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面纱变色龙(Chamaeleo calyptratus)转录组:研究脊椎动物进化和发育的资源。

The transcriptome of the veiled chameleon (Chamaeleo calyptratus): A resource for studying the evolution and development of vertebrates.

机构信息

Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin.

Department of Biology, The University of Texas at Arlington, Arlington, Texas.

出版信息

Dev Dyn. 2019 Aug;248(8):702-708. doi: 10.1002/dvdy.20. Epub 2019 Mar 25.

Abstract

PURPOSE

The veiled chameleon (Chamaeleo calyptratus) is an emerging model system for studying functional morphology and evolutionary developmental biology (evo-devo). Chameleons possess body plans that are highly adapted to an arboreal life style, featuring laterally compressed bodies, split hands/ft for grasping, a projectile tongue, turreted independently moving eyes, and a prehensile tail. Despite being one of the most phenotypically divergent clades of tetrapods, genomic resources for chameleons are severely lacking.

METHODS

To address this lack of resources, we used RNAseq to generate 288 million raw Illumina sequence reads from four adult tissues (male and female eyes and gonads) and whole embryos at three distinct developmental stages. We used these data to assemble a largely complete de novo transcriptome consisting of only 82 952 transcripts. In addition, a majority of assembled transcripts (67%) were successfully annotated.

RESULTS

We then demonstrated the utility of these data in the context of studying visual system evolution by examining the content of veiled chameleon opsin genes to show that chameleons possess all five ancestral tetrapod opsins.

CONCLUSION

We present this de novo, annotated, multi-tissue transcriptome assembly for the Veiled Chameleon, Chamaeleo calyptratus, as a resource to address a range of evolutionary and developmental questions. The associated raw reads and final annotated transcriptome assembly are freely available for use on NCBI and Figshare, respectively.

摘要

目的

帘蛤蜥(Chamaeleo calyptratus)是研究功能形态学和进化发育生物学(evo-devo)的新兴模式系统。变色龙具有高度适应树栖生活方式的身体结构,身体呈横向压缩状,手/足分裂用于抓握,弹射式舌头,独立转动的炮塔状眼睛,以及可抓握的尾巴。尽管它们是四足动物中表型差异最大的分支之一,但变色龙的基因组资源却严重缺乏。

方法

为了解决资源匮乏的问题,我们使用 RNAseq 从四个成年组织(雄性和雌性眼睛和性腺)和三个不同发育阶段的整个胚胎中生成了 2.88 亿个原始 Illumina 序列读数。我们利用这些数据组装了一个主要由 82952 个转录本组成的近乎完整的从头转录组。此外,大多数组装的转录本(67%)都成功地进行了注释。

结果

然后,我们通过检查帘蛤蜥视蛋白基因的内容,展示了变色龙拥有所有五种祖先四足动物视蛋白,从而证明了这些数据在研究视觉系统进化方面的实用性。

结论

我们提供了帘蛤蜥(Chamaeleo calyptratus)的这个新的、注释的、多组织转录组组装,作为解决一系列进化和发育问题的资源。相关的原始读数和最终注释的转录组组装分别可在 NCBI 和 Figshare 上免费使用。

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