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ARS Home » Northeast Area » Beltsville, Maryland (BARC) » Beltsville Agricultural Research Center » Molecular Plant Pathology Laboratory » Research » Research Project #445329

Research Project: Developing Biotechnologies to Improve Pest and Pathogen Resistance, Yield, and Quality in Sugarbeet

Location: Molecular Plant Pathology Laboratory

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)

Predicted protein-protein interactions between sugar beet root maggot trypsins and sugar beet Kunitz trypsin inhibitors using deep learning Reprint Icon - (Peer Reviewed Journal)
Lee, Y., Rahim, S.S., Alkharouf, N.W., Chu, C.N., Klink, V.P. 2026. Predicted protein-protein interactions between sugar beet root maggot trypsins and sugar beet Kunitz trypsin inhibitors using deep learning. Data in Brief. 67. Article e113020. https://doi.org/10.1016/j.dib.2026.113020.

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 myopaeformis Reprint Icon - (Peer Reviewed Journal)
Rahim, S.S., Lee, Y., Alkharouf, N.W., Chu, C.N., Klink, V.P. 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 myopaeformis. Data in Brief. 66. Article e112748. https://doi.org/10.1016/j.dib.2026.112748.

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 pathosystem Reprint Icon - (Peer Reviewed Journal)
Rahim, S.S., Lee, Y., Alkharouf, N.W., Chu, C.N., Klink, V.P. 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 pathosystem. Data in Brief. 66. Article e112749. https://doi.org/10.1016/j.dib.2026.112749.

Glycine max Sec61 complex genes function in the soybean defense response to the parasitic nematode Heterodera glycines Reprint Icon - (Peer Reviewed Journal)
Troell, H.A., Sharma, K., Lawrence, G.W., Lawrence, K.S., Alkharouf, N.W., Klink, V.P. 2025. Glycine max Sec61 complex genes function in the soybean defense response to the parasitic nematode Heterodera glycines. Current Plant Biology. 42. Article e100474. https://doi.org/10.1016/j.cpb.2025.100474.

Transcriptome sample statistics for the sugar beet root maggot (Tetanops myopaeformis) infecting sugar beet Reprint Icon - (Peer Reviewed Journal)
Acharya, S., Alkharouf, N.W., Tehseen, M.T., Chu, C.N., Klink, V.P. 2024. Transcriptome sample statistics for the sugar beet root maggot (Tetanops myopaeformis) infecting sugar beet. Bioinformation. 20(12):1881-1885. https://doi.org/10.6026/9732063002001881.

SBRM DB: sugar beet root maggot database Reprint Icon - (Peer Reviewed Journal)
Acharya, S., Alkharouf, N.W., Tehseen, M.M., Chu, C.N., Klink, V.P. 2024. SBRM DB: sugar beet root maggot database. Bioinformation. 20(12):1841-1844. https://doi.org/10.6026/9732063002001841.

The annotation of genomic dataset sequences of the sugar beet root maggot Tetanops myopaeformis, TmSBRM_v1.0 Reprint Icon - (Peer Reviewed Journal)
Acharya, S., Alkharouf, N., Chu, C.N., Klink, V.P. 2024. The annotation of genomic dataset sequences of the sugar beet root maggot Tetanops myopaeformis, TmSBRM_v1.0. Data in Brief. Article e110710. https://doi.org/10.1016/j.dib.2024.110710.

An assembly of genomic sequences of the sugar beet root maggot Tetanops myopaeformis, TpSBRM_v1.0 Reprint Icon - (Peer Reviewed Journal)
Alkharouf, N., Chu, C.N., Klink, V.P. 2024. An assembly of genomic sequences of the sugar beet root maggot Tetanops myopaeformis, TpSBRM_v1.0. Data in Brief. Article e110298. https://doi.org/10.1016/j.dib.2024.110298.