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首页> 外文期刊>BMC Genomics >A rice LSD1-like-type ZFP gene OsLOL5 enhances saline-alkaline tolerance in transgenic Arabidopsis thaliana , yeast and rice
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A rice LSD1-like-type ZFP gene OsLOL5 enhances saline-alkaline tolerance in transgenic Arabidopsis thaliana , yeast and rice

机译:水稻LSD1样ZFP基因OsLOL5增强转基因拟南芥,酵母和水稻的耐盐碱能力

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Background Zinc finger proteins (ZFPs) play an important role in regulating plant responses to abiotic stress. However, little is known about the function of LSD1-like-type ZFP in saline-alkaline (SA) stress resistance of rice. In this study, OsLOL5 (GenBank No. AJ620677), containing two LSD1-like-type C2C2 domains, was isolated and analyzed its protection roles in transgenic plants and yeast. OsLOL5 was located in the nucleus as evidenced by the bombardment of onion epidermal cells. Results OsLOL5 expression significantly increased in rice leaves and roots under 150?mmol?L-1 NaCl, 30?mM NaHCO3, and 10?mmol?L-1 H2O2 treatment, respectively. Overexpression of OsLOL5 in yeast resulted in SA tolerance at significant level. Transgenic Arabidopsis plants overexpressing OsLOL5 grew well in the presence ofboth NaCl and NaHCO3 treatments, whereas wild-type plants exhibited chlorosis, stunted growth phenotype, and even death. SA stress caused significant changes in the malondialdehyde (MDA) contents in non-transgenic plants compared with those in transgenic lines. Transgenic rice overexpressing OsLOL5 exhibited stronger resistance than NT under NaHCO3 treatment, as demonstrated by its greater shoot length, and fresh weight. The genes associated with oxidative stress, such as OsAPX2 , OsCAT , OsCu/Zn-SOD , and OsRGRC2 , were significantly upregulated in OsLOL5 -overexpressing rice. The results suggested that OsLOL5 improved SA tolerance in plants, and regulated oxidative and salinity stress retardation via the active oxygen detoxification pathway. Conclusions The yeast INVScI bacterium grew significantly better than the control strain under NaCl, NaHCO3, and H2O2 treatments. These findings illustrated that OsLOL5 overexpression enhanced yeast resistance for SA stress through active oxygen species. The present study showed that the OsLOL5 genes involved in the ROS signaling pathways may combine with the model plant Arabidopsis and rice in LDS1-type ZFP by ROS signaling pathways that regulate cell necrosis. We speculated that the OsLOL5 active oxygen scavenging system may have coordinating roles. The present study further revealed that OsLOL5 ZFP could regulate oxidative stress function, but could also provide a basis for salt-resistant rice strains.
机译:背景锌指蛋白(ZFP)在调节植物对非生物胁迫的反应中起重要作用。然而,关于LSD1样ZFP在水稻盐碱(SA)胁迫抗性中的功能了解甚少。在这项研究中,分离了包含两个LSD1样C2C2域的OsLOL5(GenBank号AJ620677),并分析了其在转基因植物和酵母中的保护作用。洋葱表皮细胞的轰击证明了OsLOL5位于细胞核中。结果在150?mmol?L-1 NaCl,30?mM NaHCO 3 和10?mmol?L-1 H 2 下,水稻叶片和根中的OsLOL5表达显着增加。 O 2 处理。酵母中OsLOL5的过表达导致显着水平的SA耐受性。在NaCl和NaHCO 3 处理下,过量表达OsLOL5的转基因拟南芥植物生长良好,而野生型植物表现出萎黄病,生长发育迟缓甚至死亡。与转基因品系相比,SA胁迫在非转基因植物中引起丙二醛(MDA)含量的显着变化。在NaHCO 3 处理下,过表达OsLOL5的转基因水稻表现出比NT更强的抗性,这表现为更长的芽长和鲜重。与OsAPX2,OsCAT,OsCu / Zn-SOD和OsRGRC2等氧化应激相关的基因在过表达OsLOL5的水稻中显着上调。结果表明,OsLOL5提高了植物对SA的耐受性,并通过活性氧解毒途径调节了氧化和盐分胁迫的延迟。结论在NaCl,NaHCO 3 和H 2 O 2 处理下,酵母INVScI细菌的生长明显优于对照菌株。这些发现说明,OsLOL5过表达增强了酵母通过活性氧对SA胁迫的抗性。本研究表明,参与ROS信号通路的OsLOL5基因可以通过调节细胞坏死的ROS信号通路与LDS1型ZFP中的拟南芥和水稻模型植物结合。我们推测OsLOL5活性氧清除系统可能具有协调作用。本研究进一步揭示了OsLOL5 ZFP可以调节氧化应激功能,但也可以为耐盐水稻菌株提供基础。

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