[PDF] Integrated Regulatory and Metabolic Networks of the Marine Diatom Phaeodactylum tricornutum Predict the Response to Rising CO2 Levels | Semantic Scholar (2024)

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@article{Levering2017IntegratedRA, title={Integrated Regulatory and Metabolic Networks of the Marine Diatom Phaeodactylum tricornutum Predict the Response to Rising CO2 Levels}, author={Jennifer Levering and Christopher L. Dupont and Andrew Ellis Allen and Bernhard O. Palsson and Karsten Zengler}, journal={mSystems}, year={2017}, volume={2}, url={https://api.semanticscholar.org/CorpusID:15099020}}
  • Jennifer Levering, C. Dupont, K. Zengler
  • Published in mSystems 14 February 2017
  • Biology, Environmental Science

A transcriptional regulatory network based on various transcriptome sequencing expression libraries for different environmental responses is developed to gain insight into the marine diatom’s metabolic and regulatory interactions and provide a comprehensive framework of responses to increasing atmospheric carbon levels.

33 Citations

Background Citations

5

Methods Citations

2

33 Citations

Proteomic and biochemical responses to different concentrations of CO2 suggest the existence of multiple carbon metabolism strategies in Phaeodactylum tricornutum
    Songcui WuWenhui Gu Guangce Wang

    Environmental Science, Biology

    Biotechnology for Biofuels

  • 2021

The proteomic and biochemical responses to different concentrations of CO 2 suggested multiple carbon metabolism strategies exist in P. tricornutum and might induce a mitochondrial-mediated C4-like CCM and the improvement of glycolysis, tricarboxylic acid cycle, photorespiration and ornithine–urea cycle activity contribute to the energy supply and carbon and nitrogen recapture in the HC environment.

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Provision of carbon skeleton for lipid synthesis from the breakdown of intracellular protein and soluble sugar in Phaeodactylum tricornutum under high CO2
    A. HuangSongcui WuWenhui GuYuanxiang LiXiujun XieGuangce Wang

    Environmental Science, Biology

    BMC Biotechnology

  • 2019

This study indicated that breakdown of intracellular protein and soluble sugar provide C skeleton for lipid synthesis under high CO2 concentration, indicating that molecular regulation mechanisms of marine phytoplankton in response to ocean acidification should be selected for systematic study.

  • 11
  • PDF
Marine Microalgae: Systems Biology from ‘Omics’
    J. Ashworth

    Environmental Science, Biology

  • 2017

To date, marine microalgae are the first and most extensively studied marine organisms in terms of their functioning as coalescent molecular systems, and the richness of data, systematic integration, and predictive models therein set a new example for the broad new study of marine life at unprecedented detail and comparability.

  • 2
Cross‐compartment metabolic coupling enables flexible photoprotective mechanisms in the diatom Phaeodactylum tricornutum
    Jared T. BroddrickNiu Du Andrew E. Allen

    Environmental Science, Biology

    The New phytologist

  • 2019

A flexible metabolic network is suggested in P. tricornutum that tunes intercompartment metabolism to optimize energy transport between the organelles, consuming excess energy as needed.

  • 33
  • PDF
Response of CO2-starved diatom Phaeodactylum tricornutum to light intensity transition
    P. HeydarizadehWafâa Boureba B. Schoefs

    Biology, Environmental Science

    Philosophical Transactions of the Royal Society B…

  • 2017

Of great interest, under high light, the genes coding for the synthesis of aromatic amino acids and phenolic compounds were upregulated suggesting that the shikimate pathway was activated.

  • 52
  • PDF
A synthetic microbial loop for modelling heterotroph-phototroph metabolic interactions
    M. FondiF. Di Patti

    Environmental Science, Biology

    bioRxiv

  • 2018

A synthetic ecosystem is assembled to assist the systems-level investigation of this biological association between diatom and heterotrophic bacteria and it is shown that, at high diatom/bacteria cell concentration ratio, stochastic fluctuations can lead to the extinction of bacteria from the co-culture, causing the explosion of diatom population.

  • PDF
A synthetic ecosystem for the multi-level modelling of heterotroph-phototroph metabolic interactions
    M. FondiF. Patti

    Environmental Science, Biology

    Ecological Modelling

  • 2019
  • 6
  • PDF
Identification and expression analysis of genome-wide long noncoding RNA responsive CO2 fluctuated environment in marine microalga Nannochloropsis oceanica.
    Li WeiBingqing LiuDanmei LiuZheng-Zhao XuRuiping WangWenfei Zhang

    Environmental Science, Biology

    Marine pollution bulletin

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Genome-scale Modeling of Metabolism and Macromolecular Expression and Their Applications
    Sanjeev DahalJiao ZhaoLaurence Yang

    Biology, Computer Science

    Biotechnology and Bioprocess Engineering

  • 2020

ME-models significantly improve the quantitative prediction of gene expression and can predict the proteome investment in metabolism under any given condition, unlike M-models that can predict biological properties in only nutrient-limited condition.

  • 10
Dynamic resource allocation drives growth under nitrogen starvation in eukaryotes
    Juan D. Tibocha-BonillaManish KumarAnne RichelleR. Godoy-SilvaK. ZenglerC. Zuñiga

    Biology, Environmental Science

    npj Systems Biology and Applications

  • 2020

This work used dynamic biomass composition data to predict changes in growth and reaction flux distributions using genome-scale metabolic models of five eukaryotic organisms and identified temporal profiles of metabolic fluxes that indicate long-term trends in pathway and organelle function in response to nitrogen depletion.

  • 15
  • PDF

...

...

26 References

Genome-Scale Model Reveals Metabolic Basis of Biomass Partitioning in a Model Diatom
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A genome-scale metabolic network reconstruction for the marine diatom Phaeodactylum tricornutum is performed and the presence of a yet unknown glutamine-ornithine shunt that could be used to transfer reducing equivalents generated by photosynthesis to the mitochondria is indicated.

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Comparative analysis of diatom genomes reveals substantial differences in the organization of carbon partitioning pathways
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It is shown how genome-enabled approaches are being leveraged to explore major phenomena of oceanographic and biogeochemical relevance, such as nutrient assimilation and life histories in diatoms.

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Inactivation of Phaeodactylum tricornutum urease gene using transcription activator-like effector nuclease-based targeted mutagenesis.
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Improved the molecular toolkit for diatoms and clarifies the role of urease in the urea cycle is clarified, suggesting a disruption of the cycle despite urea production.

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Energetic coupling between plastids and mitochondria drives CO2 assimilation in diatoms
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    Environmental Science, Biology

    Nature

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It is shown that diatoms regulate ATP/NADPH through extensive energetic exchanges between plastids and mitochondria, and this interaction comprises the re-routing of reducing power generated in the plastid towards mitochondria and the import of mitochondrial ATP into thePlastid, and is mandatory for optimized carbon fixation and growth.

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Constraining the metabolic genotype–phenotype relationship using a phylogeny of in silico methods
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This work describes a phylogeny of COBRA methods that has rapidly evolved from the few early methods, such as flux balance analysis and elementary flux mode analysis, into a repertoire of more than 100 methods, including antibiotic discovery, metabolic engineering and modelling of microbial community behaviour.

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Transcription factor families inferred from genome sequences of photosynthetic stramenopiles.
    E. RaykoFlorian MaumusU. MaheswariK. JabbariC. Bowler

    Biology, Environmental Science

    The New phytologist

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• By comparative analyses we identify lineage-specific diversity in transcription factors (TFs) from stramenopile (or heterokont) genome sequences. We compared a pennate (Phaeodactylum tricornutum)

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Quantitative prediction of cellular metabolism with constraint-based models: the COBRA Toolbox v2.0
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    Computer Science, Biology

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Over the past decade, a growing community of researchers has emerged around the use of constraint-based reconstruction and analysis (COBRA) methods to simulate, analyze and predict a variety of

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Chloroplast genomes of the diatoms Phaeodactylum tricornutum and Thalassiosira pseudonana: comparison with other plastid genomes of the red lineage
    Marie-Pierre Oudot-Le SecqJ. GrimwoodH. ShapiroE. Virginia ArmbrustC. BowlerB. Green

    Biology, Environmental Science

    Molecular Genetics and Genomics

  • 2006

The chloroplast genomes of the pennate diatom Phaeodactylum tricornutum and the centric diatom Thalassiosira pseudonana have been completely sequenced and are compared with those of other secondary

  • 191

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