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通过组织学和转录组动态分析探索鸭和鹅胚胎的右卵巢退化。

Exploring right ovary degeneration in duck and goose embryos by histology and transcriptome dynamics analysis.

机构信息

Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, 611130, China.

Yucheng District Agriculture and Rural Affairs Bureau, Ya'an, 625000, China.

出版信息

BMC Genomics. 2023 Jul 10;24(1):389. doi: 10.1186/s12864-023-09493-0.

Abstract

BACKGROUND

The development of asymmetric chick gonads involves separate developmental programs in the left and right gonads. In contrast to the left ovary developing into a fully functional reproductive organ, the right ovary undergoes gradual degeneration. However, the molecular mechanisms underlying the the degeneration of the right ovary remain incompletely understood. In the present study, we investigated the histomorphological and transcriptomic changes in the right ovary of ducks and geese during the the embryonic stage up to post-hatching day 1.

RESULT

Hematoxylin-eosin stainings revealed that the right ovary developed until embryonic day 20 in ducks (DE20) or embryonic day 22 in geese (GE22), after which it started to regress. Further RNA-seq analyses revealed that both the differentially expressed genes (DEGs) in ducks and geese right ovary developmental stage were significantly enriched in cell adhesion-related pathway (ECM-receptor interaction, Focal adhesion pathway) and Cellular senescence pathway. Then during the degeneration stage, the DEGs were primarily enriched in pathways associated with inflammation, including Herpes simplex virus 1 infection, Influenza A, and Toll-like receptor signaling pathway. Moreover, duck-specific DEGs showed enrichment in Steroid hormone biosynthesis, Base excision repair, and the Wnt signaling pathway, while geese-specifically DEGs were found to be enriched in apoptosis and inflammation-related pathways, such as Ferroptosis, Necroptosis, RIG-I-like receptor signaling pathway, and NOD-like receptor signaling pathway. These findings suggest that the degeneration process of the right ovary in ducks occurs at a slower pace compared to that in geese. Additionally, the observation of the left ovary of the geese varying degeneration rates in the right ovary after hatching indicated that the development of the left ovary may be influenced by the degeneration of the right ovary.

CONCLUSION

The data presented in this study provide valuable insights into the dynamic changes in histological structure and transcriptome during the degeneration of the right ovary in ducks and geese. In addition, through the analysis of shared characteristics in the degeneration process of the right ovary in both ducks and geese, we have uncovered the patterns of degradation and elucidated the molecular mechanisms involved in the regression of the right ovary in poultry. Furthermore, we have also made initial discoveries regarding the relationship between the degeneration of the right ovary and the development of the left ovary.

摘要

背景

不对称鸡性腺的发育涉及到左右性腺的独立发育程序。与左侧卵巢发育成为一个功能齐全的生殖器官不同,右侧卵巢会逐渐退化。然而,右侧卵巢退化的分子机制仍不完全清楚。本研究探讨了鸭和鹅胚胎期至出雏后 1 天的右侧卵巢的组织形态学和转录组学变化。

结果

苏木精-伊红染色显示,鸭的右侧卵巢发育至胚胎第 20 天(DE20)或鹅的胚胎第 22 天(GE22),此后开始退化。进一步的 RNA-seq 分析显示,鸭和鹅右侧卵巢发育阶段的差异表达基因(DEGs)均显著富集于细胞黏附相关通路(ECM-受体相互作用、焦点黏附通路)和细胞衰老通路。在退化阶段,DEGs 主要富集于与炎症相关的通路,包括单纯疱疹病毒 1 感染、流感 A 和 Toll 样受体信号通路。此外,鸭特异性 DEGs 显示在类固醇激素生物合成、碱基切除修复和 Wnt 信号通路中富集,而鹅特异性 DEGs 则在凋亡和炎症相关通路中富集,如铁死亡、坏死性凋亡、RIG-I 样受体信号通路和 NOD 样受体信号通路。这些发现表明,鸭右侧卵巢的退化过程比鹅的要慢。此外,孵化后观察到鹅的左侧卵巢退化速度与右侧卵巢不同,这表明左侧卵巢的发育可能受到右侧卵巢退化的影响。

结论

本研究提供了有价值的见解,了解了鸭和鹅右侧卵巢退化过程中组织学结构和转录组的动态变化。此外,通过分析鸭和鹅右侧卵巢退化过程中的共同特征,我们揭示了退化模式,并阐明了禽类右侧卵巢退化的分子机制。此外,我们还首次发现了右侧卵巢退化与左侧卵巢发育之间的关系。

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