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首页> 外文期刊>Plant Molecular Biology >Functional analysis reveals pleiotropic effects of rice RING-H2 finger protein gene OsBIRF1 on regulation of growth and defense responses against abiotic and biotic stresses
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Functional analysis reveals pleiotropic effects of rice RING-H2 finger protein gene OsBIRF1 on regulation of growth and defense responses against abiotic and biotic stresses

机译:功能分析揭示水稻RING-H2手指蛋白基因OsBIRF1的多效性对调节生长和防御非生物和生物胁迫的反应

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摘要

RING finger proteins comprise a large family and play key roles in regulating growth/developmental processes, hormone signaling and responses to biotic and abiotic stresses in plants. A rice gene, OsBIRF1, encoding a putative RING-H2 finger protein, was cloned and identified. OsBIRF1 encodes a 396 amino acid protein belonging to the ATL family characterized by a conserved RING-H2 finger domain (C-X2-C-X15-C-X1-H-X2-H-X2-C-X10-C-X2-C), a transmembrane domain at the N-terminal, a basic amino acid rich region and a characteristic GLD region. Expression of OsBIRF1 was up-regulated in rice seedlings after treatment with benzothaidiazole, salicylic acid, l-aminocyclopropane-1-carboxylic acid and jasmonic acid, and was induced differentially in incompatible but not compatible interactions between rice and Magnaporthe grisea, the causal agent of blast disease. Transgenic tobacco plants that constitutively express OsBIRF1 exhibit enhanced disease resistance against tobacco mosaic virus and Pseudomonas syringae pv. tabaci and elevated expression levels of defense-related genes, e.g. PR-1, PR-2, PR-3 and PR-5. The OsBIRF1-overexpressing transgenic tobacco plants show increased oxidative stress tolerance to exogenous treatment with methyl viologen and H2O2, and up-regulate expression of oxidative stress-related genes. Reduced ABA sensitivity in root elongation and increased drought tolerance in seed germination were also observed in OsBIRF1 transgenic tobacco plants. Furthermore, the transgenic tobacco plants show longer roots and higher plant heights as compared with the wild-type plants, suggesting that overexpression of OsBIRF1 promote plant growth. These results demonstrate that OsBIRF1 has pleiotropic effects on growth and defense response against multiple abiotic and biotic stresses.
机译:无名指蛋白组成一个大家族,在调节植物的生长/发育过程,激素信号传导以及对生物和非生物胁迫的响应中起关键作用。克隆并鉴定了水稻基因OsBIRF1,该基因编码假定的RING-H2指状蛋白。 OsBIRF1编码属于ATL家族的396个氨基酸,其特征是保守的RING-H2指结构域(C-X2-C-X15-C-X1-H-X2-H-X2-C-X10-C-X2- C),在N-末端的跨膜结构域,碱性氨基酸富集区和特征性GLD区。苯并噻二唑,水杨酸,1-氨基环丙烷-1-羧酸和茉莉酸处理后,水稻幼苗中OsBIRF1的表达上调,并在水稻与稻瘟病菌(稻瘟病的致病因子)之间的不相容但不相容相互作用中被不同程度地诱导。爆炸病。组成型表达OsBIRF1的转基因烟草植物对烟草花叶病毒和丁香假单胞菌PV的抗病性增强。烟酸和防御相关基因的表达水平升高,例如PR-1,PR-2,PR-3和PR-5。过度表达OsBIRF1的转基因烟草植物对甲基紫精和H2O2进行外源处理显示出更高的氧化应激耐受性,并且上调了氧化应激相关基因的表达。在OsBIRF1转基因烟草植物中,还观察到ABA降低了根伸长的敏感性,提高了种子发芽的耐旱性。此外,与野生型植物相比,转基因烟草植物显示出更长的根和更高的植物高度,这表明OsBIRF1的过表达促进了植物的生长。这些结果表明,OsBIRF1对多种非生物和生物胁迫具有生长和防御反应的多效作用。

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