Impact of Heat Stress on Animal Reproduction and Mitigation Strategies: A Comprehensive Review

Abhishek Kumar

Livestock Development Department, Livestock Development Department, Government of Chhattisgarh, Chhattisgarh, India.

Chitralekha Deo

Livestock Development Department, Government of Chhattisgarh, Chhattisgarh, India.

Tarun Sahu

Livestock Development Department, Government of Chhattisgarh, Chhattisgarh, India.

Rashmi Lata Rakesh

Livestock Development Department, Government of Chhattisgarh, Chhattisgarh, India.

Bhuneshwar Pal Singh Kanwar

Department of Veterinary Medicine, College of Veterinary Science and Animal Husbandry Anjora, Dau Shri Vasudev Chandrakar Kamdhenu Vishwavidyalaya, Durg (Chhattisgarh), 491001, India.

Swarnalata Bara

Department of Livestock Production and Management, IGKV, Raipur, Kumari Devi Chaubey, College of Agriculture and Research Station Saja, Bemetara (C.G.), 491993, India.

Vidhu Kumar *

Animal Nutrition Division, ICAR-NDRI, Karnal, India.

Chandan Kumar Panigrahi

Department of Entomology, FAS-SOADU, Bhubaneswar, India.

*Author to whom correspondence should be addressed.


Abstract

Heat stress is a major environmental constraint affecting livestock productivity, welfare, and reproductive efficiency under changing climatic conditions. When environmental heat load exceeds an animal’s capacity for heat dissipation, coordinated physiological, endocrine, metabolic, cellular, and molecular responses are altered, with adverse consequences for fertility in both sexes. In females, elevated temperature impairs follicular development, oocyte competence, oestrous expression, fertilisation, embryo survival, pregnancy maintenance, and foetal development. In males, heat stress interferes with testicular thermoregulation, spermatogenesis, testosterone production, libido, and semen quality, including sperm motility, viability, morphology, and DNA integrity. These effects are mediated primarily through oxidative stress, endocrine disruption, mitochondrial dysfunction, apoptosis, inflammation, altered blood flow, and heat shock protein responses. Susceptibility differs among livestock species and breeds, with high-producing dairy cattle, buffaloes, and swine being particularly vulnerable, whereas many indigenous sheep and goat breeds show greater adaptive capacity. Mitigation requires integrated management rather than a single intervention. Environmental cooling, adequate water provision, nutrient-dense diets, electrolyte and antioxidant support, timed artificial insemination, embryo transfer, genetic selection for thermotolerance, and precision monitoring systems may help reduce reproductive losses. This review synthesises the mechanisms, species-specific effects, economic implications, and practical mitigation strategies associated with heat-stress-induced reproductive dysfunction in livestock under current and future climate pressure.

Keywords: Heat stress, livestock reproduction, oxidative stress, fertility, thermotolerance, reproductive biotechnology, climate change, dairy cattle, antioxidants, precision livestock farming


How to Cite

Kumar, Abhishek, Chitralekha Deo, Tarun Sahu, Rashmi Lata Rakesh, Bhuneshwar Pal Singh Kanwar, Swarnalata Bara, Vidhu Kumar, and Chandan Kumar Panigrahi. 2026. “Impact of Heat Stress on Animal Reproduction and Mitigation Strategies: A Comprehensive Review”. Journal of Advances in Biology & Biotechnology 29 (10):969-80. https://doi.org/10.9734/jabb/2026/v29i104486.

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