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A sugarcane R2R3-MYB transcription factor gene is alternatively spliced during drought stress

机译:甘蔗R2R3-MYB转录因子基因在干旱胁迫下也可拼接

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MYB transcription factors of the R2R3-MYB family have been shown to play important roles in many plant processes. A sugarcane R2R3-MYB gene (ScMYB2) and its two alternative forms of transcript (ScMYB2S1 and ScMYB2S2) were identified in this study. The deduced protein of ScMYB2S1 is a typical plant R2R3-MYB protein, while ScMYB2S2 encodes a truncated protein. Real-time qPCR analysis revealed that ScMYB2S1 is suppressed under PEG-simulated drought stress in sugarcane, while ScMYB2S2 is induced at later treatment stage. A senescence symptom was observed when ScMYB2S1 was injected into tobacco leaves mediated by Agrobacterium, but no symptom for ScMYB2S2. Further investigation showed that the expression levels of 4 senescence-associated genes, NtPR-1a, NtNYC1, NtCAT3 and NtABRE, were markedly induced in tobacco leaves after ScMYB2S1-injection, while they were not sensitive to ScMYB2S2-injection. Moreover, MDA and proline were also investigated after injection. Similarly, MDA and proline levels were induced by ABA and ScMYB2S1, while inhibited by ScMYB2S2. We propose that ScMYB2, by alternatively splicing two transcripts (ScMYB2S1 and ScMYB2S2), is involved in an ABA-mediated leaf senescence signaling pathway and play positive role in respond to drought-induced senescence in sugarcane. The results of this study provide information for further research in sugarcane stress processes.
机译:R2R3-MYB系列的MYB转录因子已被证明在许多植物过程中发挥重要作用。本研究中鉴定了甘蔗R2R3-MYB基因(SCMYB2)及其两种替代形式的转录物(SCMYB2S1和SCMYB2S2)。 SCMYB2S1的推导蛋白是典型的植物R2R3-MYB蛋白,而SCMYB2S2编码截短的蛋白质。实时QPCR分析显示,在甘蔗中的PEG模拟干旱胁迫下抑制了SCMYB2S1,而SCMYB2S2在以后的治疗阶段诱导。当ScMyB2S1注射到由土壤杆菌介导的烟叶中的烟叶中时,观察到衰老症状,但没有SCMYB2S2的症状。进一步的研究表明,在SCMYB2S1注射后,在烟叶中诱导4次衰老相关基因,NTPR-1A,NTNYC1,NTCAT3和NTABRe的表达水平,同时它们对SCMYB2S2注射不敏感。此外,还在注射后研究了MDA和脯氨酸。类似地,通过ABA和SCMYB2S1诱导MDA和脯氨酸水平,同时由SCMyB2S2抑制。我们提出SCMYB2,通过替代地剪切两种转录物(SCMYB2S1和SCMYB2S2),参与ABA介导的叶片衰老信号通路,并发挥阳性作用对甘蔗的干旱诱导的衰老作用。本研究的结果提供了进一步研究甘蔗应激过程的信息。

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