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Constitutive expression of mammalian nitric oxide synthase in tobacco plants triggers disease resistance to pathogens
Authors:Hyun Jin Chun  Hyeong Cheol Park  Sung Cheol Koo  Ju Huck Lee  Chan Young Park  Man Soo Choi  Chang Ho Kang  Dongwon Baek  Yong Hwa Cheong  Dae-Jin Yun  Woo Sik Chung  Moo Je Cho  Min Chul Kim
Institution:1. Division of Applied Life Science (Brain Korea 21 Program), Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju, 660-701, Korea
2. National Institute of Crop Science, Rural Development Administration, Suwon, 441-857, Korea
3. Department of Bio-Environmental Science, Sunchon National University, Sunchon, 550-742, Korea
Abstract:Nitric oxide (NO) is known for its role in the activation of plant defense responses. To examine the involvement and mode of action of NO in plant defense responses, we introduced calmodulin-dependent mammalian neuronal nitric oxide synthase (nNOS), which controls the CaMV35S promoter, into wild-type and NahG tobacco plants. Constitutive expression of nNOS led to NO production and triggered spontaneous induction of leaf lesions. Transgenic plants accumulated high amounts of H2O2, with catalase activity lower than that in the wild type. nNOS transgenic plants contained high levels of salicylic acid (SA), and they induced an array of SA-, jasmonic acid (JA)-, and/or ethylene (ET)-related genes. Consequently, NahG co-expression blocked the induction of systemic acquired resistance (SAR)-associated genes in transgenic plants, implying SA is involved in NO-mediated induction of SAR genes. The transgenic plants exhibited enhanced resistance to a spectrum of pathogens, including bacteria, fungi, and viruses. Our results suggest a highly ranked regulatory role for NO in SA-, JA-, and/or ET-dependent pathways that lead to disease resistance.
Keywords:nitric oxide (NO)  nitric oxide synthase (NOS)  plant defense signaling  reactive oxygen species  salicylic acid
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