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对塞内加尔无鳔石首鱼转录组进行改进的从头组装和优化,揭示了幼虫中视黄酸信号通路。

An improved de novo assembling and polishing of Solea senegalensis transcriptome shed light on retinoic acid signalling in larvae.

机构信息

Department of Molecular Biology and Biochemistry, Universidad de Málaga, Málaga, 29071, Spain.

CIBER de Enfermedades Raras (CIBERER), Málaga, 29071, Spain.

出版信息

Sci Rep. 2020 Nov 26;10(1):20654. doi: 10.1038/s41598-020-77201-z.

Abstract

Senegalese sole is an economically important flatfish species in aquaculture and an attractive model to decipher the molecular mechanisms governing the severe transformations occurring during metamorphosis, where retinoic acid seems to play a key role in tissue remodeling. In this study, a robust sole transcriptome was envisaged by reducing the number of assembled libraries (27 out of 111 available), fine-tuning a new automated and reproducible set of workflows for de novo assembling based on several assemblers, and removing low confidence transcripts after mapping onto a sole female genome draft. From a total of 96 resulting assemblies, two "raw" transcriptomes, one containing only Illumina reads and another with Illumina and GS-FLX reads, were selected to provide SOLSEv5.0, the most informative transcriptome with low redundancy and devoid of most single-exon transcripts. It included both Illumina and GS-FLX reads and consisted of 51,348 transcripts of which 22,684 code for 17,429 different proteins described in databases, where 9527 were predicted as complete proteins. SOLSEv5.0 was used as reference for the study of retinoic acid (RA) signalling in sole larvae using drug treatments (DEAB, a RA synthesis blocker, and TTNPB, a RA-receptor agonist) for 24 and 48 h. Differential expression and functional interpretation were facilitated by an updated version of DEGenes Hunter. Acute exposure of both drugs triggered an intense, specific and transient response at 24 h but with hardly observable differences after 48 h at least in the DEAB treatments. Activation of RA signalling by TTNPB specifically increased the expression of genes in pathways related to RA degradation, retinol storage, carotenoid metabolism, homeostatic response and visual cycle, and also modified the expression of transcripts related to morphogenesis and collagen fibril organisation. In contrast, DEAB mainly decreased genes related to retinal production, impairing phototransduction signalling in the retina. A total of 755 transcripts mainly related to lipid metabolism, lipid transport and lipid homeostasis were altered in response to both treatments, indicating non-specific drug responses associated with intestinal absorption. These results indicate that a new assembling and transcript sieving were both necessary to provide a reliable transcriptome to identify the many aspects of RA action during sole development that are of relevance for sole aquaculture.

摘要

塞内加尔比目鱼是水产养殖中一种具有重要经济意义的平鱼,也是解析变态过程中发生的剧烈组织重塑分子机制的理想模型,在此过程中视黄酸似乎发挥了关键作用。在这项研究中,通过减少组装文库的数量(从 111 个文库中减少到 27 个),微调了新的自动化和可重复的从头组装工作流程,根据多个组装器,并在映射到比目鱼雌性基因组草图后去除低置信度转录本,构建了一个可靠的比目鱼转录组。总共得到了 96 个组装结果,选择了两个“原始”转录组,一个只包含 Illumina 读数,另一个包含 Illumina 和 GS-FLX 读数,用于提供 SOLSEv5.0,这是一个信息量最大、冗余度最低且几乎没有单外显子转录本的转录组。它同时包含了 Illumina 和 GS-FLX 的读数,由 51348 个转录本组成,其中 22684 个转录本编码 17429 种不同的蛋白质,这些蛋白质在数据库中都有描述,其中 9527 个被预测为完整的蛋白质。使用 SOLSEv5.0 作为参考,通过药物处理(DEAB,视黄酸合成抑制剂和 TTNPB,视黄酸受体激动剂)研究比目鱼幼虫中的视黄酸(RA)信号通路,处理时间为 24 和 48 小时。通过更新版的 DEGenes Hunter 方便了差异表达和功能解释。两种药物的急性暴露在 24 小时内引发了强烈、特异和短暂的反应,但至少在 DEAB 处理中,48 小时后几乎观察不到差异。TTNPB 激活 RA 信号通路特异性地增加了与 RA 降解、视黄醇储存、类胡萝卜素代谢、稳态反应和视觉循环相关的途径中基因的表达,还改变了与形态发生和胶原纤维组织相关的转录本的表达。相比之下,DEAB 主要降低了与视网膜产生相关的基因,损害了视网膜中的光转导信号。共有 755 个主要与脂质代谢、脂质转运和脂质稳态相关的转录本因两种处理而改变,表明与肠道吸收相关的非特异性药物反应。这些结果表明,新的组装和转录筛选都是提供可靠转录组以识别比目鱼发育过程中视黄酸作用的许多方面所必需的,这些方面对视黄酸在比目鱼水产养殖中的应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ed/7691524/a589f18a2cf1/41598_2020_77201_Fig1_HTML.jpg

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