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鹅品种间体型特征早期生长腿部肌肉转录组比较分析。

Comparative Transcriptome Analyses of Leg Muscle during Early Growth between Geese () Breeds Differing in Body Size Characteristics.

机构信息

College of Animal Science and Technology, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China.

Waterfowl Healthy Breeding Engineering Research Center, Guangdong Higher Education Institutes, Guangzhou 510225, China.

出版信息

Genes (Basel). 2023 May 7;14(5):1048. doi: 10.3390/genes14051048.

Abstract

Goose is an important poultry commonly raised for meat. The early growth performance of geese significantly influences their market weight and slaughter weight, affecting the poultry industry's economic benefits. To identify the growth surge between the Shitou goose and the Wuzong goose, we collected the early growth body traits from 0 to 12 weeks. In addition, we investigated the transcriptomic changes in leg muscles at the high growth speed period to reveal the difference between the two geese breeds. We also estimated the growth curve parameters under three models, including the logistic, von Bertalanffy, and Gompertz models. The results showed that except for body length and keel length, the best-fitting model between the body weight and body size of the Shitou and Wuzong was the logistic model. The growth turning points of Shitou and Wuzong were 5.954 and 4.944 weeks, respectively, and the turning point of their body weight was 1459.01 g and 478.54 g, respectively. Growth surge occurred at 2-9 weeks in Shitou goose and at 1-7 weeks in Wuzong goose. The body size traits of the Shitou goose and Wuzong goose showed a trend of rapid growth in the early stage and slow growth in the later stage, and the Shitou goose growth was higher than the Wuzong goose. For transcriptome sequencing, a total of 87 differentially expressed genes (DEGs) were identified with a fold change ≥ 2 and a false discovery rate < 0.05. Many DEGs have a potential function for growth, such as , , , , , and . KEGG pathway analysis identified that some DEGs were significantly enriched in the calcium signaling pathway, which may promote muscle growth. The gene-gene interaction network of DEGs was mainly related to the transmission of cell signals and substances, hematological system development, and functions. This study can provide theoretical guidance for the production and breeding management of the Shitou goose and Wuzong goose and help reveal the genetic mechanisms underlying diverse body sizes between two goose breeds.

摘要

鹅是一种重要的家禽,通常用于肉类生产。鹅的早期生长性能对其上市体重和屠宰体重有显著影响,从而影响家禽业的经济效益。为了比较狮头鹅和溆浦鹅的生长突增,我们收集了 0 到 12 周龄的早期生长体尺数据。此外,我们还研究了高速生长期间腿部肌肉的转录组变化,以揭示这两个鹅品种之间的差异。我们还在三个模型下估计了生长曲线参数,包括逻辑斯蒂模型、von Bertalanffy 模型和 Gompertz 模型。结果表明,除了体斜长和龙骨长,狮头鹅和溆浦鹅体重和体尺的最佳拟合模型是逻辑斯蒂模型。狮头鹅和溆浦鹅的生长转折点分别为 5.954 和 4.944 周,体重转折点分别为 1459.01 和 478.54 克。狮头鹅和溆浦鹅的生长突增分别发生在 2-9 周和 1-7 周。狮头鹅和溆浦鹅的体尺性状在早期呈现快速生长趋势,后期生长缓慢,狮头鹅的生长速度高于溆浦鹅。对于转录组测序,共鉴定到 87 个差异表达基因(DEGs),其 fold change≥2,且 false discovery rate(FDR)<0.05。许多 DEGs 具有生长潜力,如、、、、、和。KEGG 通路分析表明,一些 DEGs 显著富集在钙信号通路中,这可能促进肌肉生长。DEGs 的基因-基因互作网络主要与细胞信号和物质的传递、血液系统发育和功能有关。本研究可为狮头鹅和溆浦鹅的生产和养殖管理提供理论指导,有助于揭示两个鹅品种之间不同体尺的遗传机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5379/10217984/c1536ebb0bf2/genes-14-01048-g001.jpg

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