Suppr超能文献

在因采食导致酸中毒的幼龄犊牛中,瘤胃壁微生物群落和肝脏转录组中元转录组的变化。

Changes in meta-transcriptome of rumen epimural microbial community and liver transcriptome in young calves with feed induced acidosis.

机构信息

The Cell Wall Utilization and Biology Laboratory, US Dairy Forage Research Center, USDA ARS, Madison, WI, 53706, USA.

Department of Dairy Science, University of Wisconsin-Madison, Madison, WI, 53706, USA.

出版信息

Sci Rep. 2019 Dec 12;9(1):18967. doi: 10.1038/s41598-019-54055-8.

Abstract

The common management practices of dairy calves leads to increased starch concentration in feed, which subsequently may cause rumen acidosis while on milk and during weaning. Until recently, few attempts were undertaken to understand the health risks of prolonged ruminal acidosis in post weaning calves. Resultantly, the molecular changes in the digestive tracts in post-weaning calves with ruminal acidosis remain largely unexplored. In this study, we investigated the liver transcriptome changes along with its correlation with the rumen microbial rRNA expression changes in young calves using our model of feed induced ruminal acidosis. In this model, new born calves were fed a highly processed, starch-rich diet starting from one week of age through 16 weeks. A total of eight calves were involved in this study. Four of them were fed the acidosis-inducing diet (Treated) and the rest of the four were fed a standard starter diet (Control). Liver and rumen epithelial tissues were collected at necropsy at 17 weeks of age. Transcriptome analyses were carried out in the liver tissues and rRNA meta-transcriptome analysis were done using the rumen epithelial tissues. The correlation analysis was performed by comparing the liver mRNA expression with the rumen epithelial rRNA abundance at genus level. Calves with induced ruminal acidosis had significantly lower ruminal pH in comparison to the control group, in addition to significantly less weight-gain over the course of the experiment. In liver tissues, a total of 428 differentially expressed genes (DEGs) (fold-change, FC ≥ 1.5; adjusted P ≤ 0.1) were identified in treated group in comparison to control. Biological pathways enriched by these DEGs included cellular component organization, indicating the impact of ruminal acidosis on liver development in young calves. Specifically, the up-regulated genes were enriched in acute phase response (P < 0.01), pyruvate metabolic process (P < 0.01) and proton-acceptors (P ≪ 0.001), indicating the liver's response to feed induced acidosis at the transcriptome level. Twelve transferase activity related genes had significant correlation with rumen microbial rRNA expression changes. Among these genes, two up-regulated genes were reported with involvement in lipid metabolism in the liver, implying the direct effect of feed-induced acidosis on both the rumen microbial community and liver metabolism. Our study provides insight into the physiological remodeling in the liver resultant from the prolonged acidosis in post weaning calves, which may facilitate future RNA-seq based diagnosis and precision management of rumen acidosis in dairy calves.

摘要

奶牛犊牛的常见管理实践导致饲料中淀粉浓度增加,这可能会导致瘤胃酸中毒,无论是在喂奶期间还是断奶期间。直到最近,人们很少尝试去理解断奶后奶牛长期瘤胃酸中毒的健康风险。因此,在断奶后患有瘤胃酸中毒的小牛的消化道中的分子变化在很大程度上仍未得到探索。在这项研究中,我们使用我们的饲料诱导瘤胃酸中毒模型研究了小牛肝脏转录组的变化及其与瘤胃微生物 rRNA 表达变化的相关性。在这个模型中,新生小牛从一周大开始就喂食高度加工的富含淀粉的饮食,持续到 16 周。共有 8 头小牛参与了这项研究。其中 4 头喂食致酸饮食(处理组),其余 4 头喂食标准起始饲料(对照组)。在 17 周大时通过解剖收集肝脏和瘤胃上皮组织。在肝脏组织中进行转录组分析,并使用瘤胃上皮组织进行 rRNA 元转录组分析。通过比较肝脏 mRNA 表达与属水平的瘤胃上皮 rRNA 丰度来进行相关性分析。与对照组相比,患有诱导性瘤胃酸中毒的小牛的瘤胃 pH 值明显更低,此外,在整个实验过程中体重增加明显较少。在肝脏组织中,与对照组相比,处理组中共有 428 个差异表达基因(DEGs)(倍数变化,FC≥1.5;调整后的 P 值≤0.1)。这些 DEGs 富集的生物学途径包括细胞组成组织,表明瘤胃酸中毒对小牛肝脏发育的影响。具体而言,上调基因在急性期反应(P<0.01)、丙酮酸代谢过程(P<0.01)和质子受体(P≪0.001)中富集,表明肝脏在转录组水平上对饲料诱导的酸中毒的反应。12 个与转移酶活性相关的基因与瘤胃微生物 rRNA 表达变化有显著相关性。在这些基因中,有两个上调基因与肝脏脂质代谢有关,这表明饲料诱导的酸中毒对瘤胃微生物群落和肝脏代谢有直接影响。我们的研究提供了关于断奶后小牛长期酸中毒引起的肝脏生理重塑的见解,这可能有助于未来基于 RNA-seq 的奶牛犊牛瘤胃酸中毒的诊断和精确管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fb/6908691/7f371d01b2e5/41598_2019_54055_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验