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基因表达谱分析揭示了与蛋鸭十二指肠中剩余采食量相关的候选基因。

Gene expression profiling reveals candidate genes related to residual feed intake in duodenum of laying ducks.

出版信息

J Anim Sci. 2017 Dec;95(12):5270-5277. doi: 10.2527/jas2017.1714.

Abstract

Feed represents two-thirds of the total costs of poultry production, especially in developing countries. Improvement in feed efficiency would reduce the amount of feed required for production (growth or laying), the production cost, and the amount of nitrogenous waste. The most commonly used measures for feed efficiency are feed conversion ratio (FCR) and residual feed intake (RFI). As a more suitable indicator assessing feed efficiency, RFI is defined as the difference between observed and expected feed intake based on maintenance and growth or laying. However, the genetic and biological mechanisms regulating RFI are largely unknown. Identifying molecular mechanisms explaining divergence in RFI in laying ducks would lead to the development of early detection methods for the selection of more efficient breeding poultry. The objective of this study was to identify duodenum genes and pathways through transcriptional profiling in 2 extreme RFI phenotypes (HRFI and LRFI) of the duck population. Phenotypic aspects of feed efficiency showed that RFI was strongly positive with FCR and feed intake (FI). Transcriptomic analysis identified 35 differentially expressed genes between LRFI and HRFI ducks. These genes play an important role in metabolism, digestibility, secretion, and innate immunity including (), (), (), β (), and (). These results improve our knowledge of the biological basis underlying RFI, which would be useful for further investigations of key candidate genes for RFI and for the development of biomarkers.

摘要

饲料占家禽生产总成本的三分之二,特别是在发展中国家。提高饲料效率将减少生产(生长或产蛋)所需的饲料量、生产成本和含氮废物量。饲料效率最常用的衡量指标是饲料转化率(FCR)和剩余饲料摄入量(RFI)。RFI 是基于维持和生长或产蛋所需的饲料量来衡量实际饲料摄入量与预期饲料摄入量之间的差异,作为一种更适合评估饲料效率的指标。然而,调节 RFI 的遗传和生物学机制在很大程度上尚不清楚。确定解释蛋鸭 RFI 差异的分子机制将有助于开发早期检测方法,以选择更高效的家禽养殖品种。本研究的目的是通过在鸭群中 2 个极端 RFI 表型(HRFI 和 LRFI)的转录谱分析,鉴定十二指肠基因和途径。饲料效率的表型方面表明,RFI 与 FCR 和饲料摄入量(FI)呈强正相关。转录组分析鉴定了 LRFI 和 HRFI 鸭之间的 35 个差异表达基因。这些基因在代谢、消化率、分泌和先天免疫中发挥重要作用,包括()、()、()、β()和()。这些结果提高了我们对 RFI 生物学基础的认识,这对于进一步研究 RFI 的关键候选基因和开发生物标志物将非常有用。

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