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柯拉特慢生长鸡中生长激素和胰岛素样生长因子I基因型与体重、体重优势及mRNA表达的关联

Association of growth hormone and insulin-like growth factor I genotype with body weight, dominance of body weight, and mRNA expression in Korat slow-growing chickens.

作者信息

Sinpru Panpradub, Bunnom Rujjira, Poompramun Chotima, Kaewsatuan Pramin, Sornsan Sirangkun, Kubota Satoshi, Molee Wittawat, Molee Amonrat

机构信息

School of Animal Technology and Innovation, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima, 30000, Thailand.

出版信息

Anim Biosci. 2021 Dec;34(12):1886-1894. doi: 10.5713/ab.20.0729. Epub 2021 Mar 10.

Abstract

OBJECTIVE

Growth hormone (GH) and insulin-like growth factor I (IGF-I) play a critical role in animal growth rates. We aimed to investigate the effect of GH and IGF-I genotypes on body weight (BW), dominance, and gene expression in slow-growing chickens at different ages.

METHODS

A total of 613 Korat chickens (KRs) were bred and divided into three groups by genotype - A1A1, A1A3, and A3A3 for GH and AA, AC, and CC for IGF-I. Chickens were weighed every two weeks, and liver and breast muscle tissues were collected at 10 weeks of age. Genetic parameters of KRs were estimated using ASReml software. The GH and IGF-I mRNA levels were measured by quantitative polymerase chain reaction. Significant differences between traits were analyzed using the generalized linear model.

RESULTS

A significant effect of GH genotypes on BW was found at most ages, and the A1A1 genotype had the highest value of BW. Compared with the A3A3 genotype, the A1A1 and A1A3 genotypes showed a higher dominance effect at 0 and 2 weeks, and genotype A1A1 had the highest value of dominance at 8 weeks of age. A difference in GH mRNA levels between genotypes was detected in breast muscle at 6 weeks and in the liver tissue at 2 weeks. In the case of IGF-I gene, the AA genotype had the highest BW at the beginning of life. Significant differences in BW dominance were found at 2 weeks. However, IGF-I mRNA levels were not different among genotypes in both breast muscles and liver tissues.

CONCLUSION

Our results revealed that GH and IGF-I influence growth, but may not be involved in heterosis. GH can be used as a marker gene in selection programs for growth because the homozygous genotype (A1A1) had the highest BW at all ages. The IGF-I is not a useful marker gene for selection programs.

摘要

目的

生长激素(GH)和胰岛素样生长因子I(IGF-I)在动物生长速率中发挥关键作用。我们旨在研究GH和IGF-I基因型对不同年龄慢速生长鸡的体重(BW)、优势度和基因表达的影响。

方法

共饲养613只呵叻鸡(KRs),并按基因型分为三组——GH的A1A1、A1A3和A3A3,以及IGF-I的AA、AC和CC。每两周对鸡进行称重,并在10周龄时采集肝脏和胸肌组织。使用ASReml软件估计KRs的遗传参数。通过定量聚合酶链反应测量GH和IGF-I的mRNA水平。使用广义线性模型分析性状之间的显著差异。

结果

在大多数年龄发现GH基因型对BW有显著影响,A1A1基因型的BW值最高。与A3A3基因型相比,A1A1和A1A3基因型在0周和2周时显示出更高的优势度效应,且A1A1基因型在8周龄时优势度值最高。在6周龄的胸肌和2周龄的肝脏组织中检测到基因型之间GH mRNA水平存在差异。就IGF-I基因而言,AA基因型在生命初期BW最高。在2周龄时发现BW优势度存在显著差异。然而,在胸肌和肝脏组织中,IGF-I的mRNA水平在基因型之间并无差异。

结论

我们的结果表明,GH和IGF-I影响生长,但可能不参与杂种优势。GH可作为生长选择计划中的标记基因,因为纯合基因型(A1A1)在所有年龄的BW最高。IGF-I不是选择计划中的有用标记基因。

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Exploring the molecular basis of heterosis for plant breeding.探索杂种优势的分子基础,用于植物育种。
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