Comparative RNA-Seq Analysis Uncovers a Complex Regulatory Network for Soybean Cyst Nematode Resistance in Wild Soybean (Glycine soja)

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作者
Hengyou Zhang
Susanne Kjemtrup-Lovelace
Changbao Li
Yan Luo
Lars P. Chen
Bao-Hua Song
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[1] University of North Carolina at Charlotte,Department of Biological Sciences
[2] North Carolina State University,Department of Plant and Microbial Biology
[3] Double Haploid Optimization Group,Biology Department
[4] Monsanto Company,undefined
[5] Xishuangbanna Tropical Botanical Garden,undefined
[6] Chinese Academy of Sciences,undefined
[7] University of North Carolina,undefined
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Soybean cyst nematode (SCN) is the most damaging pest of soybean worldwide. The molecular mechanism of SCN resistance remains largely unknown. We conducted a global RNA-seq comparison between a resistant genotype (S54) and a susceptible genotype (S67) of Glycine soja, the wild progenitor of soybean, to understand its regulatory network in SCN defense. The number of differentially expressed genes (DEGs) in S54 (2,290) was much larger than that in S67 (555). A number of defense-related genes/pathways were significantly induced only in S54, while photosynthesis and several metabolic pathways were affected in both genotypes with SCN infection. These defense-associated DEGs were involved in pathogen recognition, calcium/calmodulin-mediated defense signaling, jasmonic acid (JA)/ethylene (ET) and sialic acid (SA)-involved signaling, the MAPK signaling cascade, and WRKY-involved transcriptional regulation. Our results revealed a comprehensive regulatory network involved in SCN resistance and provided insights into the complex molecular mechanisms of SCN resistance in wild soybean.
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