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外周血单个核细胞中热休克蛋白基因表达作为肉用犊牛热应激指标的研究

Heat-Shock Proteins Gene Expression in Peripheral Blood Mononuclear Cells as an Indicator of Heat Stress in Beef Calves.

作者信息

Kim Won-Seob, Ghassemi Nejad Jalil, Roh Sang-Gun, Lee Hong-Gu

机构信息

Department of Animal Science and Technology, Sanghuh College of Life Sciences, Konkuk University, Seoul 05029, Korea.

Team of An Educational Program for Specialists in Global Animal Science, Brain Korea 21 Plus Project, Sanghuh College of Life Sciences, Konkuk University, Seoul 05029, Korea.

出版信息

Animals (Basel). 2020 May 21;10(5):895. doi: 10.3390/ani10050895.

Abstract

This study was conducted to investigate the effect of HS on HSPs gene expression in bovine PBMCs of beef calves in in vitro and in vivo models. In the in vitro experiment, blood samples were collected from the jugular vein of five beef calves (age: 174.2 ± 5.20 days, BW: 145.2 ± 5.21 kg). In the in vivo experiment, sixteen Korean native male beef calves (age: 169.6 ± 4.60 days, BW: 136.9 ± 6.23 kg) were exposed to ambient temperature for seven days (22 to 24 °C, relative humidity 60%; temperature-humidity index (THI) = 68 to 70) and subsequently to the temperature and humidity corresponding to the target THI level for 21 days (HS). For PBMC isolation, blood samples were collected every three days. In the in vitro model, the cell viability was significantly decreased in HS groups compared with the control group ( = 0.015). The expression of HSP70 ( = 0.022), HSP90 ( = 0.003) and HSPB1 ( = 0.026) genes was increased in the HS group in in vitro model. In the in vivo experiment, the HSP70 gene expression was increased after sudden exposure to HS conditions (severe THI levels; THI = 88 to 90), whereas HSP90 and HSPB1 showed no differences among the THI groups ( > 0.05). However, in the severe THI group, the HSP70 gene expression returned to normal range after six days of continuous HS. In conclusion, the HSP70 gene plays a pivotal role in protecting cells from damage and is sensitive to HS in immune cells compared with other HSP genes in in vitro and in vivo models. In addition, the in vivo models suggest that calves exhibit active physiological mechanisms of adaptation to HS after six days of continuous exposure by regulating the HSP70 gene expression.

摘要

本研究旨在通过体外和体内模型,研究热应激(HS)对肉用犊牛外周血单核细胞(PBMCs)中热休克蛋白(HSPs)基因表达的影响。在体外实验中,从5头肉用犊牛(年龄:174.2±5.20天,体重:145.2±5.21千克)的颈静脉采集血样。在体内实验中,16头韩国本地雄性肉用犊牛(年龄:169.6±4.60天,体重:136.9±6.23千克)先在环境温度下饲养7天(22至24°C,相对湿度60%;温湿度指数(THI)=68至70),随后在对应目标THI水平的温度和湿度条件下饲养21天(热应激)。为分离PBMCs,每3天采集一次血样。在体外模型中,与对照组相比,热应激组的细胞活力显著降低(P = 0.015)。在体外模型中,热应激组中HSP70(P = 0.022)、HSP90(P = 0.003)和HSPB1(P = 0.026)基因的表达增加。在体内实验中,突然暴露于热应激条件(严重THI水平;THI = 88至90)后,HSP70基因表达增加,而HSP90和HSPB1在不同THI组间无差异(P>0.05)。然而,在严重THI组中,持续热应激6天后,HSP70基因表达恢复到正常范围。总之,在体外和体内模型中,与其他HSP基因相比,HSP70基因在保护细胞免受损伤方面起关键作用,且在免疫细胞中对热应激敏感。此外,体内模型表明,犊牛在持续暴露6天后,通过调节HSP70基因表达表现出适应热应激的积极生理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5de/7278438/3847a30eeb83/animals-10-00895-g001.jpg

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