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Arachis hypogaea gene expression atlas for fastigiata subspecies of cultivated groundnut to accelerate functional and translational genomics applications

机译:Arachis Hypogaea基因表达阿特拉斯用于培育基因栽培基因的快艇亚种,加速功能和翻译基因组学应用

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Spatio‐temporal and developmental stage‐specific transcriptome analysis plays a crucial role in systems biology‐based improvement of any species. In this context, we report here the Arachis hypogaea gene expression atlas (AhGEA) for the world's widest cultivated subsp. fastigiata based on RNA‐seq data using 20 diverse tissues across five key developmental stages. Approximately 480 million paired‐end filtered reads were generated followed by identification of 81?901 transcripts from an early‐maturing, high‐yielding, drought‐tolerant groundnut variety, ICGV 91114. Further, 57?344 genome‐wide transcripts were identified with ≥1 FPKM across different tissues and stages. Our in‐depth analysis of the global transcriptome sheds light into complex regulatory networks namely gravitropism and photomorphogenesis, seed development, allergens and oil biosynthesis in groundnut. Importantly, interesting insights into molecular basis of seed development and nodulation have immense potential for translational genomics research. We have also identified a set of stable expressing transcripts across the selected tissues, which could be utilized as internal controls in groundnut functional genomics studies. The AhGEA revealed potential transcripts associated with allergens, which upon appropriate validation could be deployed in the coming years to develop consumer‐friendly groundnut varieties. Taken together, the AhGEA touches upon various important and key features of cultivated groundnut and provides a reference for further functional, comparative and translational genomics research for various economically important traits.
机译:时空和发育阶段特异性转录组分析在基于系统的基于生物学的改进中起着至关重要的作用。在这种情况下,我们在此报道了世界上最广泛的培养额率的阿拉西·倍羟核基因表达阿拉斯(AHGEA)。 Fastiga基于RNA-SEQ数据使用20个不同的组织跨越五个关键的发展阶段。产生约4.8亿次配对滤波读数,然后识别81℃,从早熟,高产,耐旱的地生品种,ICGV 91114中鉴定。此外,用≥鉴定了57〜344基因组的转录物。在不同的组织和阶段1 FPKM。我们对全球转录组的深入分析,将光线分析到复杂的监管网络中,即地下造成的船舶脑力和光学发生,种子发育,过敏原和油生物合成。重要的是,有趣的见解种子发育和编号的分子基础具有巨大的翻译基因组学研究的潜力。我们还鉴定了一组稳定的表达在选定的组织中表达的转录物,其可作为地下函数基因组学研究中的内部对照。 AHGEA揭示了与过敏原相关的潜在转录物,这在适当的验证后可以在未来几年内部署,以开发消费者友好的地生品种。在一起,AHGEA触及了栽培地生的各种重要和关键特征,为各种经济上重要性性具有进一步的功能,比较和翻译基因组学研究提供了参考。

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