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热应激肉鸡十二指肠代谢谱的变化

Duodenal Metabolic Profile Changes in Heat-Stressed Broilers.

作者信息

Dridi Jalila S, Greene Elizabeth S, Maynard Craig W, Brugaletta Giorgio, Ramser Alison, Christopher Courtney J, Campagna Shawn R, Castro Hector F, Dridi Sami

机构信息

École Universitaire de Kinésithérapie, Université d'Orléans, Rue de Chartres, 45100 Orléans, France.

Center of Excellence for Poultry Science, University of Arkansas, Fayetteville, AR 72701, USA.

出版信息

Animals (Basel). 2022 May 24;12(11):1337. doi: 10.3390/ani12111337.

Abstract

Heat stress (HS) is devastating to poultry production sustainability worldwide. In addition to its adverse effects on growth, welfare, meat quality, and mortality, HS alters the gut integrity, leading to dysbiosis and leaky gut syndrome; however, the underlying mechanisms are not fully defined. Here, we used a high-throughput mass spectrometric metabolomics approach to probe the metabolite profile in the duodenum of modern broilers exposed to acute (AHS, 2 h) or chronic cyclic (CHS, 8 h/day for 2 weeks) HS in comparison with thermoneutral (TN) and pair-fed birds. Ultra high performance liquid chromatography coupled with high resolution mass spectrometry (UHPLC-HRMS) identified a total of 178 known metabolites. The trajectory analysis of the principal component analysis (PCA) score plots (both 2D and 3D maps) showed clear separation between TN and each treated group, indicating a unique duodenal metabolite profile in HS birds. Within the HS groups, partial least squares discriminant analysis (PLS-DA) displayed different clusters when comparing metabolite profiles from AHS and CHS birds, suggesting that the metabolite signatures were also dependent on HS duration. To gain biologically related molecule networks, the above identified duodenal metabolites were mapped into the Ingenuity Pathway Analysis (IPA) knowledge-base and analyzed to outline the most enriched biological functions. Several common and specific top canonical pathways were generated. Specifically, the adenosine nucleotide degradation and dopamine degradation pathways were specific for the AHS group; however, the UDP-D-xylose and UDP-D-glucuronate biosynthesis pathways were generated only for the CHS group. The top diseases enriched by the IPA core analysis for the DA metabolites, including cancer, organismal (GI) injury, hematological, cardiovascular, developmental, hereditary, and neurological disorders, were group-specific. The top altered molecular and cellular functions were amino acid metabolism, molecular transport, small molecule biochemistry, protein synthesis, cell death and survival, and DNA damage and repair. The IPA-causal network predicted that the upstream regulators (carnitine palmitoyltransferase 1B, CPT1B; histone deacetylase 11, HDAC11; carbonic anhydrase 9, CA9; interleukin 37, IL37; glycine N-methyl transferase, GNMT; GATA4) and the downstream mediators (mitogen-activated protein kinases, MAPKs; superoxide dismutase, SOD) were altered in the HS groups. Taken together, these data showed that, independently of feed intake depression, HS induced significant changes in the duodenal metabolite profile in a duration-dependent manner and identified a potential duodenal signature for HS.

摘要

热应激(HS)对全球家禽生产的可持续性具有毁灭性影响。除了对生长、福利、肉质和死亡率产生不利影响外,热应激还会改变肠道完整性,导致肠道菌群失调和肠漏综合征;然而,其潜在机制尚未完全明确。在此,我们采用高通量质谱代谢组学方法,探究了暴露于急性(AHS,2小时)或慢性循环(CHS,每天8小时,持续2周)热应激的现代肉鸡十二指肠中的代谢物谱,并与处于热中性(TN)状态和配对饲养的鸡进行了比较。超高效液相色谱与高分辨率质谱联用(UHPLC-HRMS)共鉴定出178种已知代谢物。主成分分析(PCA)得分图(二维和三维图)的轨迹分析表明,TN组与各处理组之间有明显区分,这表明热应激鸡的十二指肠代谢物谱具有独特性。在热应激组中,当比较急性热应激和慢性热应激鸡的代谢物谱时,偏最小二乘判别分析(PLS-DA)显示出不同的聚类,这表明代谢物特征也取决于热应激持续时间。为了获得与生物学相关的分子网络,将上述鉴定出的十二指肠代谢物映射到 Ingenuity 通路分析(IPA)知识库中,并进行分析以概述最丰富的生物学功能。生成了几个常见的和特定的顶级经典通路。具体而言,腺苷核苷酸降解和多巴胺降解通路是急性热应激组特有的;然而,UDP-D-木糖和UDP-D-葡萄糖醛酸生物合成通路仅在慢性热应激组中出现。IPA核心分析中DA代谢物富集的顶级疾病,包括癌症、机体(胃肠道)损伤、血液学、心血管、发育、遗传和神经疾病,具有组特异性。分子和细胞功能的顶级变化包括氨基酸代谢、分子转运、小分子生物化学、蛋白质合成、细胞死亡和存活以及DNA损伤和修复。IPA因果网络预测热应激组中上游调节因子(肉碱棕榈酰转移酶1B,CPT1B;组蛋白去乙酰化酶11,HDAC11;碳酸酐酶9,CA9;白细胞介素37,IL37;甘氨酸N-甲基转移酶,GNMT;GATA4)和下游介质(丝裂原活化蛋白激酶,MAPKs;超氧化物歧化酶,SOD)发生了改变。综上所述,这些数据表明,独立于采食量下降之外,热应激以持续时间依赖性方式诱导十二指肠代谢物谱发生显著变化,并确定了热应激潜在的十二指肠特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecae/9179521/d5550d33838e/animals-12-01337-g001.jpg

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