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  4. Impact of heat stress during close-up dry period on performance, fertility and immunometabolic blood indices of dairy cows: prospective cohort study
 
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Impact of heat stress during close-up dry period on performance, fertility and immunometabolic blood indices of dairy cows: prospective cohort study

Type
Journal article
Language
English
Date issued
2024
Author
Stefańska, Barbara 
Pruszyńska-Oszmałek, Ewa 
Fievez, Veerle
Purwin, Cezary
Nowak, Włodzimierz 
Faculty
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Wydział Medycyny Weterynaryjnej i Nauk o Zwierzętach
Journal
Scientific Reports
ISSN
2045-2322
DOI
10.1038/s41598-024-72294-2
Web address
https://www.nature.com/articles/s41598-024-72294-2
Volume
14
Pages from-to
art. 21211
Abstract (EN)
This study aimed to investigate whether heat stress, as defined by the temperature-humidity index (THI) during the close-up dry period, had any impact on the productive performance, fertility, and immunometabolic blood indices of dairy cows in the subsequent lactation. Lactation performance was associated with increasing THI values on − 21, − 14, and − 7 d before calving resulting in decreased milk yield by about 2.30, 2.60, and 2.90 kg, respectively. The THI on the − 7 d before the calving was negatively associated with fertility parameters such as delayed first estrus postpartum, an elongated calving interval by approximately 32 d, a higher number of services per conception by 1.00, and an elongated artificial insemination service period, days open, and inter-calving period by about 20, 52, and 52 d, respectively. The study found that the immunometabolic blood indices were associated with increasing THI values during the close-up dry period. The study showed that exposing dairy cows to close-up dry period heat stress had negative consequences on performance, fertility, and immunometabolic blood indices in the subsequent lactation. Therefore, it is recommended that herd management and barn microclimate changes be implemented earlier, starting from the late dry period, to mitigate the negative impact of heat stress.
Keywords (EN)
  • Global warming

  • Climate change

  • Temperate climate

  • Metabolic adaptation

  • Energy balance

  • Immune response

License
cc-bycc-by CC-BY - Attribution
Open access date
September 11, 2024
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