2021
DOI: 10.3389/fvets.2021.713913
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Comparative Analysis of Metabolic Differences of Jersey Cattle in Different High-Altitude Areas

Abstract: In high-altitude area, hypoxia is a serious stress for humans and other animals, disrupting oxygen homeostasis and thus affecting tissue metabolism. Up to now, there are few reports on the metabolic changes of dairy cows at different altitudes. In this experiment, metabonomics technology and blood biochemical indexes were used to study the metabolic changes of dairy cows in different altitudes. The results showed that the different metabolites were mainly enriched in amino acid metabolism and sphingolipid meta… Show more

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Cited by 8 publications
(8 citation statements)
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References 45 publications
(52 reference statements)
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“…Bacteria play a key role in many types of feed biopolymer fermentation and degradation processes (Bickhart and Weimer, 2018), and fecal samples mostly represent the distal portion of the gut microbiotathe (de Oliveira et al, 2013). Recent studies have reported the high-altitude adaptability of various animals such as cattle (Kong et al, 2021), yak (Ayalew et al, 2021), and rats (Murray, 2016). Recently, alterations in the gastrointestinal microbiota due to altitude changes were investigated in yak (Liu et al, 2021), sheep (Holman et al, 2019), and pigs (Zeng et al, 2020).…”
Section: Introductionmentioning
confidence: 99%
“…Bacteria play a key role in many types of feed biopolymer fermentation and degradation processes (Bickhart and Weimer, 2018), and fecal samples mostly represent the distal portion of the gut microbiotathe (de Oliveira et al, 2013). Recent studies have reported the high-altitude adaptability of various animals such as cattle (Kong et al, 2021), yak (Ayalew et al, 2021), and rats (Murray, 2016). Recently, alterations in the gastrointestinal microbiota due to altitude changes were investigated in yak (Liu et al, 2021), sheep (Holman et al, 2019), and pigs (Zeng et al, 2020).…”
Section: Introductionmentioning
confidence: 99%
“…In previous studies, we found that Jersey cattle showed adaptations to high altitude areas at both the miRNA and proteome levels ( Kong et al, 2019 ), illustrating adaptive mechanisms through up-regulation of amino acid metabolism and sphingolipid metabolism ( Kong et al, 2021 ). Zhang et al (2022) found that rumen fermentation and bacteria characteristic of highland Sanhe heifers had a lower acetate-to-propionate ratio as alternative hydrogen electron acceptors for CH 4 mitigation, a lower relative abundance of Actinobacteria, and higher relative abundance of Spirochaetae than that in rumen of lowland heifers.…”
Section: Overview Of Introduced Ruminants On the Qinghai–tibetan Plateaumentioning
confidence: 83%
“…The Jersey cow, which originated in the United Kingdom, has been widely introduced in various areas including Tibet due to its strong disease resistance, rough feeding tolerance, high feeding utilization rate, and high milk fat content (which is the origin of butter) ( Kong et al, 2021 ). Liu et al (2022) found that Jersey cows were the species that had the best adaptation out of all the breeds that had been introduced to high-altitude regions.…”
Section: Introductionmentioning
confidence: 99%
“…Specifically, the composition of the bacterial community in the rumen can be examined through 16S rRNA gene amplicon sequences ( Pu et al, 2023 ). Metabolomics based on mass spectrometry (MS) is a method to study the overall changes of small-molecule metabolites, reflecting the physiological activities in organisms ( Kong et al, 2021 ). Therefore, we used 16S rRNA and metabolomics to study which feeding strategy is appropriate for Jersey cows in Tibetan Plateau during the cold season when forage resources are in short supply.…”
Section: Introductionmentioning
confidence: 99%