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粉壳蛋和蓝壳蛋鸡子宫中mRNA和长链非编码RNA测序分析

Insights Into mRNA and Long Non-coding RNA Profiling RNA Sequencing in Uterus of Chickens With Pink and Blue Eggshell Colors.

作者信息

Chen Siyu, Chen Kecheng, Xu Jiaming, Li Fangwei, Ding Jinlong, Ma Zheng, Li Gen, Li Hua

机构信息

Guangdong Provincial Key Laboratory of Animal Molecular Design and Precise Breeding, Key Laboratory of Animal Molecular Design and Precise Breeding of Guangdong Higher Education Institutes, School of Life Science and Engineering, Foshan University, Foshan, China.

Guizhou Changshun Tiannong Green Shell Laying Hen Industrial Co. Ltd, Chang Shun City, China.

出版信息

Front Vet Sci. 2021 Oct 7;8:736387. doi: 10.3389/fvets.2021.736387. eCollection 2021.

Abstract

The blue egg is both of biological interest and economic importance for consumers, egg retailers, and scientists. To date, the genetic mechanisms underlying pigment have mainly focused on protein-coding genes. However, the underpinning mechanism of non-coding RNAs on the pigment deposition among different eggshell colors remains unknown. In this study, RNA sequencing was employed to profile the uterine gland transcriptome (lncRNA and mRNA) of 15 Changshun blue eggshell layers, to better understand the genetic mechanisms of deposition of blue eggshell color. Results showed that differentially expressed mRNAs, GO terms, and KEGG pathways among pink-eggshell and blue-eggshell chickens were mainly targeting immune- and transporter-related terms with the SLC family, , CD family, and genes. Furthermore, the progesterone-mediated oocyte maturation and cortisol synthesis and secretion pathway with targeted gene and were significantly enriched between blue- and pink-eggshell chickens. Integrating analysis of lncRNA and mRNA profiles predicted 4 and 25 lncRNA-gene pairs by antisense and cis analysis. They were relative to immune, nerve, and lipids and amino acid metabolisms, porphyrin, and chlorophyll metabolism with targeted gene and oxidative phosphorylation and cardiac muscle contraction pathways with targeted gene . Within blue-eggshell chickens, the GO terms hindbrain tangential cell migration and phosphatidylinositol monophosphate phosphatase activity with targeted gene and were identified. Integrating analysis of lncRNA and mRNA profiles predicted 8 and 22 lncRNA-gene pairs. Most pathways were mainly enriched on lipid-related metabolisms as found in mRNA sequencing. The lncRNAs did exert similar functions in color formation by modulating pigment disposition and immune- and lipid-related metabolisms. Our results provide a catalog of chicken uterine lncRNAs and genes worthy of further studies to understand their roles in the selection for blue eggshell color layers.

摘要

蓝壳蛋对于消费者、蛋类零售商和科学家而言,既具有生物学研究价值,又具有经济重要性。迄今为止,色素形成的遗传机制主要集中在蛋白质编码基因上。然而,不同蛋壳颜色中,非编码RNA对色素沉积的潜在作用机制仍不清楚。在本研究中,采用RNA测序技术对15只长顺蓝壳蛋鸡的子宫腺转录组(lncRNA和mRNA)进行分析,以更好地了解蓝壳蛋颜色沉积的遗传机制。结果表明,粉壳蛋鸡和蓝壳蛋鸡之间差异表达的mRNA、GO条目和KEGG通路主要针对与免疫和转运相关的条目,涉及SLC家族、CD家族和 基因。此外,孕酮介导的卵母细胞成熟以及皮质醇合成与分泌通路,其靶向基因 和 在蓝壳蛋鸡和粉壳蛋鸡之间显著富集。lncRNA和mRNA图谱的整合分析通过反义和顺式分析预测了4对和25对lncRNA-基因对。它们分别与免疫、神经、脂质和氨基酸代谢、卟啉和叶绿素代谢相关,靶向基因 ;以及与氧化磷酸化和心肌收缩通路相关,靶向基因 。在蓝壳蛋鸡中,鉴定出了后脑切线细胞迁移和磷脂酰肌醇单磷酸磷酸酶活性的GO条目,其靶向基因 和 。lncRNA和mRNA图谱的整合分析预测了8对和22对lncRNA-基因对。如mRNA测序中所发现的,大多数通路主要富集在脂质相关代谢上。lncRNA确实通过调节色素沉积以及免疫和脂质相关代谢,在颜色形成中发挥了类似的功能。我们的研究结果提供了一份鸡子宫lncRNA和基因目录,值得进一步研究以了解它们在蓝壳蛋鸡选育中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877c/8529033/1db24552ac35/fvets-08-736387-g0001.jpg

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