Effect of heat stress on the hypothalamic expression of water channel- and noncoding RNA biogenesis-related genes in modern broilers and their ancestor red jungle fowl
[Display omitted] •Heat stress and water scarcity are significant threats to poultry production.•Research on the regulation of water homeostasis regulation is scarce in poultry.•Three broiler populations from different genetic selection era (1950, 1995, 2015) and their ancestor JF were used.•Heat st...
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Veröffentlicht in: | Brain research 2024-05, Vol.1830, p.148810-148810, Article 148810 |
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•Heat stress and water scarcity are significant threats to poultry production.•Research on the regulation of water homeostasis regulation is scarce in poultry.•Three broiler populations from different genetic selection era (1950, 1995, 2015) and their ancestor JF were used.•Heat stress stimulated water consumption in modern broilers.•Hypothalamic RAAS, AQPs, AVP, and miRNA biogenesis systems are affected in a line- and environment-dependent manner.•This study identified several molecular signatures involved in water regulation in chickens.
Genetic selection for high growth rate has resulted in spectacular progress in feed efficiency in chickens. As feed intake and water consumption (WC) are associated and both are affected by environmental conditions, we evaluated WC and its hypothalamic regulation in three broiler-based research lines and their ancestor jungle fowl (JF) under heat stress (HS) conditions. Slow growing ACRB, moderate growing 95RB, fast growing MRB, and JF were exposed to daily chronic cyclic HS (36 °C, 9 h/d) or thermoneutral temperature (24 °C). HS increased WC in the MRB only. Arginine vasopressin (AVP) mRNA levels were decreased by HS in the MRB. Within the renin-angiotensin-aldosterone system (RAAS) system, renin expression was increased by HS in the JF, ACRB, and 95RB, while angiotensin I-converting enzyme (ACE), angiotensin II receptors (type 1, AT1, and type 2, AT2) were affected by line. The expression of aquaporin (AQP2, 7, 9, 10, 11, and 12) genes was upregulated by HS, whereas AQP4 and AQP5 expressions were influenced by line. miRNA processing components (Dicer1, Ago2, Drosha) were significantly different among the lines, but were unaffected by HS.
In summary, this is the first report showing the effect of HS on hypothalamic water channel- and noncoding RNA biogenesis-related genes in modern chicken populations and their ancestor JF. These results provide a novel framework for future research to identify new molecular mechanisms and signatures involved in water homeostasis and adaptation to HS. |
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ISSN: | 0006-8993 1872-6240 |
DOI: | 10.1016/j.brainres.2024.148810 |