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Bioinformatics identification of new targets for improving low temperature stress tolerance in spring and winter wheat

机译:改善春冬小麦耐低温性的新靶标的生物信息学鉴定

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Background Phenotypic studies in Triticeae have shown that low temperature-induced protective mechanisms are developmentally regulated and involve dynamic acclimation processes. Understanding these mechanisms is important for breeding cold-resistant wheat cultivars. In this study, we combined three computational techniques for the analysis of gene expression data from spring and winter wheat cultivars subjected to low temperature treatments. Our main objective was to construct a comprehensive network of cold response transcriptional events in wheat, and to identify novel cold tolerance candidate genes in wheat. Results We assigned novel cold stress-related roles to 35 wheat genes, uncovered novel transcription (TF)-gene interactions, and identified 127 genes representing known and novel candidate targets associated with cold tolerance in wheat. Our results also show that delays in terms of activation or repression of the same genes across wheat cultivars play key roles in phenotypic differences among winter and spring wheat cultivars, and adaptation to low temperature stress, cold shock and cold acclimation. Conclusions Using three computational approaches, we identified novel putative cold-response genes and TF-gene interactions. These results provide new insights into the complex mechanisms regulating the expression of cold-responsive genes in wheat.
机译:背景技术对小麦的表型研究表明,低温诱导的保护机制受到发育调控,并且涉及动态适应过程。了解这些机制对于育种抗寒小麦品种非常重要。在这项研究中,我们结合了三种计算技术,对经过低温处理的春小麦和冬小麦品种的基因表达数据进行了分析。我们的主要目标是构建小麦冷应答转录事件的综合网络,并鉴定小麦中新的耐冷候选基因。结果我们为35个小麦基因分配了与寒冷胁迫相关的新角色,发现了新的转录(TF)基因相互作用,并鉴定了127个基因,它们代表了与小麦耐寒性相关的已知和新型候选靶标。我们的结果还表明,整个小麦品种中相同基因的激活或抑制延迟在冬小麦和春小麦品种之间的表型差异以及对低温胁迫,冷休克和冷驯化的适应中起关键作用。结论使用三种计算方法,我们确定了新的假定的冷响应基因和TF基因相互作用。这些结果为调节小麦中冷应答基因表达的复杂机制提供了新见解。

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