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Plant Molecular Biology|June 13, 2012
The expression of a naturally occurring, truncated allele of an α-SNAP gene suppresses plant parasitic nematode infectionPrachi D Matsye, Gary W Lawrence, Reham M Youssef, et al.Frontiers in Plant Science|May 23, 2022
Glycine max Homologs of DOESN'T MAKE INFECTIONS 1, 2, and 3 Function to Impair Heterodera glycines Parasitism While Also Regulating Mitogen Activated Protein Kinase ExpressionRishi Khatri, Shankar R Pant, Keshav Sharma, et al.Scientific Reports|September 15, 2020
Exocyst components promote an incompatible interaction between Glycine max (soybean) and Heterodera glycines (the soybean cyst nematode)Keshav Sharma, Prakash M Niraula, Hallie A Troell, et al.Plos One|November 4, 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 glycinesPrakash M Niraula, Keshav Sharma, Brant T McNeece, et al.Planta|April 1, 2006
Timecourse microarray analyses reveal global changes in gene expression of susceptible Glycine max (soybean) roots during infection by Heterodera glycines (soybean cyst nematode)Nadim W Alkharouf, Vincent P Klink, Imed B Chouikha, et al.Planta|April 7, 2009
A correlation between host-mediated expression of parasite genes as tandem inverted repeats and abrogation of development of female Heterodera glycines cyst formation during infection of Glycine maxVincent P Klink, Kyung-Hwan Kim, Veronica Martins, et al.Plant Physiology and Biochemistry : PPB|November 7, 2017
A harpin elicitor induces the expression of a coiled-coil nucleotide binding leucine rich repeat (CC-NB-LRR) defense signaling gene and others functioning during defense to parasitic nematodesWeasam A R Aljaafri, Brant T McNeece, Bisho R Lawaju, et al.Pageof 5