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转录组范围内鉴定欧洲蜜蜂幼虫肠道发育过程中的 piRNAs。

Transcriptome-Wide Characterization of piRNAs during the Developmental Process of European Honey-Bee Larval Guts.

机构信息

College of Animal Sciences (College of Bee Science), Fujian Agriculture and Forestry University, Fuzhou 350002, China.

Apitherapy Research Institute of Fujian Province, Fuzhou 350002, China.

出版信息

Genes (Basel). 2022 Oct 17;13(10):1879. doi: 10.3390/genes13101879.

Abstract

piRNAs play pivotal roles in maintaining genome stability, regulating gene expression, and modulating development and immunity. However, there are few piRNA-associated studies on honey-bees, and the regulatory role of piRNAs in the development of bee guts is largely unknown. Here, the differential expression pattern of piRNAs during the developmental process of the European honey-bee () larval guts was analyzed, followed by investigation of the regulatory network and the potential function of differentially expressed piRNAs (DEpiRNAs) in regulating gut development. A total of 843 piRNAs were identified in the larval guts of ; among these, 764 piRNAs were shared by 4- (Am4 group), 5- (Am5 group), and 6-day-old (Am6 group) larval guts, while 11, 67, and one, respectively, were unique. The first base of piRNAs in each group had a cytosine (C) bias. Additionally, 61 up-regulated and 17 down-regulated piRNAs were identified in the "Am4 vs. Am5" comparison group, further targeting 9, 983 genes, which were involved in 50 GO terms and 142 pathways, while two up-regulated and five down-regulated piRNAs were detected in the "Am5 vs. Am6" comparison group, further targeting 1, 936 genes, which were engaged in 41 functional terms and 101 pathways. piR-ame-742536 and piR-ame-856650 in the "Am4 vs. Am5" comparison group as well as piR-ame-592661 and piR-ame-31653 in the "Am5 vs. Am6" comparison group were found to link to the highest number of targets. Further analysis indicated that targets of DEpiRNAs in these two comparison groups putatively regulate seven development-associated signaling pathways, seven immune-associated pathways, and three energy metabolism pathways. Moreover, the expression trends of five randomly selected DEpiRNAs were verified based on stem-loop RT-PCR and RT-qPCR. These results were suggestive of the overall alteration of piRNAs during the larval developmental process and demonstrated that DEpiRNAs potentially modulate development-, immune-, and energy metabolism-associated pathways by regulating the expression of corresponding genes via target binding, further affecting the development of larval guts. Our data offer a novel insight into the development of bee larval guts and lay a basis for clarifying the underlying mechanisms.

摘要

piRNAs 在维持基因组稳定性、调控基因表达以及调节发育和免疫中发挥着关键作用。然而,关于蜜蜂的 piRNA 相关研究较少,piRNA 在蜜蜂肠道发育中的调控作用在很大程度上尚不清楚。本研究分析了欧洲蜜蜂幼虫肠道发育过程中 piRNA 的差异表达模式,随后研究了差异表达 piRNA(DEpiRNA)在调节肠道发育中的调控网络和潜在功能。共鉴定出 843 个在幼虫肠道中表达的 piRNA;其中,764 个 piRNA 在 4 日龄(Am4 组)、5 日龄(Am5 组)和 6 日龄(Am6 组)幼虫肠道中共享,而分别有 11、67 和 1 个 piRNA 是独有的。每个组的 piRNA 的第一个碱基都有胞嘧啶(C)偏向性。此外,在“Am4 与 Am5”比较组中鉴定出 61 个上调和 17 个下调的 piRNA,进一步靶向 9,983 个基因,参与 50 个 GO 术语和 142 个途径;在“Am5 与 Am6”比较组中检测到 2 个上调和 5 个下调的 piRNA,进一步靶向 1,936 个基因,参与 41 个功能术语和 101 个途径。在“Am4 与 Am5”比较组中,piR-ame-742536 和 piR-ame-856650 以及在“Am5 与 Am6”比较组中 piR-ame-592661 和 piR-ame-31653 与最多数量的靶基因相关联。进一步分析表明,这两个比较组中 DEpiRNA 的靶标可能通过靶基因结合调节七个发育相关信号通路、七个免疫相关通路和三个能量代谢通路来调节基因的表达,进而影响幼虫肠道的发育。此外,基于茎环 RT-PCR 和 RT-qPCR 验证了五个随机选择的 DEpiRNA 的表达趋势。这些结果表明,在幼虫发育过程中 piRNA 整体发生改变,并且 DEpiRNA 通过调节相应基因的表达来潜在地调节发育、免疫和能量代谢相关途径,进而影响幼虫肠道的发育。本研究为阐明其潜在机制提供了新的见解,为蜜蜂幼虫肠道发育提供了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0279/9602049/0f7a6de4cb7d/genes-13-01879-g001.jpg

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