Kumar Rahul, Chauhan Pankaj Kumar, Khurana Ashima
Repository of Tomato Genomic Resources, Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, 500046, India.
Botany Department, Zakir Husain Delhi College, University of Delhi, New Delhi, 110002, India.
Funct Integr Genomics. 2016 Sep;16(5):513-28. doi: 10.1007/s10142-016-0502-3. Epub 2016 Jul 5.
DNA methyltransferase (DMTase) enzymes contribute to plant development and stress responses by de novo establishment and subsequent maintenance of DNA methylation during replication. However, the molecular mechanism underlying this activity remains obscure, especially in crop species. Using DMTase homolog complement in six Solanaceae species, we demonstrated here that their number remained conserved in Solanum lineage, whereas it was expanded in both pepper and Nicotiana benthamiana. Non-synonymous vs synonymous (Ka/Ks) substitution ratio revealed that most of the Solanaceous DMTase homologs undergo purifying selection. The genomic sequences of tomato DMT homologs in its wild relative, Solanum pennellii, remained highly conserved in their exons and methyltransferase domains. Structure analysis further revealed highly similar folding of DMTase homologs and conservation in the residues participating in protein-protein interaction in Solanum lineage, whereas a considerable diversification was observed of pepper homologs. Transcript profiling of DMTases highlighted both similar and distinct expression patterns of tomato homologs in other species during fruit development and stress responses. Overall, our analysis provides a strong basis for in-depth exploration of both conserved as well as distinct functions of tomato DMTase homologs in other economically important Solanaceae species.
DNA甲基转移酶(DMTase)通过在复制过程中从头建立并随后维持DNA甲基化,对植物发育和应激反应发挥作用。然而,这种活性背后的分子机制仍不清楚,尤其是在作物物种中。通过在六个茄科物种中使用DMTase同源物互补,我们在此证明它们的数量在茄属谱系中保持保守,而在辣椒和本氏烟草中均有所增加。非同义替换与同义替换(Ka/Ks)比率表明,大多数茄科DMTase同源物都经历了纯化选择。番茄野生近缘种潘那利番茄中DMT同源物的基因组序列在其外显子和甲基转移酶结构域中保持高度保守。结构分析进一步揭示了茄属谱系中DMTase同源物的折叠高度相似,以及参与蛋白质-蛋白质相互作用的残基的保守性,而辣椒同源物则观察到相当大的差异。DMTases的转录谱分析突出了番茄同源物在其他物种果实发育和应激反应过程中相似和不同的表达模式。总体而言,我们的分析为深入探索番茄DMTase同源物在其他经济上重要的茄科物种中的保守和独特功能提供了有力依据。