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Identification of altered metabolic pathways of gamma-irradiated rice mutant via network-based transcriptome analysis

机译:通过基于网络的转录组分析鉴定γ-辐照的水稻突变体的代谢途径

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In order to develop rice mutants for crop improvement, we applied gamma-irradiation mutagenesis and selected a rice seed color mutant (MT) in the M-14 targeting-induced local lesions in genome lines. This mutant exhibited differences in germination rate, plant height, and root length in seedlings compared to the wild-type plants. We found 1645 different expressed probes of MT by microarray hybridization. To identify the modified metabolic pathways, we conducted integrated genomic analysis such as weighted correlation network analysis with a module detection method of differentially expressed genes (DEGs) in MT on the basis of large-scale microarray transcriptional profiling. These modules are largely divided into three subnetworks and mainly exhibit overrepresented gene ontology functions such as oxidation-related function, ion-binding, and kinase activity (phosphorylation), and the expressional coherences of module genes mainly exhibited in vegetative and maturation stages. Through a metabolic pathway analysis, we detected the significant DEGs involved in the major carbohydrate metabolism (starch degradation), protein degradation (aspartate protease), and signaling in sugars and nutrients. Furthermore, the accumulation of amino acids (asparagine and glutamic acid), sucrose, and starch in MT were affected by gamma rays. Our results provide an effective approach for identification of metabolic pathways associated with useful agronomic traits in mutation breeding.
机译:为了开发水稻改良作物的突变体,我们应用了γ射线诱变,并在基因组系中由M-14靶向诱导的局部病变中选择了水稻种子颜色突变体(MT)。与野生型植物相比,该突变体在幼苗中表现出发芽率,植物高度和根长的差异。我们通过微阵列杂交发现了1645种MT的不同表达探针。为了鉴定修饰的代谢途径,我们在大规模微阵列转录谱的基础上,进行了整合基因组分析,例如加权相关网络分析和MT中差异表达基因(DEG)的模块检测方法。这些模块主要分为三个子网络,主要表现出过度表达的基因本体功能,例如氧化相关功能,离子结合和激酶活性(磷酸化),而模块基因的表达一致性主要表现在营养和成熟阶段。通过代谢途径分析,我们检测到了主要的糖代谢(淀粉降解),蛋白质降解(天冬氨酸蛋白酶)以及糖和营养素信号传导中涉及的重要DEG。此外,γ射线会影响MT中氨基酸(天冬酰胺和谷氨酸),蔗糖和淀粉的积累。我们的结果为鉴定与突变育种中有用的农艺性状相关的代谢途径提供了一种有效的方法。

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