Effect of multiple stresses on growth and adaptive capability of Malpura ewes under semi-arid tropical environment

被引:0
作者
Veerasamy Sejian
Vijai Prakash Maurya
Kamal Kumar
Syed Mohammad Khursheed Naqvi
机构
[1] Central Sheep & Wool Research Institute,Adaptation Physiology Laboratory, Division of Physiology & Biochemistry
[2] National Institute of Animal Nutrition and Physiology,Animal Physiology Division
来源
Tropical Animal Health and Production | 2012年 / 45卷
关键词
Cortisol; Heat stress; Locomotion; Nutritional restriction; Sheep;
D O I
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学科分类号
摘要
A study was conducted to assess the effect of multiple stresses (thermal, nutritional, and walking stress) on the adaptive capability of Malpura ewes in terms of changes in physiological mechanisms and blood biochemical changes. The study was conducted for a period of 35 days covering two estrous cycles during summer season (April–May). The ewes were randomly allocated into two groups of 12 animals each, viz., GI (n = 12; control) and GII (n = 12; multiple stresses). GI ewes were maintained in the shed while GII ewes were subjected to multiple stresses. GI ewes were maintained in shed while GII ewes were subjected to heat stress by exposing them to 32–44 °C (average 42 °C) and RH of 12–26 % for 6 h from 10:00 to 16:00 h in natural environment. GI ewes were provided with ad libitum feeding while GII ewes were provided with restricted feed (30 % of intake of GI ewes) to induce nutritional stress. Further, GII ewes were subjected to walking stress by forcing them to walk 14 km in two spans between 9:00 and 10:30 h and 15:00 and 16:30 h. Blood collection was done at weekly intervals. Multiple stresses significantly (P < 0.01) affected body weight, respiration rate, pulse rate, rectal temperature, sweating rate, tri-iodo-thyronine, thyroxine, cortisol, hemoglobin, packed cell volume, glucose, and total protein. The findings from this experiment provide useful information to understand the ideal nutrient requirement for these animals to adapt to such stresses in the semi-arid tropical environment without compromising production.
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页码:107 / 116
页数:9
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共 135 条
[1]  
Al-Haidary AA(2004)Physiological responses of Naimey sheep to heat stress challenge under semi-arid environments International Journal of Agriculture and Biology 2 307-309
[2]  
Alhidary IA(2012)Physiological responses of Australian Merino wethers exposed to high heat load Journal of Animal Science 90 212-220
[3]  
Shini S(1974)Enzymatic determination of total serum cholesterol Clinical Chemistry 20 470-475
[4]  
Al Jassim RAM(1992)Comparative study of hemoglobin estimated by Drabkin’s and Sahli’s methods Journal of Postgraduate Medicine 38 8-9
[5]  
Gaughan JB(1957)Influence of some factors on the relative evaporation rate from the skin of cattle Nature 179 1256-1183
[6]  
Allain CC(2010)Metabolic and hormonal acclimation to heat stress in domesticated ruminants Animal 4 1167-454
[7]  
Poon LS(2008)Invited review: genes involved in the bovine heat stress response Journal of Dairy Science 91 445-1016
[8]  
Chan CSG(2009)Physiological adaptation to humid tropics with special references to the West African Dwarf (WAD) goat Tropical Animal Health Production 41 1005-234
[9]  
Richmond W(2008)A new heat load index for feedlot cattle Journal of Animal Science 86 226-627
[10]  
Fu PC(2009)Assessing the heat tolerance of 17 beef cattle genotypes International Journal of Biometeorology 54 617-82