Datasets

subject: Biochemistry

Total is 48 Results
Genetic engineering of Arabidopsis to overproduce disinapoyl esters, potential lignin modification molecules

10.4231/R77H1GJB

Clint C S Chapple ORCID logo , Huaping Mo , Jeong Kim , Shinyoung Lee

02/02/2017

BBIO-D-16-00198R1 Genetic engineering of Arabidopsis to overproduce disinapoyl esters, potential lignin modification molecules Shinyoung Lee; Huaping Mo; Jeong Im Kim; Clint Chapple. Biotechnology for Biofuels

Arabidopsis Biochemistry Biotechnology

Supporting data for Ma et al. 2016 G3 publication

10.4231/R7PG1PQR

Jingqun Ma , Pete E Pascuzzi , Vikki Marie Weake ORCID logo

02/20/2017

Supporting and raw data for Figures 1 - 5 and Figure S1 from: Ma et al. (2016) Transcriptome Profiling Identifies Multiplexin as a target of SAGA Deubiquitinase Activity in Glia.... G3 (Bethesda). PMID: 27261002.

axon guidance Biochemistry Drosophila glia Neuroscience nonstop RNA_seq SAGA sgf11 Transcriptome

Supporting data for Ma and Weake 2014 JoVE publication

10.4231/R7TD9V91

Jingqun Ma , Vikki Marie Weake ORCID logo

02/06/2017

Supporting and raw data for Figures 1, 2, 3 and Table 1 from: Ma, J. and Weake, V.M. (2014). Affinity-based isolation of tagged nuclei from Drosophila tissues for gene expression analysis. Journal of Visualized Experiments 85. PMID:24686501.

Biochemistry cell-type specific Drosophila Gene Expression nuclei affinity purification nuclei isolation

Evaluation of Function Predictions for Moonlighting Proteins

10.4231/D3T727G0X

Catherine Rayon , Daisuke Kihara ORCID logo , Ishita K. Khan , Meghana Chitale

02/14/2013

Supplemental datasets used for evaluation of function predictions for moonlighting proteins.

Biochemistry Bioinformatics Molecular Biosciences proteomics

Functional enrichment analyses and construction of functional similarity networks with high confidence function prediction by PFP

10.4231/D3Z02Z836

Daisuke Kihara ORCID logo , Meghana Chitale , Troy Hawkins

02/14/2013

Supplementary Material for the Paper: Functional similarity network with high confidence protein function prediction by PFP. BMC Bioinformatics. 2010 May 19;11:265. doi: 10.1186/1471-2105-11-265.

Biochemistry Bioinformatics Computational Biology / Methods Genetic Molecular Biosciences Proteins / Metabolism

Regulation of Phaeodactylum plastid gene transcription

10.4231/ME5R-C919

Gilbert Kayanja , Iskander Ibrahim , Sujith Puthiyaveetil ORCID logo

05/19/2021

This dataset contains raw data used for plotting the figures associated with the following publication https://link.springer.com/article/10.1007/s11120-020-00811-1

Biochemistry Gene Regulation light harvesting photosynthesis

Global coexpression analysis of genes in haplotype-phased genome of tetraploid blueberry.

10.4231/0FAA-GK65

Jennifer Wisecaver ORCID logo , Patrick Edger

02/18/2019

Global coexpression analysis of blueberry genome identify genes co-regulated during fruit development and associated with phytonutrient biosynthesis

Biochemistry Blueberry Gene Expression Plant Metabolism RStudio

Summer Science Program in Biochemistry - Characterization of the Cdc14 phosphatase homolog from Botrytis cinerea

10.4231/B1KA-GZ57

Alyssa Marie Questell , Kevin Tan , Mai N. Hoang , Maniratnam Meena Iyer , Mark C Hall ORCID logo , Márk Tibor Mészárik ORCID logo , Ruqaiyah A Damrah

08/25/2020

In SSP Biochemistry, high school participants conduct group research projects to characterize the Cdc14 phosphatase homolog from a phytopathogenic fungus and explore its potential as a novel antifungal target to protect crops from disease

antifungal design Biochemistry Botrytis cinerea Cdc14 phosphatase enzyme function high school summer research Phytopathogenic fungi Plant pathogens Summer Science Program

Summer Science Program in Biochemistry - Characterization of the Cdc14 phosphatase homolog from Aspergillus niger

10.4231/3GEN-D590

Charles William Coffey , Jesse Eugene Pattison , Juan Antonio Serna , Mark C Hall ORCID logo , Molly Ann Szpakowski , Myria Chen , Stephanie Zhang

08/25/2020

In SSP Biochemistry, high school participants conduct group research projects to characterize the Cdc14 phosphatase homolog from a phytopathogenic fungus and explore its potential as a novel antifungal target to protect crops from disease

antifungal design Aspergillus niger Biochemistry Cdc14 phosphatase enzyme function high school summer research Phytopathogenic fungi Plant pathogens Summer Science Program

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