reduced levels of carotenoid-derived hormones, strigolactones and abscisic acid, in roots
First-pass extracted concept
abscisic acid
Aliases
ABA
Evidence Snippets
key plant defense signaling hormones such as jasmonic acid, abscisic acid and salicylic acid increased
Abscisic acid showed a high binding affinity for the glucocorticoid receptor. Finally, quercetin and abscisic acid were quantified to complete the data by HPLC-DAD, giving 0.036 ± 0.004 mg/g of dried extract, respectively.
Key phytohormones-auxin, abscisic acid, cytokinins, jasmonates, ethylene, strigolactones, and gibberellins-are highlighted for their remarkable regulatory roles in animal physiology, with a special focus on their implications for human health.
Abscisic acid (ABA) is a "classical" plant hormone... In addition, there is evidence for the presence of ABA in humans
Considering abscisic acid (ABA) as a key regulator in plant abiotic stress responses
Under nutrient-deficient conditions, phytohormones such as abscisic acid (ABA), cytokinin, and ethylene play a pivotal role in orchestrating plant responses.
Supporting Sources
Linked Claims
During the activated defense response window, jasmonic acid, abscisic acid, and salicylic acid increased in Pinus nigra after Diplodia sapinea infection.
when key plant defense signaling hormones such as jasmonic acid, abscisic acid and salicylic acid increased
Abscisic acid showed high binding affinity for the glucocorticoid receptor.
Abscisic acid showed a high binding affinity for the glucocorticoid receptor.
The findings dissociate the roles of aerenchyma formation and iron plaque formation and support a model in which OsPSY2 integrates hormonal signaling to drive root plasticity.
CRISPR-Cas9-induced psy2 mutants have reduced root levels of the carotenoid-derived hormones strigolactones and abscisic acid.
HPLC-DAD quantified abscisic acid at 0.036 ± 0.004 mg/g of dried extract.
quercetin and abscisic acid were quantified to complete the data by HPLC-DAD, giving 0.246 ± 0.003 mg/g of dried extract and 0.036 ± 0.004 mg/g of dried extract, respectively.
In psy2 mutants, exogenous abscisic acid restores iron plaque deposition.
Plant responses to combined abiotic stresses are unique and cannot be inferred from responses to individual stresses.
Under nutrient-deficient conditions, ABA, cytokinin, and ethylene play pivotal roles in orchestrating plant responses.
Exogenous ABA application in flc mutants does not fully recover plant phenotypes or metabolic levels but does induce cellular reprogramming with changes in specific markers.
There is evidence for the presence of ABA in humans, but its source remains inconclusive.
there is evidence for the presence of ABA in humans; however, the source of it remains somewhat inconclusive
Auxin, abscisic acid, cytokinins, jasmonates, ethylene, strigolactones, and gibberellins are highlighted for regulatory roles in animal physiology with implications for human health.
Key phytohormones-auxin, abscisic acid, cytokinins, jasmonates, ethylene, strigolactones, and gibberellins-are highlighted for their remarkable regulatory roles in animal physiology, with a special focus on their implications for human health.
The multi-omics analysis was used to identify ABA-dependent, ABA-independent, or stress-dependent markers in tomato responses to single or combined salinity and heat stresses.