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蓝壳蛋鸡与海兰褐蛋鸡子宫之间蛋壳颜色和产蛋性状的转录组分析。

Transcriptome analyses of shell color and egg production traits between the uteruses of blue-green eggshell chickens and Hy-Line brown layers.

作者信息

Wang Huanhuan, Zhang Lei, Wei Yinghui, Liu Hang, Wang Yanlu, Ge Ying, Pan Yuchun

机构信息

Hangzhou Academy of Agricultural Sciences, Hangzhou 310024, China; College of Animal Sciences, Zhejiang University, Hangzhou 310058, China.

Hangzhou Academy of Agricultural Sciences, Hangzhou 310024, China.

出版信息

Poult Sci. 2024 Dec;103(12):104438. doi: 10.1016/j.psj.2024.104438. Epub 2024 Oct 18.

Abstract

Blue-green eggs exhibit unique shell color; however, compared to commercial layers, blue-green eggshell chickens have lower egg production and lack uniform shell colors. Aiming to confirm the molecular mechanisms that affect shell color and egg production, this study collected the uteruses of 12 blue-green eggshell chickens (BG group) and six Hy-Line layers (Brown group), which had significantly different shell color indexes (SCI) and egg numbers at 300 days of age (EN300). Transcriptome sequencing and comparative analyses were subsequently performed. BG hens were divided into two groups for comparative analysis (BGblue vs. BGgreen and BGlow vs. BGhigh, respectively), based on the differences in SCI and EN300, respectively. The result of weighted gene co-expression network (WGCNA) analysis showed that the sequenced and mapped 16,785 genes were clustered into 18 modules, among which six modules with a total of 4270 genes were highly correlated with SCI and EN300 traits. Five hundred and eleven differentially expressed genes (DEGs) belonged to the six key modules. Through KEGG mapping, GO enrichment, and Cytoscape network analysis, nine Hub genes were tightly associated with SCI and EN300. The up-regulated genes were CCR2, CCR8, CD40LG, IL18RAP, INHBA, and P2RY13, while the down-regulated genes were ABCA13, ADCY2, and GRM1. Co-analyses with the results of comparisons between the BG subgroups revealed that the expression of solute carrier (SLC) proteins and ABC transporters were highly related to eggshell color, while cytokine-cytokine receptor interactions and neuroactive ligand-receptor interactions were key pathways affecting egg production. The expression of extracellular cytokines and membrane receptors were significantly up-regulated in low-yield chickens. The candidate DEGs and pathways found in the study will assist in clarifying the molecular mechanisms affecting shell color and egg production, and improve the breeding of blue-green eggshell chickens.

摘要

蓝绿色鸡蛋呈现出独特的蛋壳颜色;然而,与商品蛋鸡相比,蓝绿色蛋壳鸡产蛋量较低且蛋壳颜色缺乏一致性。为了确定影响蛋壳颜色和产蛋量的分子机制,本研究收集了12只蓝绿色蛋壳鸡(BG组)和6只海兰褐蛋鸡(褐组)的子宫,这两组鸡在300日龄时蛋壳颜色指数(SCI)和产蛋数(EN300)有显著差异。随后进行了转录组测序和比较分析。根据SCI和EN300的差异,BG母鸡分别分为两组进行比较分析(分别为BGblue与BGgreen以及BGlow与BGhigh)。加权基因共表达网络(WGCNA)分析结果表明,测序并映射的16785个基因被聚类为18个模块,其中6个模块共4270个基因与SCI和EN300性状高度相关。511个差异表达基因(DEG)属于这6个关键模块。通过KEGG映射、GO富集和Cytoscape网络分析,9个枢纽基因与SCI和EN300紧密相关。上调基因有CCR2、CCR8、CD40LG、IL18RAP、INHBA和P2RY13,而下调基因有ABCA13、ADCY2和GRM1。与BG亚组之间比较结果的联合分析表明,溶质载体(SLC)蛋白和ABC转运蛋白的表达与蛋壳颜色高度相关,而细胞因子 - 细胞因子受体相互作用和神经活性配体 - 受体相互作用是影响产蛋量的关键途径。低产鸡中细胞外细胞因子和膜受体的表达显著上调。本研究中发现的候选DEG和途径将有助于阐明影响蛋壳颜色和产蛋量的分子机制,并改善蓝绿色蛋壳鸡的育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7db7/11550360/c678bd77f690/gr1.jpg

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