Comparative transcriptome sequencing and weighted coexpression network analysis reveal growth-related hub genes and key pathways in the Chinese soft-shelled turtle (Pelodiscus sinensis)

IF 5.1 Q1 ENVIRONMENTAL SCIENCES
Guobin Chen , Tong Zhou , Jizeng Cao , Guiwei Zou , Hongwei Liang
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引用次数: 0

Abstract

The Chinese soft-shelled turtle (Pelodiscus sinensis) exhibits sexual dimorphism. Compared with females, males are considered to have higher economic value due to their accelerated growth, greater body mass, and longer skirt width. Studies focused on these sex disparities have largely neglected potential sex differences in growth. Here, we performed RNA sequencing of muscle tissue components from 1-year-old specimens to reveal gene expression patterns in P. sinensis. In our male and female cohorts, our analysis revealed, respectively, 388 and 526 upregulated differentially expressed genes (DEGs) and 1129 and 635 downregulated DEGs. Through weighted coexpression network analysis (WGCNA) and integration with phenotype data, we established two main gene modules: a light yellow module encompassing 191 genes (e.g., ACACB, CTH, HADHA, and CTNNB) that demonstrated a positive correlation with population traits, and a black module comprising 298 genes (e.g., CAV3, PIK3CD, SMAD3, and VEGFA) that demonstrated a negative correlation with population traits. We also performed a DEG evaluation and gene set enrichment analysis across individuals of different sizes and noted that pathways such as protein digestion and assimilation (ko04974), were substantially augmented in larger specimens. In these pathways, the collagen (COL) and solute carrier (SLC) gene families were noted to be crucial for sustaining body structure and facilitating nutrient and metabolite transportation. In conclusion, we elucidated the essential modules, pivotal genes, and pathways involved in gene expression differences among various P. sinensis size groupings. Our results provide novel insights for future studies on growth discrepancies in P. sinensis.
比较转录组测序和加权共表达网络分析揭示中华鳖生长相关枢纽基因和关键通路
中华鳖(Pelodiscus sinensis)表现出性双态性。与雌性相比,雄性由于生长速度快、体重大、裙边长而被认为具有更高的经济价值。关注这些性别差异的研究在很大程度上忽视了生长过程中潜在的性别差异。在此,我们对 1 岁标本的肌肉组织成分进行了 RNA 测序,以揭示中华鳖的基因表达模式。在雌雄样本中,我们的分析分别发现了388个和526个上调的差异表达基因(DEGs)以及1129个和635个下调的差异表达基因(DEGs)。通过加权共表达网络分析(WGCNA)以及与表型数据的整合,我们建立了两个主要的基因模块:浅黄色模块包括 191 个基因(如 ACACB、CTH、HADHA 和 CTNNB),这些基因与种群性状呈正相关;黑色模块包括 298 个基因(如 CAV3、PIK3CD、SMAD3 和 VEGFA),这些基因与种群性状呈负相关。我们还对不同体型的个体进行了 DEG 评估和基因组富集分析,并注意到蛋白质消化和同化(ko04974)等通路在大型标本中大幅增加。在这些途径中,胶原蛋白(COL)和溶质载体(SLC)基因家族对维持身体结构和促进营养及代谢物运输至关重要。总之,我们阐明了造成不同中华鳖体型组间基因表达差异的重要模块、关键基因和通路。我们的研究结果为今后研究中华鳖的生长差异提供了新的见解。
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CiteScore
4.10
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