首页> 外文会议>2016 International Conference on Bioinformatics and Systems Biology >Identification of transcription hubs that control lipid metabolism and carbon concentrating mechanism in model microalgae chlamydomonas reinhardtii using regulatory networks: Regulatory networks hubs in C. reinhardtii that control lipid and carbon concent
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Identification of transcription hubs that control lipid metabolism and carbon concentrating mechanism in model microalgae chlamydomonas reinhardtii using regulatory networks: Regulatory networks hubs in C. reinhardtii that control lipid and carbon concent

机译:使用调节网络识别控制模型微藻衣藻衣藻中的脂质代谢和碳浓缩机制的转录集线器:莱茵衣藻中的调控网络集线器,用于控制脂质和碳浓缩物

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摘要

Chlamydomonas reinhardtii is the most extensively studied eukaryotic model microalgae having essential biological pathways such as biomass production, photosynthesis, carbon concentrating mechanisms (CCMs), carbohydrate metabolism (CM), lipid metabolism (LM), and response towards nutritional stresses, with fine-tuned physiological data and genome sequence available publicly. During nitrogen (N) deprivation, C. reinhardtii accumulates oil (triacylglycerols, TAG) as storage reserves and studies to understand the entire global regulatory network is still not clear. Recent studies showed that they have identified and characterized entire set of genes encoding transcription factors (TFs) and transcriptional regulators (TRs)that control lipid metabolism relative to other genes under different stress responses using combined omics analysis but evaluation of common TFs and TRs under normal conditions involving LMand CCM in combination is essential for understanding regulatory network that may lead to identification of several regulatory hubs that controls these essential cellular processes. Our study will focus on reconstruction of a regulatory network from publicly available databases such as PlnTFDB, STRING and elucidate common TFs and TRs essential for both these mechanisms. We have identified new TFs and TRs such as, SET, PHD, FHA, Myb, Myb-related, and HMGthat play an important role in different functions such as control of chromatin and/or transcription, methylation of lysine residues, DNA repair, signal transduction etc. Also, our findings demonstrate that these TFs and TRs are involved in photoreceptor-like activities in the model microalga, which has the maximum degree of interactions with different genes and thus have relevant physiological importance in both these mechanisms.
机译:Reinhardtii衣藻是最广泛研究的真核生物模型微藻,具有基本的生物途径,例如生物量生产,光合作用,碳浓缩机制(CCM),碳水化合物代谢(CM),脂质代谢(LM)和对营养压力的响应,并且需要微调生理数据和基因组序列可公开获得。在氮(N)剥夺期间,莱茵衣藻(C. reinhardtii)会积聚石油(三酰基甘油,TAG)作为储存储备,对了解整个全球监管网络的研究仍不清楚。最近的研究表明,他们已经通过组合的组学分析,鉴定了编码转录因子(TFs)和转录调节因子(TRs)的整套基因,这些基因可以控制脂质相对于其他基因的脂代谢。 LM和CCM结合使用的条件对于理解监管网络至关重要,因为监管网络可能导致识别控制这些基本细胞过程的多个监管中心。我们的研究将集中于从公共数据库(如PlnTFDB,STRING)重建监管网络,并阐明这两种机制必不可少的常见TF和TR。我们已经确定了新的TF和TR,例如SET,PHD,FHA,Myb,Myb相关和HMG,它们在不同功能(例如染色质和/或转录控制,赖氨酸残基的甲基化,DNA修复,信号)中起重要作用此外,我们的发现表明,这些TF和TR参与了模型微藻中的感光受体样活性,该活性与不同基因的相互作用程度最大,因此在这两种机制中均具有相关的生理重要性。

著录项

  • 来源
  • 会议地点 Allahabad(IN)
  • 作者单位

    Integrative Biology Group-Omics of Algae, DBT-ICGEB Centre for Advanced Bioenergy Research, International Centre for Genetic Engineering and Biotechnology (ICGEB) Aruna Asaf Ali Marg, New Delhi 110067, India;

    Integrative Biology Group-Omics of Algae, DBT-ICGEB Centre for Advanced Bioenergy Research, International Centre for Genetic Engineering and Biotechnology (ICGEB) Aruna Asaf Ali Marg, New Delhi 110067, India;

    Integrative Biology Group-Omics of Algae, DBT-ICGEB Centre for Advanced Bioenergy Research, International Centre for Genetic Engineering and Biotechnology (ICGEB) Aruna Asaf Ali Marg, New Delhi 110067, India;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lipidomics; Genomics; Bioinformatics; Proteins; Carbon; Biological system modeling;

    机译:脂质组学;基因组学;生物信息学;蛋白质;碳;生物系统建模;
  • 入库时间 2022-08-26 13:58:20

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