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木鼠(Neotoma spp.)转录组测序和微阵列开发:探索食草动物生态学的定制遗传工具。

Transcriptome sequencing and microarray development for the woodrat (Neotoma spp.): custom genetic tools for exploring herbivore ecology.

机构信息

Department of Biology, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Mol Ecol Resour. 2013 Jul;13(4):674-87. doi: 10.1111/1755-0998.12092. Epub 2013 Mar 16.

DOI:10.1111/1755-0998.12092
PMID:23496907
Abstract

Massively parallel sequencing has enabled the creation of novel, in-depth genetic tools for nonmodel, ecologically important organisms. We present the de novo transcriptome sequencing, analysis and microarray development for a vertebrate herbivore, the woodrat (Neotoma spp.). This genus is of ecological and evolutionary interest, especially with respect to ingestion and hepatic metabolism of potentially toxic plant secondary compounds. We generated a liver transcriptome of the desert woodrat (Neotoma lepida) using the Roche 454 platform. The assembled contigs were well annotated using rodent references (99.7% annotation), and biotransformation function was reflected in the gene ontology. The transcriptome was used to develop a custom microarray (eArray, Agilent). We tested the microarray with three experiments: one across species with similar habitat (thus, dietary) niches, one across species with different habitat niches and one across populations within a species. The resulting one-colour arrays had high technical and biological quality. Probes designed from the woodrat transcriptome performed significantly better than functionally similar probes from the Norway rat (Rattus norvegicus). There were a multitude of expression differences across the woodrat treatments, many of which related to biotransformation processes and activities. The pattern and function of the differences indicate shared ecological pressures, and not merely phylogenetic distance, play an important role in shaping gene expression profiles of woodrat species and populations. The quality and functionality of the woodrat transcriptome and custom microarray suggest these tools will be valuable for expanding the scope of herbivore biology, as well as the exploration of conceptual topics in ecology.

摘要

大规模平行测序为非模式生物和生态重要生物创造了新颖的、深入的遗传工具。我们提出了一种脊椎动物草食动物(Neotoma spp.)的从头转录组测序、分析和微阵列开发。这个属具有生态和进化意义,特别是在摄入和肝脏代谢潜在有毒植物次生化合物方面。我们使用 Roche 454 平台对沙漠木鼠(Neotoma lepida)的肝脏转录组进行了测序。组装的连续序列使用啮齿动物参考(99.7%注释)进行了很好的注释,生物转化功能反映在基因本体论中。转录组被用于开发定制微阵列(eArray,Agilent)。我们用三个实验测试了微阵列:一个是在具有相似栖息地(因此,饮食)小生境的物种之间进行的实验,一个是在具有不同栖息地小生境的物种之间进行的实验,另一个是在一个物种内的种群之间进行的实验。产生的双色阵列具有较高的技术和生物学质量。从木鼠转录组设计的探针比来自挪威鼠(Rattus norvegicus)的功能相似探针表现要好得多。在木鼠处理之间有许多表达差异,其中许多与生物转化过程和活动有关。差异的模式和功能表明,共同的生态压力,而不仅仅是系统发育距离,在塑造木鼠物种和种群的基因表达谱方面起着重要作用。木鼠转录组和定制微阵列的质量和功能表明,这些工具将有助于扩大食草动物生物学的范围,并探索生态学中的概念性主题。

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引用本文的文献

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BMC Ecol. 2014 Aug 15;14:23. doi: 10.1186/1472-6785-14-23.
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Functional characterization of cytochromes P450 2B from the desert woodrat Neotoma lepida.
荒漠林跳鼠 CYP4502B 的功能特征。
Toxicol Appl Pharmacol. 2014 Feb 1;274(3):393-401. doi: 10.1016/j.taap.2013.12.005. Epub 2013 Dec 19.