17 results on '"Shirzadian-Khorramabad Reza"'
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2. Tobacco plants expressing the defensin NaD1 enhance drought tolerance characteristics in transgenic lines
3. A mutation in the cytosolic O-acetylserine (thiol) lyase induces a genome-dependent early leaf death phenotype in Arabidopsis
4. A mutation in Arabidopsis SAL1 alters its in vitro activity against IP3 and delays developmental leaf senescence in association with lower ROS levels
5. Various Approaches to Transfer Macromolecules into Plants Using Nanoparticles
6. Production of a Recombinant Dermaseptin Peptide in Nicotiana tabacum Hairy Roots with Enhanced Antimicrobial Activity
7. Systematic analysis of NAC transcription factors’ gene family and identification of post-flowering drought stress responsive members in sorghum
8. A novel, simple, and stable mesoporous silica nanoparticle-based gene transformation approach in Solanum lycopersicum
9. 'In silico' analysis and transient expression of wound-inducible promoter 'MPI' in tomato ('Lycopersicon esculentum' Mill. cv. CH)
10. Correction to: Production of a Recombinant Dermaseptin Peptide in Nicotiana tabacum Hairy Roots with Enhanced Antimicrobial Activity
11. Method for the identification of single mutations in large genomic regions using massive parallel sequencing
12. A mutation in Arabidopsis SAL1 alters its in vitro activity against IP3 and delays developmental leaf senescence in association with lower ROS levels.
13. Enhancement of glyphosate tolerance in rice (Oryza sativa L.) through mutation induction in EPSPS (5-enolpyruvylshikimate-3-phosphate synthase)
14. Targeting microbial pathogens by expression of new recombinant dermaseptin peptides in tobacco
15. Enhancement of tomato resistance to Tuta absoluta using a new efficient mesoporous silica nanoparticle-mediated plant transient gene expression approach
16. A mutation in the cytosolic O-acetylserine (thiol) lyase induces a genome-dependent early leaf death phenotype in Arabidopsis
17. Method for the identification of single mutations in large genomic regions using massive parallel sequencing
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