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首页> 外文期刊>BMC Genomics >De novo transcriptome analysis shows differential expression of genes in salivary glands of edible bird’s nest producing swiftlets
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De novo transcriptome analysis shows differential expression of genes in salivary glands of edible bird’s nest producing swiftlets

机译:从头转录组分析显示可食燕窝燕窝唾液腺中基因的差异表达

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Background Edible bird’s nest (EBN), produced from solidified saliva secretions of specific swiftlet species during the breeding season, is one of the most valuable animal by-products in the world. The composition and medicinal benefits of EBN have been extensively studied, however, genomic and transcriptomic studies of the salivary glands of these birds have not been conducted. Results The study described the transcriptomes of salivary glands from three swiftlet species (28 samples) generated by RNASeq. A total of 14,835 annotated genes and 428 unmapped genes were cataloged. The current study investigated the genes and pathways that are associated with the development of salivary gland and EBN composition. Differential expression and pathway enrichment analysis indicated that the expression of CREB3L2 and several signaling pathways involved in salivary gland development, namely, the EGFR, BMP, and MAPK signaling pathways, were up-regulated in swiftlets producing white EBN ( Aerodramus fuciphagus ) and black EBN ( Aerodramus maximus ) compared with non-EBN-producing swiftlets ( Apus affinis ). Furthermore, MGAT , an essential gene for the biosynthesis of N-acetylneuraminic acid (sialic acid), was highly expressed in both white- and black-nest swiftlets compared to non-EBN-producing swiftlets. Interspecies comparison between Aerodramus fuciphagus and Aerodramus maximus indicated that the genes involved in N-acetylneuraminic and fatty acid synthesis were up-regulated in Aerodramus fuciphagus, while alanine and aspartate synthesis pathways were up-regulated in Aerodramus maximus. Furthermore, gender-based analysis revealed that N-glycan trimming pathway was significantly up-regulated in male Aerodramus fuciphagus from its natural habitat (cave) compared to their female counterpart. Conclusions Transcriptomic analysis of salivary glands of different swiftlet species reveal differential expressions of candidate genes that are involved in salivary gland development and in the biosynthesis of various bioactive compounds found in EBN.
机译:背景食用燕窝(EBN)是在繁殖季节由特定的金丝雀物种的唾液分泌物固化而成的,是世界上最有价值的动物副产品之一。 EBN的组成和药用价值已得到广泛研究,但是尚未对这些鸟类的唾液腺进行基因组和转录组学研究。结果该研究描述了RNASeq产生的三种金丝雀物种(28个样品)的唾液腺转录组。总共编入了14835个带注释的基因和428个未映射的基因。目前的研究调查了与唾液腺和EBN组成相关的基因和途径。差异表达和途径富集分析表明,CREB3L2的表达和唾液腺发育中涉及的几种信号传导途径,即EGFR,BMP和MAPK信号传导途径,在产生白色EBN(梭菌Aerodramus fuciphagus)和黑色EBN的金丝燕中被上调。 (最大飞龙(Aerdramus maximus))与不产生EBN的金丝雀(Apus affinis)比较。此外,MGAT是N-乙酰神经氨酸(唾液酸)生物合成的必需基因,与不产生EBN的金丝雀相比,在白色和黑色巢金丝雀中均高表达。种间比较结果表明,N-乙酰神经氨酸和脂肪酸合成相关基因在Aerdramus fuciphagus中被上调,而丙氨酸和天冬氨酸的合成途径在Aerdramus maximus中被上调。此外,基于性别的分析显示,与女性雌性相比,雄性Aerodramus fuciphagus的自然栖息地(洞穴)的N-聚糖修剪途径明显上调。结论对不同金丝燕物种的唾液腺进行转录组学分析,揭示了与唾液腺发育和EBN中各种生物活性化合物的生物合成有关的候选基因的差异表达。

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