Transcriptome-based analysis reveals relationship between duck eggshell color and eggshell strength
文献类型: 外文期刊
第一作者: Wang, Longxin
作者: Wang, Longxin;Yu, Simeng;Lu, Meixi;Zhang, Yunsheng;Wang, Shuaiqin;Hou, Shuisheng;Wang, Longxin;Hou, Shuisheng;Liu, Hehe
作者机构:
关键词: Eggshell color; Eggshell strength; WGCNA; Biliverdin; Liver
期刊名称:BMC GENOMICS ( 影响因子:3.7; 五年影响因子:4.2 )
ISSN: 1471-2164
年卷期: 2025 年 26 卷 1 期
页码:
收录情况: SCI
摘要: BackgroundThe strength of duck eggshells is essential for their storage, transportation, and processing, with various studies indicating a correlation between eggshell color and strength.ResultsOur research has demonstrated that green-shelled duck eggs exhibit higher eggshell strength compared to white-shelled eggs in the M2 Line Pekin Duck population. To this end, we established mRNA transcriptome profiles of 10 eggshell gland tissues and 10 liver tissues and constructed gene expression networks in the two tissues. RNA-Seq analysis suggests that genes associated with ion transport, transmembrane transport, and liver cell proliferation and differentiation in the eggshell gland could play important roles in eggshell formation. The liver of green shell duck has stronger cell proliferation ability to maintain its homeostasis, and the eggshell gland has stronger ability to secrete eggshell matrix protein, which may be the reason why the eggshell is stronger than that of white shell duck. Through Weighted gene co-expression network analysis (WGCNA), three related modules were found in eggshell gland and liver, respectively, and three key genes were screened in each tissue (eggshell gland: FKBP10, PPARG, MAP3K5, liver: PHLDA1, FLT3, CACNB4). They have important regulatory effects on eggshell color and eggshell strength respectively.ConclusionsThrough transcriptome analysis, we identified key genes associated with eggshell color (ESB) (Gland: ABCG2, SLC51B; Liver: COX1, DIO3, RBPJ) and eggshell strength (ESS) (Gland: MAP3K5, PPARG, FKBP10; Liver: PHLDA1, FLT3, CACNB4). We propose that these genes regulate ESB and ESS by modulating antioxidant capacity and bile acid synthesis in the liver and shell gland, leading to enhanced biliverdin deposition and stronger eggshells in green-shelled ducks. Additionally, the upregulation of ion transport, transmembrane transport, and liver cell proliferation-related genes in green-shelled ducks further supports the observed superiority in eggshell strength.
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