首页> 外文期刊>International Journal of Life Sciences >Global identification of potential gene biomarkers associated with ozone-induced foliar injury in rice seedling leaves by correlating their symptom severity with transcriptome profiling
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Global identification of potential gene biomarkers associated with ozone-induced foliar injury in rice seedling leaves by correlating their symptom severity with transcriptome profiling

机译:通过将其症状严重程度与转录组分析相关联,全面鉴定与臭氧诱导的水稻幼苗叶片叶损伤相关的潜在基因生物标记

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A combined approach of evaluating ozone (O3)-caused foliar injury symptom and global gene expression profiling was used to identify potential genes associated with severity of injury on leaves of O3 (200 ppb)-fumigated (1, 12, 24, 48, and 72 h) two-week-old rice (cv. Nipponbare) seedling. Foliar injuries were evaluated up to 72 h using both qualitative visual scale and quantitative RGB (red-green-blue) image analysis methods. The (R-G)/(R+G) was an optimal quantitative RGB parameter to assess foliar injury. Large-scale transcript profiling of leaves identified 270 genes linked with foliar injury. Genes were subjected to Pearson’s correlation test between their expression changes and O3-induced foliar injury changes (relative (R-G)/(R+G) parameters). Expression of 146 genes was found to increase with increased foliar severity up to 72 h, showing a positive, tight correlation between a subset of gene expression and commonly observed O3-triggerred symptom of foliar injury with correlation coefficient below -0.80. Of 146 genes, genes involved in metabolism (25%) formed a major functional category. Metabolic networks with identified metabolic genes provided insight into cellular responses such as photorespiration, biosynthesis of secondary metabolites, and detoxification. The O3 effect on these cellular responses has been previously reported based on physiological and biochemical studies, validating our approach used in this study to globally identify O3-responsive biomarkers tightly linked with foliar injury symptom. This study provides evidence for presence of large number of genes associated with foliar injury symptom than thought before, serving as a resource of potential biomarkers to study mechanisms of visible injury development by O3.DOI: http://dx.doi.org/10.3126/ijls.v6i1.6059
机译:评价臭氧(O3)引起的叶损伤症状和整体基因表达谱的组合方法用于鉴定与O3(200 ppb)熏蒸(1、12、24、48和72 h)两周大的水稻(cv。Nipponbare)幼苗。使用定性视觉标度和定量RGB(红绿蓝)图像分析方法对叶损伤进行长达72小时的评估。 (R-G)/(R + G)是评估叶片损伤的最佳定量RGB参数。叶片的大规模转录谱分析鉴定了与叶损伤有关的270个基因。基因在表达变化和O3诱导的叶损伤变化(相对(R-G)/(R + G)参数)之间进行了Pearson相关测试。发现146个基因的表达随叶的严重程度增加而增加,长达72小时,表明基因表达的一个子集与通常观察到的O3触发的叶损伤症状之间呈正紧密相关,相关系数低于-0.80。在146个基因中,参与代谢的基因(占25%)构成了主要的功能类别。具有确定代谢基因的代谢网络提供了对细胞反应(例如光呼吸,次生代谢物的生物合成和排毒)的深入了解。以前已经根据生理和生化研究报道了O3对这些细胞反应的作用,这验证了我们在本研究中用于整体鉴定与叶损伤症状紧密相关的O3反应性生物标志物的方法。这项研究提供了与叶损伤症状相关的大量基因存在的证据,这比以前认为的要多,可以作为研究O3可见损伤发展机制的潜在生物标记物的资源。 /ijls.v6i1.6059

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