This review's objective is to provide information on the mechanisms that buffaloes express during the thermoregulation process. Generally, the water buffalo is associated with warm and tropical climates. In these systems, the combination of high temperature, relative humidity, and radiation cause different physiological and behavioral changes, particularly during the summer months. Wallowing behavior in water or mud promotes heat dissipation through physical mechanisms, such as conduction, convection, and radiation. Furthermore, the provision of natural or artificial shades contributes to thermoregulation and maintains homeostasis. In production systems in cold climates, the wallowing behavior is inhibited by the water temperature, so it is important to keep the animals protected in stables to avoid the cold winds and rapid drops in temperature, causing increased illness pneumonia and sometimes death. Finally, in cold conditions, the animals require an appropriate diet since the use of energy is distributed mainly for the production of heat. Thus, heat stress and cold stress generates relevant problems in health, welfare, and productivity in water buffaloes. A comprehensive assessment of the severity of the resulting problems associated with thermal stress and specialty in cold stress in water buffaloes is necessary so far, and there's very little information about it in this species.
Context
Calves reared in cow–calf systems separated from their mothers could present various physiological and behavioural changes.
Aims
The objective of the present study was to examine the effect of different weaning protocols on plasma cortisol concentrations, behavioural responses, and weight gain in water buffalo calves.
Methods
In total, 40 Murrah buffalo calves (20 males, 20 females) aged 7–8 months and weighing 247.05 ± 33.23 kg were included. The animals were assigned to one of four treatments (10 per group, 5 males, 5 females), as follows: non-weaned calves (NoW); calves weaned abruptly on Day 0 (AW); calves fitted with nose-flaps anti-suckling devices on Day –7 and completely separated from their mothers on Day 0 (NFW); and calves separated from their mothers by a fence line on Day –7 and, then completely separated from their mothers on Day 0 (FENW). Plasma cortisol was measured on Days –7, –6, –4, 0, 1 and 3, while the behavioural variables were measured from Day –7 to Day –4, and from Day 0 to Day 3. The weight of the calves was evaluated on Days –9, –7, 0 and 3.
Key results
AW calves presented higher cortisol concentrations than did NoW calves (P = 0.0002) and showed a marked increase in walking and decrease in grazing and ruminating on Days 0–3 compared with the other treatments (P < 0.0001). The use of NFW caused behavioural changes after the device placement and after the final separation from the mother (P < 0.0001). In FENW, behavioural changes were observed after the separation by a linear fence but no negative changes were observed after the final separation from the mothers, and positive behaviours such as grazing, rumination and exploration increased. No changes in weight gain were observed (P > 0.05).
Conclusions
No clear effects were observed in the implementation of alternative weaning, since both NFW and FENW presented changes related to stress at weaning, compared with abrupt weaning. However, in FENW, no behavioural alterations were observed after definitive separation from their mothers.
Implications
The application of fence-line separation before final separation could be a promising strategy to reduce stress at weaning in water buffalo calves. However, further studies are required to determinate its long-term effect.
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