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评估蛋鸡实验品系中饲料效率、生长相关特性和免疫活性之间的权衡。

Assessment of trade-offs between feed efficiency, growth-related traits, and immune activity in experimental lines of layer chickens.

机构信息

INRAE, AgroParisTech, Université Paris-Saclay, GABI, 78350, Jouy-en-Josas, France.

Avian Immunology Group, Department for Veterinary Sciences, LMU Munich, Munich, Germany.

出版信息

Genet Sel Evol. 2021 May 6;53(1):44. doi: 10.1186/s12711-021-00636-z.

Abstract

BACKGROUND

In all organisms, life-history traits are constrained by trade-offs, which may represent physiological limitations or be related to energy resource management. To detect trade-offs within a population, one promising approach is the use of artificial selection, because intensive selection on one trait can induce unplanned changes in others. In chickens, the breeding industry has achieved remarkable genetic progress in production and feed efficiency over the last 60 years. However, this may have been accomplished at the expense of other important biological functions, such as immunity. In the present study, we used three experimental lines of layer chicken-two that have been divergently selected for feed efficiency and one that has been selected for increased antibody response to inactivated Newcastle disease virus (ND3)-to explore the impact of improved feed efficiency on animals' immunocompetence and, vice versa, the impact of improved antibody response on animals' growth and feed efficiency.

RESULTS

There were detectable differences between the low (R+) and high (R-) feed-efficiency lines with respect to vaccine-specific antibody responses and counts of monocytes, heterophils, and/or T cell population. The ND3 line presented reduced body weight and feed intake compared to the control line. ND3 chickens also demonstrated an improved antibody response against a set of commercial viral vaccines, but lower blood leucocyte counts.

CONCLUSIONS

This study demonstrates the value of using experimental chicken lines that are divergently selected for RFI or for a high antibody production, to investigate the modulation of immune parameters in relation to growth and feed efficiency. Our results provide further evidence that long-term selection for the improvement of one trait may have consequences on other important biological functions. Hence, strategies to ensure optimal trade-offs among competing functions will ultimately be required in multi-trait selection programs in livestock.

摘要

背景

在所有生物体中,生活史特征受到权衡的限制,这些权衡可能代表生理限制,也可能与能量资源管理有关。为了在种群内检测权衡,一种很有前途的方法是使用人工选择,因为对一个特征的强烈选择会导致其他特征的意外变化。在鸡中,养殖行业在过去 60 年中在生产和饲料效率方面取得了显著的遗传进展。然而,这可能是以牺牲其他重要的生物学功能为代价的,例如免疫力。在本研究中,我们使用了三个实验性的蛋鸡品系——两个在饲料效率方面进行了差异选择的品系和一个对灭活新城疫病毒(ND3)的抗体反应增加的品系——来探索提高饲料效率对动物免疫能力的影响,反之亦然,即提高抗体反应对动物生长和饲料效率的影响。

结果

在疫苗特异性抗体反应和单核细胞、异嗜细胞和/或 T 细胞群体计数方面,低(R+)和高(R-)饲料效率品系之间存在可检测的差异。ND3 品系与对照系相比,体重和采食量降低。ND3 鸡对一组商业病毒疫苗的抗体反应也有所改善,但白细胞计数较低。

结论

本研究证明了使用实验性的鸡系进行差异选择,无论是为了 RFI 还是为了高抗体产生,都有价值,可以研究与生长和饲料效率相关的免疫参数的调节。我们的结果进一步证明了长期选择一个特征的改进可能对其他重要的生物学功能产生影响。因此,在多特征选择计划中,最终需要确保竞争功能之间的最佳权衡的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb1/8101249/f6b02bd1134e/12711_2021_636_Fig1_HTML.jpg

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