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Unique genetic responses revealed in RNA-seq of the spleen of chickens stimulated with lipopolysaccharide and short-term heat

机译:脂多糖和短期热刺激的鸡脾脏RNA-seq中揭示了独特的遗传反应

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摘要

Climate change and disease have large negative impacts on poultry production, but little is known about the interactions of responses to these stressors in chickens. Fayoumi (heat and disease resistant) and broiler (heat and disease susceptible) chicken lines were stimulated at 22 days of age, using a 2x2x2 factorial design including: breed (Fayoumi or broiler), inflammatory stimulus (lipopolysaccharide (LPS) or saline), and temperature (35°C or 25°C). Transcriptional changes in spleens were analyzed using RNA-sequencing on the Illumina HiSeq 2500. Thirty-two individual cDNA libraries were sequenced (four per treatment) and an average of 22 million reads were generated per library. Stimulation with LPS induced more differentially expressed genes (DEG, log2 fold change ≥ 2 and FDR ≤ 0.05) in the broiler (N = 283) than the Fayoumi (N = 85), whereas heat treatment resulted in fewer DEG in broiler (N = 22) compared to Fayoumi (N = 107). The double stimulus of LPS+heat induced the largest numbers of changes in gene expression, for which broiler had 567 DEG and Fayoumi had 1471 DEG of which 399 were shared between breeds. Further analysis of DEG revealed pathways impacted by these stressors such as Remodelling of Epithelial Adherens Junctions due to heat stress, Granulocyte Adhesion and Diapedesis due to LPS, and Hepatic Fibrosis/Hepatic Stellate Cell Activation due to LPS+heat. The genes and pathways identified provide deeper understanding of the response to the applied stressors and may serve as biomarkers for genetic selection for heat and disease tolerant chickens.
机译:气候变化和疾病对家禽生产产生了很大的负面影响,但是人们对鸡中这些应激源的反应之间的相互作用知之甚少。使用2x2x2因子分解设计,在22天龄时刺激Fayoumi(耐热和抗病)和肉鸡(热和疾病易感)鸡系,包括:品种(Fayoumi或肉鸡),炎性刺激(脂多糖(LPS)或盐水),和温度(35°C或25°C)。使用Illumina HiSeq 2500上的RNA测序分析脾脏的转录变化。对32个单独的cDNA文库进行了测序(每个处理四个),每个文库平均产生2200万个读数。 LPS刺激比法优米(N = 85)在肉鸡(N = 283)中诱导更多差异表达的基因(DEG,log2倍数变化≥2和FDR≤0.05),而热处理导致肉鸡中DEG减少(N = 22)与Fayoumi(N = 107)相比。 LPS +热的双重刺激导致基因表达的变化最大,其中肉鸡有567度,Fayoumi有1471度,其中399个在品种之间共享。对DEG的进一步分析揭示了受这些应激因素影响的途径,例如由于热应激引起的上皮粘附结的重塑,由于LPS引起的粒细胞粘附和渗血,以及由于LPS +热引起的肝纤维化/肝星状细胞活化。鉴定出的基因和途径可以更深入地了解对施加的应激源的反应,并可以作为耐热和耐病鸡遗传选择的生物标记。

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