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The effect of heat stress on proliferation, synthesis of steroids, and gene expression of duck granulosa cells. | LitMetric

AI Article Synopsis

  • Granulosa cells (GCs) are crucial for follicle development, and this study examines how heat stress at 41°C and 43°C affects their growth and steroid production in ducks.
  • Using RNA sequencing, the research identified changes in gene expression, revealing that heat stress leads to an increase in GCs blocked in the G1 phase and a decrease in genes important for follicle progression.
  • A total of 241 differentially expressed genes were found, with key findings including the activation of heat shock proteins and CXC chemokines, and downregulation of collagenases, suggesting potential molecular mechanisms for reduced egg production in ducks during heat stress.

Article Abstract

Granulosa cells (GCs) play an important role in the development of follicles. In this study, we investigate the impact of heat stress at 41°C and 43°C on duck GCs' proliferation and steroids secretion. And, the transcriptomic responses to heat treatment were examined using RNA-sequencing analysis. Digital gene expression profiling was used to screen and identify differentially expressed genes (fold change ≥ 2 and Q value < 0.05). Further, the differential expression genes (DEGs) were classified into GO categories and KEGG pathways. The results show that duck GCs blocked in the G1 phase were increased on exposure to heat stress. Meanwhile, the expression of proliferative genes, which were essential for the transition from G1 to S phase, was inhibited. At the same time, heat stress inhibited the estradiol synthesis of GCs by decreasing CYP11A1 and CYP19A1 gene expression. A total of 241 DEGs including 181 upregulated and 60 downregulated ones were identified. Transcriptome result shows that heat shock protein and CXC chemokines gene were significantly activated during heat stress. While collagenases (MMP1 and MMP13) and strome lysins (MMP3) were downregulated. And, the hedgehog signaling pathway may be a prosurvival adaptive response under heat stress. These results offer a basis for better understanding the molecular mechanism underlying lay-eggs-less in ducks under heat stress.

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Source
http://dx.doi.org/10.1111/asj.13617DOI Listing

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