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在整个生产期间对两层菌株的空肠转录组进行分析。

Jejunal transcriptomic profiling of two layer strains throughout the entire production period.

机构信息

Institute for Genome Biology, Research Institute for Farm Animal Biology (FBN), Wilhelm-Stahl-Allee 2, 18196, Dummerstorf, Germany.

Institute of Animal Science, University of Hohenheim, Emil-Wolff-Str. 10, 70599, Stuttgart, Germany.

出版信息

Sci Rep. 2021 Oct 11;11(1):20086. doi: 10.1038/s41598-021-99566-5.

Abstract

The jejunum plays crucial roles for the digestion and absorption of nutrients and minerals and for barrier functions that are essential for a healthy, productive life cycle of farm animals, including laying hens. Accordingly, knowledge of the molecular pathways that emerge in the intestine during development, and particularly at the beginning of laying activity, will help to derive strategies for improving nutrient efficiency in laying hens. In this study, jejunal samples were obtained from two high-yielding layer strains at five developmental stages (weeks 10, 16, 24, 30 and 60 of life) for RNA-sequencing, alongside the profiling of blood plasma parameters to approximate the dynamics of mineral homeostasis. The results reflected a marked distinction between the pre-laying and laying phase as inferred from levels of parathyroid hormone, triiodothyronine, estradiol, vitamin D, and calcium. Moreover, the expression patterns of the intestinal mucosa responded directly to the changing metabolic and nutritional profiles at the beginning of the laying phase in maturing high-yielding strains of laying hens. These comprise signaling events namely RANK/RANKL signaling and cellular senescence. Taken together, the timing of sexual maturity of laying hens demands closer examination to unravel metabolic requirements and associated endogenous mechanisms.

摘要

空肠在营养物质和矿物质的消化和吸收以及屏障功能方面发挥着关键作用,这些功能对于包括蛋鸡在内的农场动物的健康、生产生命周期至关重要。因此,了解在发育过程中,特别是在产蛋活动开始时,肠道中出现的分子途径将有助于制定提高蛋鸡营养效率的策略。在这项研究中,从两个高生产性能的蛋鸡品种的五个发育阶段(10、16、24、30 和 60 周龄)获得空肠样本,进行 RNA 测序,并对血浆参数进行分析,以近似矿物质动态平衡。结果反映了甲状旁腺激素、三碘甲状腺原氨酸、雌二醇、维生素 D 和钙水平推断出的产蛋前和产蛋期之间的显著区别。此外,肠道黏膜的表达模式直接响应成熟高产蛋鸡品种产蛋初期不断变化的代谢和营养特征。这些包括信号事件,即 RANK/RANKL 信号和细胞衰老。总之,蛋鸡性成熟的时机需要更仔细的检查,以揭示代谢需求和相关的内源性机制。

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