Journal of Geoscience and Eco Agricultural Studies

Open Access • Peer Reviewed • Bi-Monthly Publication

Project RE-ENVELOP, Mechanistic Modeling of TSWV Envelope Dynamics: Identifying Novel Lipid-Binding Vulnerabilities in specific proteins to Combat Resistance-Breaking Strains in North Carolina.

Authors: Rajendra Nath Dasari* and Shail Sakalabhaktula
Published: 2026-09-07
Pages: 1-17
DOI: 10.63721/26JGEAS0146
Keywords: TSWV Envelope Stability, Lipid–Protein Interactions, Resistance-Breaking Strains, Glycopro tein Transmembrane Domains, Colorimetric Field Diagnostics
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Abstract

Tomato Spotted Wilt Virus (TSWV) is a major agricultural pathogen in North Carolina affecting tobacco, tomato, and pepper production, with emerging resistance-breaking (RB) strains compromising traditional genetic defenses. Unlike most plant viruses, TSWV is enveloped and depends on a host-derived lipid bilayer for stability, infectivity, and transmission via thrips vectors. This study introduces Project RE-ENVELOP, a computational framework integrating AlphaFold-Multimer modeling and molecular dynamics-inspired simulations to characterize lipid–protein interactions governing viral envelope stability. We focus on glycoprotein (Gn/Gc) transmembrane anchoring, nucleocapsid (N) protein lipid-binding pockets, and envelope lipid composition. We further introduce a Python-based stability proxy system to quantify rigidity zones and thermal denaturation behavior under North Carolina field conditions. Results identify mutation-sensitive lipid anchoring regions, cationic lipid-binding hotspots, and temperature-dependent envelope destabilization thresholds. Finally, we propose a low-cost colorimetric gel matrix device (“Envelop-Scan”) as a field-deployable proxy sensor for envelope integrity. This work reframes TSWV vulnerability as a biophysical lipid-interface problem rather than a purely genomic one, opening novel avenues for antiviral crop protection strategies.

Copyright & License

© 2026 The Author(s). Published by WM Journals.

This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

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