Datasets

subject: Biochemistry type: dataset

Total is 46 Results
Summer Science Program in Biochemistry - Characterization of the Cdc14 phosphatase homolog from Fusarium oxysporum

10.4231/XJMF-B937

Cameron Uy , Ecem Sena Uluegeci , Mark C Hall ORCID logo , Sydney Tsuyuki , Xi (Chelsea) Chen ORCID logo , Zachary Lee

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 Cdc14 phosphatase enzyme function Fusarium oxysporum high school summer research Phytopathogenic fungi Plant pathogens Summer Science Program

Maize 282 Kernel Ion and Isotope BLUPs

10.4231/R7TT4P5D

Brenda F Owens , Brian Dilkes ORCID logo

05/31/2018

The 282 member maize association panel was grown under irrigated and non-irrigated conditions and kernels were phenotyped for ionome and isotope traits.

Biochemistry Carbon Drought Ionome Isotope Maize

Proper splicing contributes to visual function in the aging Drosophila eye - Supporting data for Stegeman et al. (2018)

10.4231/R7ZG6QGD

Hana Hall , Henry Chang , Rachel Stegeman ORCID logo , Spencer Escobedo , Vikki Weake ORCID logo

06/07/2018

Supporting data and protocols for for Stegeman et al. (2018). Proper splicing contributes to visual function in the aging Drosophila eye. Aging Cell.

Aging Biochemistry Drosophila Eye Gene Expression Profiling Splicing Transcriptome Vision

The Spliceosomal Protein SF3B5 is a Novel Component of Drosophila SAGA that Functions in Gene Expression Independent of Splicing - Supporting data for Stegeman et al. (2016)

10.4231/R74Q7S5J

Rachel Stegeman , Vikki Weake ORCID logo

11/03/2017

Supporting and raw data for Figures 1 - 5 from Stegeman R. et al. (2016). The Spliceosomal Protein SF3B5 is a Novel Component of Drosophila SAGA that Functions in Gene Expression Independent of Splicing. Journal of Molecular Biology. PMID: 27185460.

Biochemistry Drosophila Gene Expression SAGA Splicing Transcription

Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration - Supporting data for Fig 4 from Chen et al. (2017)

10.4231/R7X34VNF

Donald Ready , Hana Hall , Jeffrey Simpson ORCID logo , Vikki Weake ORCID logo , Walter Leon-Salas , Xinping Chen ORCID logo

10/30/2017

Supporting confocal and electron microscopy images for Fig 4 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"

Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration

Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration - Supporting data for Fig 1 from Chen et al. (2017)

10.4231/R7JS9NMW

Donald Ready , Hana Hall , Jeffrey Simpson ORCID logo , Vikki Weake ORCID logo , Walter Leon-Salas , Xinping Chen ORCID logo

10/30/2017

Supporting microscopy images for Fig 1 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"

Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration

Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration - Supporting data for Fig 2 and Fig 5 from Chen et al. (2017)

10.4231/R7F18WWG

Donald Ready , Hana Hall , Jeffrey Simpson ORCID logo , Vikki Weake ORCID logo , Walter Leon-Salas , Xinping Chen ORCID logo

10/30/2017

Supporting confocal microscopy images for Fig 2 and Fig 5 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"

Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration

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