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首页> 外文期刊>International Journal of Genomics >Genome-Wide Analysis of Genes Encoding Methionine-Rich Proteins in Arabidopsis and Soybean Suggesting Their Roles in the Adaptation of Plants to Abiotic Stress
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Genome-Wide Analysis of Genes Encoding Methionine-Rich Proteins in Arabidopsis and Soybean Suggesting Their Roles in the Adaptation of Plants to Abiotic Stress

机译:拟南芥和大豆中富含蛋氨酸的蛋白质基因的全基因组分析表明它们在植物适应非生物胁迫中的作用

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摘要

Oxidation and reduction of methionine (Met) play important roles in scavenging reactive oxygen species (ROS) and signaling in living organisms. To understand the impacts of Met oxidation and reduction in plants during stress, we surveyed the genomes of Arabidopsis and soybean (Glycine max L.) for genes encoding Met-rich proteins (MRPs). We found 121 and 213 genes encoding MRPs in Arabidopsis and soybean, respectively. Gene annotation indicated that those with known function are involved in vital cellular processes such as transcriptional control, calcium signaling, protein modification, and metal transport. Next, we analyzed the transcript levels of MRP-coding genes under normal and stress conditions. We found that 57 AtMRPs were responsive either to drought or to high salinity stress in Arabidopsis; 35 GmMRPs were responsive to drought in the leaf of late vegetative or early reproductive stages of soybean. Among the MRP genes with a known function, the majority of the abiotic stress-responsive genes are involved in transcription control and calcium signaling. Finally, Arabidopsis plant which overexpressed an MRP-coding gene, whose transcripts were downregulated by abiotic stress, was more sensitive to paraquat than the control. Taken together, our report indicates that MRPs participate in various vital processes of plants under normal and stress conditions.
机译:蛋氨酸(Met)的氧化和还原在清除活生物体中的活性氧(ROS)和信号传导中起重要作用。为了解胁迫过程中Met氧化和还原对植物的影响,我们对拟南芥和大豆(Glycine max L.)的基因组进行了调查,研究了编码富含Met蛋白质(MRP)的基因。我们在拟南芥和大豆中分别发现了编码MRP的121和213基因。基因注释表明具有已知功能的基因参与重要的细胞过程,例如转录控制,钙信号传导,蛋白质修饰和金属转运。接下来,我们分析了正常和压力条件下MRP编码基因的转录水平。我们发现,拟南芥中有57个AtMRP对干旱或高盐度胁迫有反应。 35种GmMRP对大豆营养晚期或生殖早期叶片的干旱有反应。在具有已知功能的MRP基因中,大多数非生物胁迫响应基因都参与转录控制和钙信号传导。最后,过表达MRP编码基因的拟南芥植物比非对照对百草枯更敏感,该基因的转录物因非生物胁迫而下调。综上所述,我们的报告表明MRP在正常和胁迫条件下参与了植物的各种重要过程。

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