Nadim W. Alkharouf, Ph.D.
Affiliations: | 2004 | George Mason University, Washington, DC |
Area:
Molecular Biology, Biostatistics Biology, Computer ScienceGoogle:
"Nadim Alkharouf"Parents
Sign in to add mentorBenjamin F. Matthews | grad student | 2004 | George Mason | |
(Functional genomics of the soybean-cyst nematode interaction.) |
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Publications
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Acharya S, Troell HA, Billingsley RL, et al. (2023) Data analysis of polygalacturonase inhibiting proteins (PGIPs) from agriculturally important proteomes. Data in Brief. 52: 109831 |
Niraula PM, McNeece BT, Sharma K, et al. (2022) The central circadian regulator CCA1 functions in Glycine max during defense to a root pathogen, regulating the expression of genes acting in effector triggered immunity (ETI) and cell wall metabolism. Plant Physiology and Biochemistry : Ppb. 185: 198-220 |
Khatri R, Pant SR, Sharma K, et al. (2022) Homologs of , and Function to Impair Parasitism While Also Regulating Mitogen Activated Protein Kinase Expression. Frontiers in Plant Science. 13: 842597 |
Klink VP, Darwish O, Alkharouf NW, et al. (2021) Conserved oligomeric Golgi (COG) complex genes functioning in defense are expressed in root cells undergoing a defense response to a pathogenic infection and exhibit regulation my MAPKs. Plos One. 16: e0256472 |
Niraula PM, Sharma K, McNeece BT, et al. (2020) Mitogen activated protein kinase (MAPK)-regulated genes with predicted signal peptides function in the Glycine max defense response to the root pathogenic nematode Heterodera glycines. Plos One. 15: e0241678 |
Sharma K, Niraula PM, Troell HA, et al. (2020) Exocyst components promote an incompatible interaction between Glycine max (soybean) and Heterodera glycines (the soybean cyst nematode). Scientific Reports. 10: 15003 |
Alshehri HA, Alkharouf NW, Darwish O, et al. (2019) MAPKDB: A MAP kinase database for signal transduction element identification. Bioinformation. 15: 338-341 |
Zhang C, Gao M, Seitz NC, et al. (2019) LUX ARRHYTHMO mediates crosstalk between the circadian clock and defense in Arabidopsis. Nature Communications. 10: 2543 |
Li S, Darwish O, Alkharouf NW, et al. (2017) Analysis of the genome sequence of Phomopsis longicolla: a fungal pathogen causing Phomopsis seed decay in soybean. Bmc Genomics. 18: 688 |
Hawkins C, Caruana J, Li J, et al. (2017) An eFP browser for visualizing strawberry fruit and flower transcriptomes. Horticulture Research. 4: 17029 |