی، ادرار و مدفوع تولیدی در برهها شده است (05/0>P)، از طرفی مصرف آب با سختی زیاد منجر به ایجاد اختلاف معنیداری در ماده خشک و آب مصرفی، افزایش وزن روزانه، نسبت آب مصرفی به خوراک مصرفی، سدیم سرم و ادرار تولیدی در برهها شد (05/0>P). سایر پارامترهای اندازهگیری شده در برههای آزمایشی، تحت تأثیر محدودیت مصرف و شوری آب قرار نگرفت (05/0P>). با توجه به دادههای بدست آمده میتوان نتیجهگیری نمود که هر چند محدودیت آب و سختی آن میتواند اثرات منفی بر عملکرد و فیزیولوژی حیوان بگذارند ولیکن این حیوانات میتوانند تا سطح ٥۰ درصد محدودیت و ٨۰۰۰ میلیگرم در لیتر شوری آب را تا حداقل برای مدت ۲٨ روز بدون تغییرات زیانبار و کشنده تحمل کنند
Abou Hussien E.R.M., Gihad E.A., El-Dedawy T.M. and Abdel Gawad M.H. (1994). Responses of camels, sheep and goats on saline water. 2. Water and mineral metabolism. Egyptian J. Anim. Prod. 31, 387-401.
Aganga A.A. (1992). Water utilization by sheep and goats in Northern Nigeria. World Anim. Rev. FAO. 73, 9-14.
Ahmed M.M. and Abdel-Rahman M.A. (2004). Effect of drinking natural saline groundwater on growth performance, behavior and some blood parameters in rabbits reared in new reclaimed lands of arid areas in Assiut Governorate. Assiut Univ. Bull. Environ. Res. 7(2), 125-135.
Alamer M. (2005). Effect of deprivation and season on some biochemical constituents of blood in Awassi and Najdi sheep breeds in Saudi Arabia. J. Anim. Vet. Adv. 48, 15-20.
Alamer M. (2010). Effect of water restriction on thermoregulation and some biochemical constituents in lactating Aaradi goats during got weather conditions. Sci. J. King Faisal Univ. 11(2), 1431-1439.
Al-Ramamneh D., Riek A. and Gerken M. (2010). Deuterium oxide dilution accurately predicts water intake in sheep and goats. Animal. 4, 1606-1612.
AOAC. (1990). Official Methods of Analysis. Vol. I. 15th Ed. Association of Official Analytical Chemists, Arlington, VA, USA.
Asplund J. and Pfander W.H. (1972). Effects of water restriction on nutrients digestibility in sheep receiving fixed water: Feed rations. J. Anim. Sci. 35(6), 1271-1274.
Atti N., Bocquier F. and Khaldi G. (2004). Performance of the fat-tailed Barbarine sheep in its environment: Adaptive capacity to alternation of underfeeding and refeeding periods, a review. Anim. Res. 53, 165-176.
Atwa S.M. (1979). Hydrogeology and hydrogeochemistry of the North Western coast of Egypt. Ph D. Thesis. Alexandria Univ., Alexandria, Egypt.
Badakhshan Y. and Mirmahmoudi R. )2016(. Blood metabolites of one-humped camel (Camelus dromedarius) versus sheep during summer heat stress. Iranian J. Vet. Med. 10(1), 67-72.
Bell F.R. (1995). Perception of Sodium and Sodium Appetite in Farm Animals. Chalcombe Publications, Canterbury, United Kingdom.
Bianca W. (1966). Heat tolerance in dehydrated steers. J. Agric. Sci. 66, 57-60.
Carlson G.P.) 1996(. Internet Animal Medicine. Mosby Publisher, St. Louis, Missouri
Casamassima D., Pizzo R., Palazzo M., D’Alessandro A.G. and Martemucci G. (2008(. Effect of water restriction on productive performance and blood parameters in comisana sheep reared under intensive condition. Small Rumin. Res. 78, 169-175.
Casamassima D., Vizzarri F., Nardoia M. and Palazzo M.) 2016(. The effect of water restriction on various physiological variables in intensively reared Lacaune ewes. Vet. Med. 61, 623-634.
Chiy P.C. and Phillips C.J.C. (1995). Sodium in Agriculture. Chalcombe Publications, Canterbury, United Kingdom.
Constable P.D., Schmall L.M., Muir III W.W. and Hoffsis G.F. )1991(. Respiratory, renal, hematologic and serum biochemical effects of hypertonic saline solution in endotoxemic calves. American J. Vet. Res. 52, 990-998.
Cork S.C. and Halliwell R.W. (2002). The veterinary laboratory and field manual Nottingham University Press. Dairy Sci. 74, 3583-3597.
El-Gawad E. (1997). Physiological responses of Barki and Damascus goats and the crossbred to drinking saline water. Alexandria. J. Agric. Res. 42(1), 23-36.
El-Sherif M.A. and El-Hassanein E.E. (1996). Influence of drinking saline water on growth and distribution of body fluids in sheep. Alexandria. J. Agric. Res. 41, 1-9.
Forbes J.M. (1968). The water intake in ewes. British J. Nutr. 22, 33-43.
Ghanem A.M., Jaber L.S., Abi Said M., Barbour E.K. and Hamadeh S.K. (2008). Physiological and chemical responses in water-deprived Awassi ewes treated with vitamin C. J. Arid Environ. 72, 141-149.
Ghassemi Nejad J., Lohakare J.D., West J.W. and Sung K.I. (2014). Effects of water restriction after feeding during heat stress on nutrient digestibility, nitrogen balance, blood profile and characteristics in Corriedale ewes. Anim. Feed Sci. Technol. 193, 1-8.
Ghassemi Nejad J., Oskouian E., Kim B.W., Lee B.H. and Sung K.I. (2017). Microbial nitrogen production, nitrogen balance and exertion of urinary purine derivatives in Corriedale ewes under water deprivation. Ann. Anim. Sci. 17, 517-527.
Ghosh P.K., Khan M.S. and Abichandani R.K. (1976). Effect of water deprivation in summer on Marwari sheep. J. Agric. Sci. 887, 221-223.
Hadjigeorgiou I., Dardamani K., Goulas C. and Zervas G. (2000). The effect of water availability on feed intake anddigestion in sheep. Small Rumin. Res. 37, 147-150.
Hadjipanayiotou M. (1984). Influence of type of water on diet digestibility, mineral balance and rumen metabolites of Chios sheep. Z. Tierphysiol. Tierernahr. Futtermittelkd. 52, 194-200.
Hamadeh S.K., Rawda N., Jaber L.S., Habre A., Abisaid M. and Barbour E.K. (2006). Physiological responses to water restriction in dry and lactating Awassi ewes. J. Livest. Sci. 101, 101-109.
Igbokwe I.O. (1993). Haemoconcentration in Yankasa sheep exposed to prolonged water deprivation. Small Rumin. Res. 12, 99-105.
Jaber L.S., Hanna N., Barbour E.K., Abi Said M., Rawda N., Chedid M. and Hamadeh S.K. (2011). Fat mobilization in water restricted Awassi ewes supplemented with vitamin C. J. Arid Environ. 75, 625-628.
Jaber L.S., Habre A., Rawda N., Abi Said M., Barbour E.K. and Hamadeh S.K. (2004). The effect of water restriction on certain physiological parameters in Awassi sheep. Small Rumin. Res. 54, 115-120.
Kataria N. (2007). Compartmental water management of Marwari sheep. Vet. Arch. 77, 551-559.
Kattnig R.M., Pordomingo A.J., Schneberger A.G., Duff G.C. and Wallace J.D. (1992). Influence of saline water on intake, digesta kinetics, and serum profiles of steers. J. Range Manage. 45, 514-518.
Kellems R.O. and Church D.C. (2002). Livestock feeds and feeding. Prentice Hall, Upper Saddle River, New Jersey.
Laden S., Nehmadi L. and Yagil R. (1987). Dehydration tolerance in Awassi fat-tailed sheep. Canadian J. Zool. 65, 363-367.
MacFarlane W.V. (1964). Terrestrial animals in dry heat: ungulates, Pp. 509-539 in Adaptation to the Environment. D.B. Dill, E.F.A. Adolph and C.C. Wilberg, Eds. Washington, D.C., United States.
MacFarlane W.V., Morris R.J.H., Howard B., McDonald J. and Budtz-Olsen O.E. (1961). Water and electrolyte changes in tropical Merino sheep exposed to dehydration during summer. Australian J. Agric. Res. 12, 889-912.
Meintjes R.A. and Engelbrecht H. (2004). Changes in the renal handling of urea in sheep on a low protein diet exposed to saline drinking water. Onderstepoort J. Vet. Res. 79, 165-170.
Mengistu U., Dahlborn K. and Olsson K. (2007). Effect of intermittent watering on water balance and feed intake in Male Ethiopian Somali goats. Small Rumin. Res. 67, 45-54.
Möstl E. and Palme R. (2002). Hormones as indicators of stress. Dom. Anim. Endocrinol. 23, 67-74.
Mpendulo C.T., Chimonyo M. and Zindove T.J. (2017). Influence of water restriction and salinity on feed intake and growth performance of Nguni does. Small Rumin. Res. 149, 112-114.
NRC. (2001). Nutrient Requirements of Dairy Cattle. 7th Ed. National Academy Press, Washington, DC, USA.
NRC. (2007). Nutrient Requirements of Sheep. National Academy Press, Washington, DC, USA.
Parker A.J., Hamlin G.P., Coleman C.J. and Fitzpatrick L.A. (2003). Dehydration in stressed ruminants may be the result of a cortisol- induced diuresis. J. Anim. Sci. 81, 512-519.
Patterson H and Johnson P. (2003). Effect of water quality on beef cattle. Pp. 1-9 in Proc. Range Beef Cow Symp. University of Nebraska, Nebraska, United States.
Phillips C.J.C. and Chiy P.C. (1995). Sodium in Agriculture. Chalcombe Publications, Canterbury, United Kingdom.
Pierce A.W. (1959). Studies on salt tolerance of sheep II. The tolerance of sheep for mixture of sodium chloride and magnesium chloride in the drinking water. Australian J. Agric. Res. 10, 725-735.
Qinisaa M.M., Boomker E.A. and Mokoboki H.K. (2011). Physiological responses of water-restricted Tswana and Boer goats. Life Sci. J. 8, 106-111.
Ray D.E. (1989). Interrelationships among water quality, climate and diet on feedlot performance of steer calves. J. Anim. Sci. 67, 357-363.
Sager R.L. and Casagrande H. (1998). Effect of drinking water salinity on dry matter intake and digestibility of low and high quality forages. Inves. Agrar. Prod. San. Anim. 13, 69-75.
SAS Institute. (2003). SAS®/STAT Software, Release 9.1. SAS Institute, Inc., Cary, NC. USA.
Silanikove N. (1992). Effects of water scarcity and hot environment on appetite and digestion in ruminants: a review. Livest. Prod. Sci. 30, 175-194.
Silanikove N. (2000). The physiological basis of adaptation in goats to harsh environments. Small Rumin. Res. 35, 181-193.
Tucker E.M. (1975). Genetic markers in the plasma and red blood cells. Pp. 123-127 in The Blood of Sheep. M.H. Blunt, Ed. Springer-Verlag Berlin Heidelberg Publisher, Germany.
Valtorta S.E., Gallardo M.R., Sbodio O.A., Revelli G.R., Arakaki C., Leva P.E., Gaggiotti M. and Tercero E.J. (2007). Water salinity effects on performance and rumen parameters of lactating grazing Holstein cows. Int. J. Biometeorol. 52, 239-247.
Van Soest P.J. (1994). Nutritional ecology of the ruminant. Cornell University Press, Ithaca, New York.
Van Soest P.J., Robertson J.B. and Lewis B.A. (1991). Methods for dietary fiber, neutral detergent fiber, and non-starch polysaccharides in relation to animal nutrition. J. Dairy Sci. 74, 3583-3597.
Vernon R.G. (1992). Effects of diet on lypolysis and its regulation. Proc. Nutr. Soc. 51(3), 397-408.
Weatherburn M. (1967). Phenol-hypochlorite reaction for determination of ammonia. Anal. Chem. 39, 971-974.
Wilson A.D. (1966). The tolerance of sheep to sodium chloride in food or drinking water. Australian J. Agric. Res. 17, 503-514.
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 (Cervus timorensis russa). J. Anim. Sci. 81, 99-105.
Zoidis E. and Hadjigeorgiou L. (2017). Effect of drinking saline water on food and water intake, blood and urine electrolytes and biochemical and hematological parameters in goats. Anim. Prod. Sci. 56, 100-106.