College of Life Sciences, Center for Genomics and Biotechnology, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.
College of Crop Sciences, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.
PLoS One. 2020 Jan 16;15(1):e0227716. doi: 10.1371/journal.pone.0227716. eCollection 2020.
Dof transcription factors plant-specific and associates with growth and development in plants. We conducted comprehensive and systematic analyses of Dof transcription factors in sugarcane, and identified 29 SsDof transcription factors in sugarcane genome. Those SsDof genes were divided into five groups, with similar gene structures and conserved motifs within the same groups. Segmental duplications are predominant in the evolution of Dof in sugarcane. Cis-element analysis suggested that the functions of SsDofs were involved in growth and development, hormones and abiotic stresses responses in sugarcane. Expression patterns indicated that SsDof7, SsDof23 and SsDof24 had a comparatively high expression in all detected tissues, indicating these genes are crucial in sugarcane growth and development. Moreover, we examined the transcription levels of SsDofs under four plant hormone treatments, SsDof7-3 and SsDof7-4 were down-regulated after ABA treatment, while SsDof7-1 and SsDof7-2 were induced after the same treatment, indicating different alleles may play different roles in response to plant hormones. We also analyzed SsDofs' expression profiling under four abiotic stresses, SsDof5 and SsDof28 significantly responded to these four stresses, indicating they are associate with abiotic stresses responses. Collectively, our results yielded allele specific expression of Dof genes responding to hormones and abiotic stresses in sugarcane, and their cis-elements could be crucial for sugarcane improvement.
Dof 转录因子在植物中具有特异性,并与植物的生长和发育有关。我们对甘蔗中的 Dof 转录因子进行了全面系统的分析,在甘蔗基因组中鉴定出 29 个 SsDof 转录因子。这些 SsDof 基因分为五个组,同一组内的基因结构相似,保守基序相似。在甘蔗 Dof 的进化中,片段重复是主要的。顺式元件分析表明,SsDofs 的功能涉及到生长发育、激素和非生物胁迫响应。表达模式表明,SsDof7、SsDof23 和 SsDof24 在所有检测到的组织中都有较高的表达,表明这些基因在甘蔗的生长发育中至关重要。此外,我们检测了 4 种植物激素处理下 SsDofs 的转录水平,ABA 处理后 SsDof7-3 和 SsDof7-4 的转录水平下调,而同一处理后 SsDof7-1 和 SsDof7-2 的转录水平上调,表明不同的等位基因可能在对植物激素的反应中发挥不同的作用。我们还分析了 SsDofs 在 4 种非生物胁迫下的表达谱,SsDof5 和 SsDof28 对这 4 种胁迫有显著的响应,表明它们与非生物胁迫响应有关。总之,我们的研究结果表明,Dof 基因的等位基因特异性表达对激素和非生物胁迫有反应,它们的顺式元件可能对甘蔗改良至关重要。