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利用新的全基因组定制微阵列研究大型溞生命周期中的差异基因转录。

Differential gene transcription across the life cycle in Daphnia magna using a new all genome custom-made microarray.

机构信息

IDAEA-CSIC: Institute of Environmental Diagnosis and Water Research, CSIC, Barcelona, Spain.

Agilent Technologies, Brighton, UK.

出版信息

BMC Genomics. 2018 May 18;19(1):370. doi: 10.1186/s12864-018-4725-7.

Abstract

BACKGROUND

Unravelling the link between genes and environment across the life cycle is a challenging goal that requires model organisms with well-characterized life-cycles, ecological interactions in nature, tractability in the laboratory, and available genomic tools. Very few well-studied invertebrate model species meet these requirements, being the waterflea Daphnia magna one of them. Here we report a full genome transcription profiling of D. magna during its life-cycle. The study was performed using a new microarray platform designed from the complete set of gene models representing the whole transcribed genome of D. magna.

RESULTS

Up to 93% of the existing 41,317 D. magna gene models showed differential transcription patterns across the developmental stages of D. magna, 59% of which were functionally annotated. Embryos showed the highest number of unique transcribed genes, mainly related to DNA, RNA, and ribosome biogenesis, likely related to cellular proliferation and morphogenesis of the several body organs. Adult females showed an enrichment of transcripts for genes involved in reproductive processes. These female-specific transcripts were essentially absent in males, whose transcriptome was enriched in specific genes of male sexual differentiation genes, like doublesex.

CONCLUSION

Our results define major characteristics of transcriptional programs involved in the life-cycle, differentiate males and females, and show that large scale gene-transcription data collected in whole animals can be used to identify genes involved in specific biological and biochemical processes.

摘要

背景

揭示生命周期中基因与环境之间的联系是一个具有挑战性的目标,需要具有特征明确的生命周期、自然生态相互作用、实验室可操作性以及可用基因组工具的模式生物。极少数经过充分研究的无脊椎动物模式物种满足这些要求,其中之一是大型水蚤(Daphnia magna)。本文报道了大型水蚤生命周期中的全基因组转录谱分析。该研究使用了一种新的微阵列平台,该平台由代表大型水蚤整个转录基因组的全套基因模型设计而成。

结果

在大型水蚤的发育阶段,多达 93%的 41317 个现有基因模型显示出不同的转录模式,其中 59%具有功能注释。胚胎显示出最多的独特转录基因,主要与 DNA、RNA 和核糖体生物发生有关,可能与几个身体器官的细胞增殖和形态发生有关。成年雌性表现出与生殖过程相关的基因转录本富集。这些雌性特异性转录本在雄性中基本不存在,雄性转录组富含雄性性分化基因的特异性基因,如 doublesex。

结论

我们的结果定义了参与生命周期的转录程序的主要特征,区分了雄性和雌性,并表明在整个动物中收集的大规模基因转录数据可用于鉴定参与特定生物和生化过程的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e34a/5960145/812a264afaf1/12864_2018_4725_Fig2_HTML.jpg

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