FIGURE

Fig. 6

ID
ZDB-FIG-230913-16
Publication
Simonian et al., 2023 - Methylenetetrahydrofolate reductase deficiency and high dose FA supplementation disrupt embryonic development of energy balance and metabolic homeostasis in zebrafish
Other Figures
All Figure Page
Back to All Figure Page
Fig. 6

mthfr deficiency in zebrafish reduces folates and alters 1-carbon cycle methyl metabolites. Relative concentrations of whole-body (AD) folates and (EL) related 1-carbon metabolites in zebrafish larvae at 5 dpf. Comparisons were conducted between cas9 versus 4gRNA mthfr crispants (4gRNA) or age-matched WT controls versus mthfr −/− mutants (mthfr −/−, HSC194). Values are mean ± SEM, n = 3–4 biological replicates of pooled zebrafish/group. Each pool was composed of n = 40 larvae for folates and n = 20 larvae for methyl metabolites for cas9 versus 4gRNA mthfr crispants and n = 50 larvae for folates and n = 30 larvae for methyl metabolites for WT versus mthfr −/− mutants. No differences in pooled weight were observed. Analyzed by Student’s t-test stratified by mutagenesis approach. Significant at *P < 0.05, **P < 0.01, ***P < 0.0001. Abbreviations: tHcy, total homocysteine; 5,10-CH-THF, 5,10-methenyltetrahydrofolate; 5,10-CH2-THF, 5,10-methylenetetrahydrofolate.

Expression Data

Expression Detail
Antibody Labeling
Phenotype Data

Phenotype Detail
Acknowledgments
This image is the copyrighted work of the attributed author or publisher, and ZFIN has permission only to display this image to its users. Additional permissions should be obtained from the applicable author or publisher of the image. Full text @ Hum. Mol. Genet.