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Effects of chronic heat stress on lactational performance and the transcriptomic profile of blood cells in lactating dairy goats

机译:慢性热应激对泌乳奶山羊泌乳性能和血细胞转录组谱的影响

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High temperature is a major stress that negatively affects welfare, health, and productivity of dairy animals. Heat-stressed animals are more prone to disease, suggesting that their immunity is hindered. Although productive and physiologic responses of dairy animals to heat stress are well known, there is still limited information on the response at the transcriptome level. Our objective was to evaluate the changes in performance and blood transcriptomics of dairy goats under heat stress. Eight multiparous Murciano-Granadina dairy goats in mid-lactation were assigned to 1 of 2 climatic treatments for 35 d. Treatments and temperature-humidity index (THI) were: (1) thermal neutral (TN: n = 4; 15-20 degrees C, 40-45%, THI = 59-65), and (2) heat stress (HS: n = 4; 12 h at 37 degrees C-40%, THI = 86; 12 h at 30 degrees C-40%, THI = 77). Rectal temperature, respiratory rate, feed intake and milk yield were recorded daily. Additionally, milk composition was evaluated weekly. Blood samples were collected at d 35 and RNA was extracted for microarray analyses (Affymetrix GeneChip Bovine Genome Array). Differences in rectal temperature and respiratory rate between HS and TN goats were maximal during the first 3 d of the experiment, reduced thereafter, but remained significant throughout the 35-d experimental period. Heat stress reduced feed intake, milk yield, milk protein and milk fat contents by 29, 8, 12, and 13%, respectively. Microarray analysis of blood revealed that 55 genes were up-regulated, whereas 88 were down-regulated by HS. Bioinformatics analysis using the Dynamic Impact Approach revealed that 31 biological pathways were impacted by HS. Pathways associated with leukocyte transendothelial migration, cell adhesion, hematopoietic cell lineage, calcium signaling, and PPAR signaling were negatively impacted by HS, whereas nucleotide metabolism was activated. In conclusion, heat stress not only negatively affected milk production in dairy goats, but also resulted in alterations in the functionality of immune cells, which would make the immune system of heat-stressed goats less capable of fending-off diseases.
机译:高温是对奶牛福利,健康和生产力产生负面影响的主要压力。热应激的动物更容易患病,表明它们的免疫力受到了阻碍。尽管众所周知奶牛对热应激的生产和生理反应,但是有关转录组水平反应的信息仍然有限。我们的目的是评估热应激下奶山羊的生产性能和血液转录组学的变化。在哺乳中期,将八只多产的Murciano-Granadina奶山羊分配给2种气候处理之一,持续35 d。处理和温度湿度指数(THI)为:(1)热中性(TN:n = 4; 15-20摄氏度,40-45%,THI = 59-65),以及(2)热应力(HS: n = 4;在37摄氏度40%时12小时,THI = 86;在30摄氏度40%时12小时,THI = 77)。每天记录直肠温度,呼吸频率,采食量和产奶量。另外,每周评估牛奶组成。在第35天收集血样并提取RNA用于微阵列分析(Affymetrix GeneChip牛基因组阵列)。在实验的前3天,HS和TN山羊之间的直肠温度和呼吸频率差异最大,此后减小,但在整个35天的实验期间仍保持显着性。热应激使饲料摄入量,牛奶产量,牛奶蛋白和牛奶脂肪含量分别降低了29%,8%,12%和13%。血液的微阵列分析显示,HS上调了55个基因,而88个下调了88个基因。使用动态影响方法的生物信息学分析显示,HS影响了31条生物途径。 HS会对与白细胞跨内皮迁移,细胞粘附,造血细胞谱系,钙信号传导和PPAR信号传导相关的途径产生负面影响,而核苷酸代谢则被激活。总之,热应激不仅会对奶山羊的产奶产生负面影响,而且还会导致免疫细胞功能的改变,这会使热应激山羊的免疫系统抵御疾病的能力降低。

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