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首页> 外文期刊>Molecules and cells >Increased Polyamine Biosynthesis Enhances Stress Tolerance by Preventing the Accumulation of Reactive Oxygen Species: T-DNA Mutational Analysis of Oryza sativa Lysine Decarboxylase-like Protein 1
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Increased Polyamine Biosynthesis Enhances Stress Tolerance by Preventing the Accumulation of Reactive Oxygen Species: T-DNA Mutational Analysis of Oryza sativa Lysine Decarboxylase-like Protein 1

机译:增加的多胺生物合成可通过防止活性氧的积累来增强胁迫耐受性: Oryza sativa 赖氨酸脱羧酶样蛋白1的T-DNA突变分析

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A highly oxidative stress-tolerant japonica rice line was isolated by T-DNA insertion mutation followed by screening in the presence of 50 mM H2O2. The T-DNA insertion was mapped to locus Os09g0547500, the gene product of which was annotated as lysine decarboxylase-like protein (GenBank accession No. AK062595). We termed this gene OsLDC-like 1, for Oryza sativa lysine decarboxylase-like 1. The insertion site was in the second exon and resulted in a 27 amino acid N-terminal deletion. Despite this defect in OsLDC-like 1, the mutant line exhibited enhanced accumulation of the polyamines (PAs) putrescine, spermidine, and spermine under conditions of oxidative stress. The generation of reactive oxygen species (ROS) in the mutant line was assessed by qRT-PCR analysis of NADPH oxidase (RbohD and RbohF), and by DCFH-DA staining. Cellular levels of ROS in osldc-like 1 leaves were significantly lower than those in the wild-type (WT) rice after exposure to oxidative, high salt and acid stresses. Exogenouslyapplied PAs such as spermidine and spermine significantly inhibited the stress-induced accumulation of ROS and cell damage in WT leaves. Additionally, the activities of ROS-detoxifying enzymes were increased in the homozygous mutant line in the presence or absence of H2O2. Thus, mutation of OsLDC-like 1 conferred an oxidative stress-tolerant phenotype. These results suggest that increased cellular PA levels have a physiological role in preventing stress-induced ROS and ethylene accumulation and the resultant cell damage.
机译:通过T-DNA插入突变分离高氧化胁迫耐性粳稻品系,然后在50 mM H2O2存在下进行筛选。 T-DNA插入被定位到基因座Os09g0547500,其基因产物被标注为赖氨酸脱羧酶样蛋白(GenBank登录号AK062595)。我们称此基因为OsLDC-like 1,即水稻赖氨酸脱羧酶-like1。插入位点位于第二个外显子,导致27个氨基酸的N端缺失。尽管在OsLDC-like 1中存在此缺陷,但突变株在氧化应激条件下仍表现出多胺(PAs)腐胺,亚精胺和亚精胺的积累。通过NADPH氧化酶(RbohD和RbohF)的qRT-PCR分析以及DCFH-DA染色,评估了突变株中活性氧(ROS)的产生。暴露于氧化,高盐和酸胁迫后,osldc-like 1叶片中的ROS水平显着低于野生型(WT)水稻。外源施用的PA(例如亚精胺和亚精胺)显着抑制了胁迫诱导的WT叶片中ROS的积累和细胞损伤。另外,在有或没有H 2 O 2的情况下,纯合突变体系中ROS解毒酶的活性增加。因此,OsLDC样1的突变赋予了耐氧化应激的表型。这些结果表明增加的细胞PA水平在预防应激诱导的ROS和乙烯蓄积以及由此引起的细胞损伤中具有生理作用。

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