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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Rice SAPs are responsive to multiple biotic stresses and overexpression of OsSAP1, an A20/AN1 zinc-finger protein, enhances the basal resistance against pathogen infection in tobacco
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Rice SAPs are responsive to multiple biotic stresses and overexpression of OsSAP1, an A20/AN1 zinc-finger protein, enhances the basal resistance against pathogen infection in tobacco

机译:水稻SAP对多种生物胁迫有反应,OsSAP1(一种A20 / AN1锌指蛋白)的过表达增强了烟草抵抗病原体感染的基础抗性

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Eukaryotic A20/AN1 zinc-finger proteins (ZFPs) play an important role in the regulation of immune and stress response. After elucidation of the role of first such protein, OsSAP1, in abiotic stress tolerance, 18 rice stress associated protein (SAP) genes have been shown to be regulated by multiple abiotic stresses. In the present study, expression pattern of all the 18 OsSAP genes have been analysed in response to different biotic stress simulators, in order to get insights into their possible involvement in biotic stress tolerance. Our results showed the upregulation of OsSAP1 and OsSAP11 by all biotic stress simulator treatments. Furthermore, the functional role of OsSAP1 in plant defence responses has been explored through overexpression in transgenic plants. Constitutive expression of OsSAP1 in transgenic tobacco resulted into enhanced disease resistance against virulent bacterial pathogen, together with the upregulation of known defence-related genes. Present investigation suggests that rice SAPs are responsive to multiple biotic stresses and OsSAP1 plays a key role in basal resistance against pathogen infection. This strongly supports the involvement of rice SAPs in cross-talk between biotic and abiotic stress signalling pathways, which makes them ideal candidate to design strategies for protecting crop plants against multiple stresses
机译:真核A20 / AN1锌指蛋白(ZFP)在调节免疫和应激反应中起重要作用。在阐明了第一个此类蛋白OsSAP1在非生物胁迫耐受性中的作用后,已显示18种水稻胁迫相关蛋白(SAP)基因受多种非生物胁迫调控。在本研究中,已针对不同的生物胁迫模拟器对所有18个OsSAP基因的表达模式进行了分析,以了解它们可能参与生物胁迫耐受性。我们的结果表明,所有生物应激模拟器治疗均会上调OsSAP1和OsSAP11。此外,已经通过在转基因植物中的过表达探索了OsSAP1在植物防御反应中的功能作用。 OsSAP1在转基因烟草中的组成型表达导致增强的抗强力细菌病原体的抗病性,以及与防御相关基因的上调。目前的调查表明,水稻SAP对多种生物胁迫有反应,而OsSAP1在对病原体感染的基础抗性中起关键作用。这有力地支持了水稻SAP参与生物和非生物胁迫信号通路之间的串扰,这使其成为设计保护作物植物免受多种胁迫的策略的理想候选者。

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