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软骨鱼和硬骨鱼的比较转录组学突出了适应性免疫和区域性体温调节中的重要过程。

Comparative transcriptomics of elasmobranchs and teleosts highlight important processes in adaptive immunity and regional endothermy.

作者信息

Marra Nicholas J, Richards Vincent P, Early Angela, Bogdanowicz Steve M, Pavinski Bitar Paulina D, Stanhope Michael J, Shivji Mahmood S

机构信息

Department of Population Medicine and Diagnostic Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY, 14853, USA.

Save Our Seas Shark Research Center and Guy Harvey Research Institute, Nova Southeastern University, 8000 North Ocean Drive, Dania Beach, FL, 33004, USA.

出版信息

BMC Genomics. 2017 Jan 30;18(1):87. doi: 10.1186/s12864-016-3411-x.

Abstract

BACKGROUND

Comparative genomic and/or transcriptomic analyses involving elasmobranchs remain limited, with genome level comparisons of the elasmobranch immune system to that of higher vertebrates, non-existent. This paper reports a comparative RNA-seq analysis of heart tissue from seven species, including four elasmobranchs and three teleosts, focusing on immunity, but concomitantly seeking to identify genetic similarities shared by the two lamnid sharks and the single billfish in our study, which could be linked to convergent evolution of regional endothermy.

RESULTS

Across seven species, we identified an average of 10,877 Swiss-Prot annotated genes from an average of 32,474 open reading frames within each species' heart transcriptome. About half of these genes were shared between all species while the remainder included functional differences between our groups of interest (elasmobranch vs. teleost and endotherms vs. ectotherms) as revealed by Gene Ontology (GO) and selection analyses. A repeatedly represented functional category, in both the uniquely expressed elasmobranch genes (total of 259) and the elasmobranch GO enrichment results, involved antibody-mediated immunity, either in the recruitment of immune cells (Fc receptors) or in antigen presentation, including such terms as "antigen processing and presentation of exogenous peptide antigen via MHC class II", and such genes as MHC class II, HLA-DPB1. Molecular adaptation analyses identified three genes in elasmobranchs with a history of positive selection, including legumain (LGMN), a gene with roles in both innate and adaptive immunity including producing antigens for presentation by MHC class II. Comparisons between the endothermic and ectothermic species revealed an enrichment of GO terms associated with cardiac muscle contraction in endotherms, with 19 genes expressed solely in endotherms, several of which have significant roles in lipid and fat metabolism.

CONCLUSIONS

This collective comparative evidence provides the first multi-taxa transcriptomic-based perspective on differences between elasmobranchs and teleosts, and suggests various unique features associated with the adaptive immune system of elasmobranchs, pointing in particular to the potential importance of MHC Class II. This in turn suggests that expanded comparative work involving additional tissues, as well as genome sequencing of multiple elasmobranch species would be productive in elucidating the regulatory and genome architectural hallmarks of elasmobranchs.

摘要

背景

涉及软骨鱼类的比较基因组和/或转录组分析仍然有限,软骨鱼类免疫系统与高等脊椎动物免疫系统在基因组水平上的比较尚不存在。本文报告了对七个物种心脏组织的比较RNA测序分析,其中包括四种软骨鱼类和三种硬骨鱼类,重点是免疫,但同时试图确定我们研究中两种鼠鲨和一种旗鱼所共有的遗传相似性,这可能与区域内温性的趋同进化有关。

结果

在七个物种中,我们在每个物种的心脏转录组中平均32,474个开放阅读框中鉴定出平均10,877个经Swiss-Prot注释的基因。这些基因中约有一半在所有物种之间共享,而其余部分则包括我们感兴趣的组(软骨鱼类与硬骨鱼类以及恒温动物与变温动物)之间的功能差异,这通过基因本体论(GO)和选择分析得以揭示。在独特表达的软骨鱼类基因(总共259个)和软骨鱼类GO富集结果中,一个反复出现的功能类别涉及抗体介导的免疫,无论是在免疫细胞募集(Fc受体)还是在抗原呈递方面,包括“通过MHC II类对外源肽抗原进行抗原加工和呈递”等术语,以及MHC II类、HLA-DPB1等基因。分子适应性分析确定了软骨鱼类中有三个具有正选择历史的基因,包括天冬酰胺内肽酶(LGMN),该基因在先天免疫和适应性免疫中均起作用,包括产生用于由MHC II类呈递的抗原。恒温动物和变温动物物种之间的比较显示,恒温动物中与心肌收缩相关的GO术语富集,有19个基因仅在恒温动物中表达,其中几个在脂质和脂肪代谢中具有重要作用。

结论

这一综合的比较证据首次从基于转录组的多分类群角度揭示了软骨鱼类和硬骨鱼类之间的差异,并揭示了与软骨鱼类适应性免疫系统相关的各种独特特征,尤其指出了MHC II类的潜在重要性。这反过来表明,涉及更多组织的扩展比较研究以及多种软骨鱼类物种的基因组测序,将有助于阐明软骨鱼类的调控和基因组结构特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/021d/5278576/127a61d2a27c/12864_2016_3411_Fig1_HTML.jpg

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