بررسی کمبود فصلی برخی عناصر کمیاب در گوسفندان منطقه تالش در سال 1398

نوع مقاله : مقاله پژوهشی

نویسندگان

1 دانشکده دامپزشکی دانشگاه آزاد اسلامی واحد تبریز

2 دانشجوی سال آخر دکتری حرفه‌ای دامپزشکی، دانشکده‌ی دامپزشکی، واحد تبریز، دانشگاه آزاد اسلامی، تبریز، ایران

3 دانشیار بخش کلینیکال پاتولوژی، گروه علوم درمانگاهی، دانشکده‌ی دامپزشکی، واحد تبریز، دانشگاه آزاد اسلامی، تبریز، ایران

4 دستیار بیماری‌های داخلی دام‌های بزرگ، گروه کلینیکال پاتولوژی و بیماری‌های داخلی دام‌های بزرگ، دانشکده دامپزشکی، دانشگاه ارومیه، ارومیه، ایران

چکیده

< p>< p>زمینه مطالعاتی: بیماری‌های متابولیک حاصل از کمبود مواد معدنی در گوسفند از اهمیت زیادی برخوردار است. منطقه تالش در شمال ایران در غرب استان گیلان واقع شده و با توجه به داشتن مراتع وسیع و گسترده، پرورش گوسفند در این ناحیه دارای رونق زیادی می‌باشد. هدف: این مطالعه به منظور بررسی فصلی کمبود عناصر منیزیم، مس، روی و سلنیوم با اندازه‌گیری سطوح سرمی این عناصر در 200 رأس گوسفند (50 نمونه در هر فصل) در گوسفندان شهرستان تالش در سال 1398 انجام گرفت. روش کار: نمونه‌های سرمی از حیوانات با سنین مختلف شامل زیر یکسال و یک سال (42 رأس)، دو سال (44 رأس)، سه سال (28 رأس)، چهار سال (40 رأس)، پنج سال (24 رأس) و شش سال و بالای آن (22 رأس)، و در دو جنس نر (30 رأس) و ماده (170 رأس) اخذ شد. از هر دام به میزان 10 سی‌سی نمونه خون از ورید وداج اخذ و سرم جدا سازی و فریز شد. در زمان آزمایش، نمونه‌ها از فریز خارج شده و مقادیر سرمی مس، روی و سلنیوم با روش جذب اتمی و منیزیم با کیت بیوشیمیایی اندازه‌گیری شد. نتایج: میانگین منیزیم سرم در فصل بهار بیشتر از سایر فصول بود و اختلاف بین فصول معنی‌دار بود(05/0p < ). میانگین مقدار سرمی مس، روی و سلنیوم در فصل تابستان بیشتر از سایر فصول بود که در هر سه مورد اختلاف بین فصول معنی‌دار گزارش شد (05/0p < ). میانگین پارامترهای سرمی در بین دو جنس در هیچ مورد اختلاف معنی‌داری نداشت. با افزایش سن میانگین پارامترهای سرمی اندازه‌گیری شده افزایش نشان داد که در مورد منیزیم این افزایش غیرمعنی‌دار و در باقی موارد معنی‌دار بود (05/0p < ). نتیجه گیری نهایی: نتیجه نهایی اینکه در فصول سرد سال و در سنین پایین مقادیر سرمی عناصر فوق کم بوده و برای پیشگیری از عوارض احتمالی کمبود آنها باید از اشکال تزریقی یا خوراکی این عناصر در گوسفندان این منطقه استفاده نمود.

کلیدواژه‌ها


عنوان مقاله [English]

Seasonal Study for Deficiency of Some Trace Elements in Sheep in Talesh Area in 2019-2020

نویسندگان [English]

  • shadi aghajani 2
  • Bahram Amoughli- Tabrizi 3
  • amir ganjkhanloo 4
2 D.V.M Student, Faculty of Veterinary Medicine, Tabriz Branch, Islamic Azad University, Tabriz, Iran
3 Associate Professor, Department of Clinical Sciences, Tabriz Branch, Islamic Azad University, Tabriz, Iran
4 Resident of Large Animal Internal Medicine, Department of Clinical Pathology and Large Animal Internal Medicine, Faculty of Veterinary Medicine, Urmia University, Urmia, Iran.
چکیده [English]

< p >< p >Introduction: Mineral elements required by the body of living organisms are divided into two categories: macroelements and microelements, which make up 2-5% of the body weight of animals. Minerals have vital role in the efficiency of growth, production and reproduction performances. General conditions for the deficiency of these minerals can be caused by a deficiency in food, a deficiency in the soil, or an imbalance between the amounts of minerals (Costabe et al 2017). Deficiency may be low and the appearance of the animal may not indicate anything, but all deficiencies will affect the animal sooner or later. Deficiency of some elements such as copper, selenium, zinc and magnesium is more common in areas with poor soil (Myers et al 2019). Talesh region is located in the north of Iran in the west of Gilan province and due to having large and extensive pastures in this area; it is very prosperous for sheep keeping. No complete study has been conducted on the status of rare and essential elements of livestock in this area. Therefore, this study was conducted to investigate the serum levels of some elements (magnesium, copper, zinc and selenium) and seasonal comparison in sheep in this area.
Materials and methods: The study was conducted on 200 sheep in four geographical areas north, south, west and east of Talesh city (50 samples per season). In the middle of each season, after registering the livestock characteristics, serum samples were obtained at different ages under one year and one year (42 cases), two years (44 cases), three years (28 cases), four years (40 cases), five years (24 cases) and six years and above (22 cases). Sheep were in both sexes (30 cases) and females (170 cases). Sampling was done randomly. From each animal, 10 cc of blood was taken from jugular vein and the serum was separated and frozen. During the measurement, the samples were separated from the freezer and the serum values of copper, zinc and selenium were measured by atomic absorption method (model AA6300 made by SHIMADZU company of Japan) (Bye 1989) and magnesium serum was measured by Pars Azmoun biochemical kit. The results analyzed by ANOVA and Ttest to determine the difference between seasons, different groups of ages and sexes.
Results and discussion:
The mean serum magnesium level was higher in spring (2.81 ±0.35 mg/dl) than in other seasons and lower in winter (2.60 ± 0.35 mg/dl) than in others. The mean serum levels of copper in spring, summer, autumn and winter was 0.80 ±0.071, 0.94 ±0.091, 0.84 ±0.091 and 0.60 ± 0.092 mg/dl, respectively. These means were 65.11 ±2.11, 72.10 ±1.64, 72.00 ±1.64 and 64.91 ± 2.36 mg/dl, respectively for zinc. The mean serum selenium levels were higher in summer (0.042 ±0.006 mg/dl) and lower in winter (0.035 ±0.005 mg/dl) than in other seasons. The differences between the seasons were significant in all elements (P < 0.05). The means of magnesium, zinc and selenium in the serum in males were higher than females nonsignificantly. The mean of serum copper was higher in the females that this increasing was not significant, also. Serum magnesium levels were higher in the 3 years than in other ages, but the difference between mean serum magnesium levels was not significant at different ages. The mean serum copper in the 5 years and the serum zinc and selenium levels in the six years were higher than in other ages, significantly (p < /p>

کلیدواژه‌ها [English]

  • Sheep
  • Trace elements
  • Serum
  • Talesh
Abarghani A, Mostafaei M, Alamisaeid K, Ghanbari A, Sahraee M and Ebrahimi R, 2012. Investigation of calcium, phosphorous and magnesium status of grazing sheep in sabalan region, Iran. Journal of Agricultural Science and Technology 15(1): 65-76.
Afsah Hejri SJ, Badiei K, Pourjafar M, Oryan A, Keshavarzi B, Chalmeh A and Mesbah GR, 2019. Seasonal Variation and Relationships Between Copper of Serum and Various Tissues in Copper Poisoned Sheep in Kerman Province, Iran. Iranian Journal of Veterinary Medicine 13(2): 163-173.
Aytekin I and Aypak S, 2011. Levels of selected minerals, nitric oxide, and vitamins in aborted Sakis sheep raised under semitropical conditions. Tropical Animal Health Production 43(2): 511-514.
Behmard F and Rezaei Saber AP, 2019. Mid-seasonal evaluation of serum magnesium levels and its relationship with selective serum biochemical parameters in sheep of Miandoab region. Journal of Veterinary Clinical Pathology 12 (1): 9-20 (In Persian).
Beytut E and karatas F, 2002. Lambs with white muscle disease and selenium content of soil and meadow hay in the region of Kars. Turkey Veterinary Journal 163(2): 214-217.
Bye R, 1989. Generation of selenium hydride from alkaline solutions: a new concept of hydride generation atomic absorption technique. J Autom Chem 11: 156-158.
Constable PD, Hinchliff KW, Done SH and Grnberg W, 2017. Veterinary Medicine, 11th Edition, Elsevier Company, Missouri.
Erdogan S, Karadas F, Yılmaz A and Karaca S, 2017. The effect of organic selenium in feeding of ewes in late pregnancy on selenium transfer to progeny. Revista Brasileira de Zootecnia46(2):147-155
Haji Hajiklaei MR, Razi Jalali M, Ghasemi Ismail Kalaei SMB, 2008. The effects of age, sex and different seasons on the amount of calcium, phosphorus and magnesium in the blood serum of sheep in Mazandaran, 15th Iranian Veterinary Congress. Tehran, Iran.
Kojouri GA, and Shirazi A, 2007. Serum concentration of Cu, Zn, Fe, Mo, and Co in newborn lambs following systemic administration of Vitamin E and selenium to the pregnant ewes. Small Ruminant Research 70(2-3): 136-139.
Mohammed AJ and Kshash QH, 2016. Comparative study of serum copper concentration in natural copper deficient and healthy Awassi sheep in Al-Najaf cityIraq. Kufa Journal for Veterinary Medical Sciences, 6(2): 8-16.
Myers Hill G and Carlson Shannon M, 2019. Copper and Zinc Nutritional Issues for Agricultural Animal Production. Biological Trace Element Research 188: 148–159.
Rezaei saber AP and Rezaei, 2007, Seasonal serum copper variation in sheep and measurement of copper, molybdenum and sulfur concentrations in pasture grass and soil in Mahabad, West Azarbaijan Province. Journal of Comparative Pathobiology 4 (3): 227-232 (In Persian).
Ramin A, S Asri S  and Bookan M, 2017, Evaluation of serum copper, iron and zinc concentrations in horse and mule of Urmia, Journal of Animal Science Researchers 27 (2): 101-112 (In Persian).
Ramirez JE and Zinn RA, 2000. Interaction of dietary magnesium level on the feeding value of supplemental fat in finishing diets for feedlot steers. Journal of Animal Science, 78(8): 2072-2080.
Suttle NF, 2010. Mineral nutrition of livestock. 4th ed. Cabi publishing, New York.