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Genome-wide analysis of R2R3-MYB transcription factors family in the autopolyploid Saccharum spontaneum: an exploration of dominance expression and stress response

机译:Autopolyploid Saccharum Spontaneum中R2R3-MYB转录因子家族的基因组分析:探索优势表达和应激反应

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Sugarcane (Saccharum) is the most critical sugar crop worldwide. As one of the most enriched transcription factor families in plants, MYB genes display a great potential to contribute to sugarcane improvement by trait modification. We have identified the sugarcane MYB gene family at a whole-genome level through systematic evolution analyses and expression profiling. R2R3-MYB is a large subfamily involved in many plant-specific processes. A total of 202 R2R3-MYB genes (356 alleles) were identified in the polyploid Saccharum spontaneum genomic sequence and classified into 15 subgroups by phylogenetic analysis. The sugarcane MYB family had more members by a comparative analysis in sorghum and significant advantages among most plants, especially grasses. Collinearity analysis revealed that 70% of the SsR2R3-MYB genes had experienced duplication events, logically suggesting the contributors to the MYB gene family expansion. Functional characterization was performed to identify 56 SsR2R3-MYB genes involved in various plant bioprocesses with expression profiling analysis on 60 RNA-seq databases. We identified 22 MYB genes specifically expressed in the stem, of which RT-qPCR validated MYB43, MYB53, MYB65, MYB78, and MYB99. Allelic expression dominance analysis implied the differential expression of alleles might be responsible for the high expression of MYB in the stem. MYB169, MYB181, MYB192 were identified as candidate C4 photosynthetic regulators by C4 expression pattern and robust circadian oscillations. Furthermore, stress expression analysis showed that MYB36, MYB48, MYB54, MYB61 actively responded to drought treatment; 19 and 10 MYB genes were involved in response to the sugarcane pokkah boeng and mosaic disease, respectively. This is the first report on genome-wide analysis of the MYB gene family in sugarcane. SsMYBs probably played an essential role in stem development and the adaptation of various stress conditions. The results will provide detailed insights and rich resources to understand the functional diversity of MYB transcription factors and facilitate the breeding of essential traits in sugarcane.
机译:甘蔗(Saccharum)是全球最关键的糖作物。作为植物中最富集的转录因子家族之一,MyB基因显示出促进甘蔗改善的巨大潜力,通过性状改性促进。通过系统的演变分析和表达分析,我们在全基因组水平上鉴定了甘蔗MYB基因家族。 R2R3-MYB是一种大型群涉及许多植物特定过程。在多倍体糖蔗糖Spontaneum基因组序列中鉴定了总共202 r2R3-MyB基因(356等位基因),并通过系统发育分析分类为15个亚组。甘蔗MYB家族通过高粱的比较分析以及大多数植物,尤其是草丛中的显着优势。 Conslinity分析显示,70%的SSR2R3-MYB基因具有经历的复制事件,逻辑地表明MYB基因家族扩张的贡献者。进行功能表征以鉴定参与各种植物生物过程的56个SSR2R3-MYB基因,并对60RNA-SEQ数据库进行表达分析分析。我们鉴定了在茎中特异性表达的22个MyB基因,其中RT-QPCR验证了MyB43,MyB53,MyB65,MyB78和MyB99。等位基因表达优势分析暗示等位基因的差异表达可能对茎中MYB的高表达负责。 MYB169,MYB181,MYB192通过C4表达模式和强大的昼夜振荡确定为候选C4光合调节因子。此外,应激表达分析表明,MyB36,MyB48,MyB54,MyB61积极应对干旱治疗;参与了19和10个MyB基因,分别参与甘蔗博士蓬勃发展和马赛克病。这是甘蔗中MYB基因家族的基因组分析的第一份报告。 SSMYBS可能在茎的发展和各种压力条件的适应方面发挥了重要作用。结果将提供详细的见解和丰富的资源,以了解MYB转录因子的功能多样性,并促进甘蔗中必需特征的繁殖。

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