4-Coumarate CoA Ligase Family in Soybean Responds to Heterodera glycines
Hui Wang, Shumei Liu, Shunbin Zhang, Fengjiao Fan, Chuanwen Yang, Yuxi Duan, Qiumin Chen, Chen Liu

TL;DR
This study shows that 4CL genes in soybean, especially Gm4CL3, help build stronger cell walls to resist nematode infection.
Contribution
The study identifies Gm4CL3 as a key gene in enhancing soybean resistance to SCN through lignin deposition.
Findings
Resistant soybean cultivar Huipizhiheidou accumulates more lignin after SCN infection.
Gm4CL3 and Gm4CL4 are significantly upregulated in resistant soybean under SCN stress.
Gm4CL3 expression in tobacco leads to thicker leaf cell walls, suggesting a role in defense.
Abstract
Soybean cyst nematode (SCN) development depends on syncytium formation, which requires cell-wall degradation and fusion. Lignin, the main barrier in cell walls, is critical for SCN resistance. 4-Coumarate: CoA ligase (4CL) drives the phenylpropanoid pathway by converting p-coumaric acid to p-coumaroyl-CoA, supplying lignin precursors. Here, resistant cv. Huipizhiheidou accumulated more lignin than susceptible Williams 82 after SCN inoculation. SCN stress induced distinct Gm4CL-family expression profiles across cultivars; Gm4CL3 and Gm4CL4 were markedly upregulated in Huipizhiheidou. Transient expression of Gm4CL3 in tobacco thickened leaf cell walls, implying enhanced wall reinforcement against SCN. Thus, 4CLs, especially Gm4CL3, may promote lignin deposition and secondary wall thickening to strengthen soybean SCN resistance.
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Taxonomy
TopicsPlant Parasitism and Resistance · Photosynthetic Processes and Mechanisms · Cassava research and cyanide
