1 |
Changes in Chemical Composition of Tanacetum parthenium L. Essential Oil Under the Influence of Zinc Oxide Nanoparticle Concentration
|
BioNanoScience
|
2 |
Detection of Genetic Diversity and Phylogenetic Relationship of Tanacetum parthenium (L.) Sch.Bip. Germplasm: Implications for Conservation and Breeding
|
Journal of Medicinal Plants and By-Products
|
3 |
Exposure to single-walled carbon nanotubes diferentially afect in vitro germination, biochemical and antioxidant properties of Thymus daenensis celak. seedlings
|
BMC Plant Biology
|
4 |
Exploring potential of multi-walled carbon nanotubes to establish efficient callogenesis, elicitation of phenolic compounds and antioxidative activities in thyme plants (Thymus daenensis): An in vitro assay
|
ُSouth African Journal of Botany
|
5 |
Comprehensive Assessment of Phytochemical Potential of Tanacetum parthenium (L.): Phenolic Compounds, Antioxidant Activity, Essential Oil and Parthenolide
|
Journal of Essential Oil Bearing Plants
|
6 |
Efects of zinc oxide nanoelicitors on yield, secondary metabolites, zinc and iron absorption of Feverfew (Tanacetum parthenium (L.) Schultz Bip.)
|
Acta Physiologiae Plantarum
|
7 |
Single-wall carbon nano tubes (SWCNTs) penetrate Thymus daenensis Celak. plant cells and increase secondary metabolite accumulation in vitro
|
Industrial Crops and Products
|
8 |
Multi-walled carbon nanotubes stimulate growth, redox reactions and biosynthesis of antioxidant metabolites in Thymus daenensis celak. in vitro
|
CHEMOSPHERE
|