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The rice OsLOL2 gene encodes a zinc finger protein involved in rice growth and disease resistance

机译:水稻OsLOL2基因编码参与水稻生长和抗病性的锌指蛋白

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Arabidopsis LSD1-related proteins that contain LSD1-like zinc finger domains have been identified to be involved in disease resistance and programmed cell death. To investigate the potential role of LSD1-related gene in rice (Oryza sativa L.), we cloned an LSD1 ortholog, OsLOL2, from the rice cDNA plasmid library. The OsLOL2 gene is predicted to encode a polypeptide of 163 amino acids with two LSD1-like zinc finger domains with 74.5% identity to those of LSD1. Southern blot analysis indicated that OsLOL2 was a single-copy gene in the rice genome. Transgenic rice lines carrying the antisense strand of OsLOL2 with decreased expression of OsLOL2 had dwarf phenotypes, and the dwarfism could be restored by exogenous GA(3) treatment, suggesting that the dwarfism was the result of a deficiency in bioactive gibberellin (GA). In agreement with this possibility, the content of endogenous bioactive GA(1) decreased in the antisense transgenic lines. Expression of OsKS1, one of the genes encoding for GA biosynthetic enzymes, was suppressed in the antisense transgenic lines. Sense transgenic lines with increased expression of OsLOL2 were more resistant to rice bacterial blight, while antisense transgenic lines were less resistant to rice bacterial blight. The OsLOL2-GFP (green fluorescence protein) fusion protein was localized in the nucleus of cells of transgenic BY2 tobacco (Nicotiana tabacum L.). These data suggest that OsLOL2 is involved in rice growth and disease resistance.
机译:包含与LSD1样的锌指结构域相关的拟南芥LSD1相关蛋白已被确定与疾病抗性和程序性细胞死亡有关。为了研究LSD1相关基因在水稻(Oryza sativa L.)中的潜在作用,我们从水稻cDNA质粒文库中克隆了一个LSD1直系同源基因OsLOL2。预测OsLOL2基因编码具有两个LSD1样锌指结构域的163个氨基酸的多肽,与LSD1的锌指结构域具有74.5%的同一性。 Southern印迹分析表明OsLOL2是水稻基因组中的单拷贝基因。带有OsLOL2反义链且OsLOL2表达降低的转基因水稻品系具有矮型表型,并且可以通过外源GA(3)处理来恢复矮化,这表明该矮化是生物活性赤霉素(GA)缺乏的结果。与这种可能性一致,反义转基因品系中内源性生物活性GA(1)的含量降低。在反义转基因株系中,OsKS1(编码GA生物合成酶的基因之一)的表达受到抑制。具有增加的OsLOL2表达的有义转基因品系对水稻白叶枯病具有更高的抗性,而反义转基因品系对水稻白叶枯病具有较低的抗性。 OsLOL2-GFP(绿色荧光蛋白)融合蛋白位于转基因BY2烟草(Nicotiana tabacum L.)的细胞核中。这些数据表明OsLOL2参与了水稻的生长和抗病性。

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