生物
水稻
拟南芥
稻黄单胞菌
转基因水稻
茉莉酸
格里斯麦格纳波特
NPR1
植物抗病性
基因
遗传学
稻属
植物对草食的防御
水稻黄单胞菌。稻瘟
功能分歧
转基因作物
转基因
突变体
基因组
基因家族
医学
心力衰竭
利钠肽
内科学
作者
Yuexing Yuan,Sihui Zhong,Qun Li,Zeng‐Rong Zhu,Yonggen Lou,Linyou Wang,Jianjun Wang,Muyang Wang,Qiaoli Li,Dong‐Lei Yang,Zuhua He
标识
DOI:10.1111/j.1467-7652.2007.00243.x
摘要
Summary The key regulator of salicylic acid (SA)‐mediated resistance, NPR1, is functionally conserved in diverse plant species, including rice ( Oryza sativa L.). Investigation in depth is needed to provide an understanding of NPR1 ‐mediated resistance and a practical strategy for the improvement of disease resistance in the model crop rice. The rice genome contains five NPR1 ‐like genes. In our study, three rice homologous genes, OsNPR1 / NH1 , OsNPR2 / NH2 and OsNPR3 , were found to be induced by rice bacterial blight Xanthomonas oryzae pv. oryzae and rice blast Magnaporthe grisea , and the defence molecules benzothiadiazole, methyl jasmonate and ethylene. We confirmed that OsNPR1 is the rice orthologue by complementing the Arabidopsis npr1 mutant. Over‐expression of OsNPR1 conferred disease resistance to bacterial blight, but also enhanced herbivore susceptibility in transgenic plants. The OsNPR1‐green fluorescent protein (GFP) fusion protein was localized in the cytoplasm and moved into the nucleus after redox change. Mutations in its conserved cysteine residues led to the constitutive localization of OsNPR1(2CA)‐GFP in the nucleus and also abolished herbivore hypersensitivity in transgenic rice. Different subcellular localizations of OsNPR1 antagonistically regulated SA‐ and jasmonic acid (JA)‐responsive genes, but not SA and JA levels, indicating that OsNPR1 might mediate antagonistic cross‐talk between the SA‐ and JA‐dependent pathways in rice. This study demonstrates that rice has evolved an SA‐mediated systemic acquired resistance similar to that in Arabidopsis, and also provides a practical approach for the improvement of disease resistance without the penalty of decreased herbivore resistance in rice.
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