Showing results (11-20 of 47) with videos related to
Sort By:
Pageof 5
Plant Physiology and Biochemistry : PPB|June 25, 2018
Harpin-inducible defense signaling components impair infection by the ascomycete Macrophomina phaseolinaBisho R Lawaju, Kathy S Lawrence, Gary W Lawrence, et al.Bioinformation|April 15, 2025
Transcriptome sample statistics for the sugar beet root maggot (Tetanops myopaeformis) infecting sugar beetSudha Acharya, Nadim W Alkharouf, Muhammad Massub Tehseen, et al.Plos One|January 14, 2021
Xyloglucan endotransglycosylase/hydrolase increases tightly-bound xyloglucan and chain number but decreases chain length contributing to the defense response that Glycine max has to Heterodera glycinesPrakash M Niraula, Xuefeng Zhang, Dragica Jeremic, et al.Plant Molecular Biology|September 30, 2009
A gene expression analysis of syncytia laser microdissected from the roots of the Glycine max (soybean) genotype PI 548402 (Peking) undergoing a resistant reaction after infection by Heterodera glycines (soybean cyst nematode)Vincent P Klink, Parsa Hosseini, Prachi Matsye, et al.Data in Brief|April 24, 2026
Deep learning analysis of sugar beet (Beta vulgaris ssp vulgaris) protease inhibitors interacting with identified trypsins from its primary pathogen, the sugar beet root maggot Tetanops myopaeformisSidra S Rahim, Yerang Lee, Nadim W Alkharouf, et al.Data in Brief|April 29, 2026
Deep learning analysis of soybean cyst nematode effectors to proven soybean resistance genes and homolog identification in the sugar beet-sugar beet root maggot plant pathosystemSidra S Rahim, Yerang Lee, Nadim W Alkharouf, et al.Bioinformation|April 15, 2025
SBRM-DB: Sugar beet root maggot databaseSudha Acharya, Nadim W Alkharouf, Muhammad Massub Tehseen, et al.Data in Brief|July 9, 2026
Predicted protein-protein interactions between sugar beet root maggot trypsins and sugar beet Kunitz trypsin inhibitors using deep learningYerang Lee, Sidra S Rahim, Nadim W Alkharouf, et al.BMC Genomics|March 18, 2009
Population-specific gene expression in the plant pathogenic nematode Heterodera glycines exists prior to infection and during the onset of a resistant or susceptible reaction in the roots of the Glycine max genotype PekingVincent P Klink, Parsa Hosseini, Margaret H MacDonald, et al.Plant Molecular Biology|December 15, 2010
Differences in gene expression amplitude overlie a conserved transcriptomic program occurring between the rapid and potent localized resistant reaction at the syncytium of the Glycine max genotype Peking (PI 548402) as compared to the prolonged and potent resistant reaction of PI 88788Vincent P Klink, Parsa Hosseini, Prachi D Matsye, et al.Pageof 5