Signaling Pathway Analysis and Downstream Genes Associated with Disease Resistance Mediated by GmSRC7
Aoga Li, Chongyang Yao, Ting Yan, Xiaomin Hao, Dongying Geng, Qi Zhang, Hui Li, Wenquan Bao, Yue Bai

TL;DR
This study identifies downstream genes and signaling pathways involved in disease resistance mediated by the soybean gene GmSRC7.
Contribution
The paper reveals specific gene families and signaling components that interact with GmSRC7 to confer antiviral resistance.
Findings
Suppression of WRKY transcription factors, chaperones, and other signaling genes weakens GmSRC7-mediated resistance.
Transient expression of NbARF1, NbSGT1, and NbCOI1 antagonizes GmSRC7 defense against SMV and TMV.
Salicylic acid (SA) is essential for GmSRC7-mediated resistance, as its degradation reduces defense activity.
Abstract
GmSRC7 is a broad-spectrum antiviral R gene from soybean, but its downstream and functionally related genes remain unclear. Virus-induced gene silencing (VIGS) assays in Nicotiana benthamiana (Nb) showed that suppression of several gene families—WRKY transcription factors, chaperones, ethylene pathway components, MAPK cascade elements, salicylic acid (SA) signaling genes, calcium-dependent protein kinases, nuclear migration proteins, RNA replication-related genes, and immune regulators—consistently weakened GmSRC7-mediated resistance to Soybean Mosaic Virus (SMV) and Tobacco Mosaic Virus (TMV). Targeted silencing of four regulatory genes—NbEDS1, NbARF1, NbSGT1, and NbCOI1—markedly enhanced GmSRC7-mediated resistance to SMV and TMV in our experiments. Silencing the serine/threonine kinase gene NbPBS1 increased GmSRC7-conferred resistance to SMV but did not significantly alter its…
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Taxonomy
TopicsPlant Virus Research Studies · Plant Gene Expression Analysis · Plant-Microbe Interactions and Immunity
