Molecular Biology and Genetic Engineering, G.B. Pant University of Agriculture and Technology, Pantnagar, India.
Funct Integr Genomics. 2012 Jun;12(2):265-75. doi: 10.1007/s10142-012-0268-1. Epub 2012 Feb 28.
Plant Lipoxygenases (LOX) are known to play major role in plant immunity by providing front-line defense against pathogen-induced injury. To verify this, we isolated a full-length OsLOX3 gene and also 12 OsLOX cDNA clones from Oryza sativa indica (cultivar Pusa Basmati 1). We have examined the role played by LOXs in plant development and during attack by blast pathogen Magnaporthe grisea. Gene expression, promoter region analysis, and biochemical and protein structure analysis of isolated OsLOX3 revealed significant homology with LOX super family. Protein sequence comparison of OsLOXs revealed high levels of homology when compared with japonica rice (up to100%) and Arabidopsis (up to 64%). Isolated LOX3 gene and 12 OsLOX cDNAs contained the catalytic LOX domains much required for oxygen binding and synthesis of oxylipins. Amino acid composition, protein secondary structure, and promoter region analysis (with abundance of motifs CGTCA and TGACG) support the role of OsLOX3 gene in providing resistance to diseases in rice plants. OsLOX3 gene expression analysis of root, shoot, flag leaf, and developing and mature seed revealed organ specific patterns during rice plant development and gave evidence to association between tissue location and physiological roles played by individual OsLOXs. Increased defense activity of oxylipins was observed as demonstrated by PCR amplification of OsLOX3 gene and upon inoculation with virulent strains of M. grisea and ectopic application of methyl jasmonate in the injured leaf tissue in adult rice plants.
植物脂氧合酶(LOX)被认为在植物免疫中发挥主要作用,为抵御病原体诱导的损伤提供一线防御。为了验证这一点,我们从籼稻(品种 Pusa Basmati 1)中分离出全长 OsLOX3 基因和 12 个 OsLOX cDNA 克隆。我们已经研究了 LOX 在植物发育过程中以及在稻瘟病菌 Magnaporthe grisea 攻击过程中的作用。OsLOX3 的基因表达、启动子区域分析、生化和蛋白质结构分析显示与 LOX 超家族具有显著的同源性。OsLOXs 的蛋白质序列比较显示与粳稻(高达 100%)和拟南芥(高达 64%)具有高度同源性。分离的 LOX3 基因和 12 个 OsLOX cDNA 包含催化 LOX 结构域,该结构域对于氧结合和氧脂类的合成非常重要。氨基酸组成、蛋白质二级结构和启动子区域分析(富含 CGTCA 和 TGACG 基序)支持 OsLOX3 基因在为水稻植株提供抗病性方面的作用。根、茎、旗叶和发育及成熟种子的 OsLOX3 基因表达分析揭示了水稻植株发育过程中的器官特异性模式,并为个别 OsLOXs 的组织位置与生理功能之间的关联提供了证据。通过 OsLOX3 基因的 PCR 扩增以及在成年水稻植株受伤叶片组织中接种强毒株和外源施用茉莉酸甲酯,观察到氧脂类防御活性的增加。