Qu Yanshu, Bi Changwei, He Bing, Ye Ning, Yin Tongming, Xu Li-An
Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, China.
School of Biological Science and Medical Engineering, Southeast University, Nanjing, China.
PeerJ. 2019 Nov 7;7:e8019. doi: 10.7717/peerj.8019. eCollection 2019.
MADS-box genes encode transcription factors that participate in various plant growth and development processes, particularly floral organogenesis. To date, MADS-box genes have been reported in many species, the completion of the sequence of the willow genome provides us with the opportunity to conduct a comprehensive analysis of the willow MADS-box gene family. Here, we identified 60 willow MADS-box genes using bioinformatics-based methods and classified them into 22 M-type (11 Mα, seven Mβ and four Mγ) and 38 MIKC-type (32 MIKCc and six MIKC*) genes based on a phylogenetic analysis. Fifty-six of the 60 SsMADS genes were randomly distributed on 19 putative willow chromosomes. By combining gene structure analysis with evolutionary analysis, we found that the MIKC-type genes were more conserved and played a more important role in willow growth. Further study showed that the MIKC* type was a transition between the M-type and MIKC-type. Additionally, the number of MADS-box genes in gymnosperms was notably lower than that in angiosperms. Finally, the expression profiles of these willow MADS-box genes were analysed in five different tissues (root, stem, leave, bud and bark) and validated by RT-qPCR experiments. This study is the first genome-wide analysis of the willow MADS-box gene family, and the results establish a basis for further functional studies of willow MADS-box genes and serve as a reference for related studies of other woody plants.
MADS盒基因编码参与各种植物生长和发育过程的转录因子,尤其是花器官发生过程。迄今为止,已在许多物种中报道了MADS盒基因,柳树基因组序列的完成使我们有机会对柳树MADS盒基因家族进行全面分析。在这里,我们使用基于生物信息学的方法鉴定了60个柳树MADS盒基因,并根据系统发育分析将它们分为22个M型(11个Mα、7个Mβ和4个Mγ)和38个MIKC型(32个MIKCc和6个MIKC*)基因。60个SsMADS基因中的56个随机分布在19条假定的柳树染色体上。通过将基因结构分析与进化分析相结合,我们发现MIKC型基因更保守,在柳树生长中发挥更重要的作用。进一步研究表明,MIKC*型是M型和MIKC型之间的过渡类型。此外,裸子植物中MADS盒基因的数量明显低于被子植物。最后,分析了这些柳树MADS盒基因在五个不同组织(根、茎、叶、芽和树皮)中的表达谱,并通过RT-qPCR实验进行了验证。本研究是首次对柳树MADS盒基因家族进行全基因组分析,研究结果为进一步开展柳树MADS盒基因的功能研究奠定了基础,并为其他木本植物的相关研究提供了参考。