Publication | Open Access
GmCYP82A3, a Soybean Cytochrome P450 Family Gene Involved in the Jasmonic Acid and Ethylene Signaling Pathway, Enhances Plant Resistance to Biotic and Abiotic Stresses
139
Citations
62
References
2016
Year
Abiotic StressesEngineeringBotanyGeneticsMolecular BiologyPlant PathologyMolecular GeneticsGenomicsPlant Molecular BiologyBiosynthesisJasmonic AcidPlant StressAbiotic StressBiotic StressCytochrome P450 MonooxygenasesEthylene Signaling PathwaySoybean Cyp82 FamilyGene ExpressionPlant HormonePlant MetabolismBiologyMetabolic PathwaysGenetic EngineeringMedicinePlant Physiology
The cytochrome P450 monooxygenases (P450s) represent a large and important enzyme superfamily in plants. They catalyze numerous monooxygenation/hydroxylation reactions in biochemical pathways, P450s are involved in a variety of metabolic pathways and participate in the homeostasis of phytohormones. The CYP82 family genes specifically reside in dicots and are usually induced by distinct environmental stresses. However, their functions are largely unknown, especially in soybean (Glycine max L.). Here, we report the function of GmCYP82A3, a gene from soybean CYP82 family. Its expression was induced by Phytophthora sojae infection, salinity and drought stresses, and treatment with methyl jasmonate (MeJA) or ethephon (ETH). Its expression levels were consistently high in resistant cultivars. Transgenic Nicotiana benthamiana plants overexpressing GmCYP82A3 exhibited strong resistance to Botrytis cinerea and Phytophthora parasitica, and enhanced tolerance to salinity and drought stresses. Furthermore, transgenic plants were less sensitive to jasmonic acid (JA), and the enhanced resistance was accompanied with increased expression of the JA/ET signaling pathway-related genes.
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