Department of Agronomy and Plant Breeding, College of Agriculture, Isfahan University of Technology, Isfahan, 84156 83111, Iran.
Department of Agronomy and Plant Breeding, College of Agriculture, Isfahan University of Technology, Isfahan, 84156 83111, Iran.
Phytochemistry. 2020 Jan;169:112126. doi: 10.1016/j.phytochem.2019.112126. Epub 2019 Oct 20.
Thyme (Thymus spp.) is a valuable genus of Lamiaceae family with different pharmaceutical and food properties. Thymol has also been considered as the major essential oil compound in most of the studied Thymus species. In this research, the gene encoding γ-terpinene synthase (Ttps2) was sequenced in T. vulgaris and in eight Iranian thymes including T. carmanicus, T. daenensis, T. fedtschenkoi, T. kotschyanus, T. migricus, T. pubescens, T. serpyllum, and T. trautvetteri. Genetic relationships based on terpene synthase genes were also determined among the studied species. Rapid Amplification of cDNA Ends (RACE) PCR was done to complete the sequence of all species. The cDNA of the studied species possessed an open reading frame ranging from 1788 to 1794 bp that encode for a protein of 596-598 amino acids, presenting all the conserved motifs characteristics of monoterpene synthases. The taxonomic status of Thymus species was determined based on eight reported sections. The species were classified in three major groups. The first and second group comprised species of Micantes and Mastichina sections. The third cluster included the species belonging to Serpyllum and Pseudothymbra sections. Overall, phylogenetic analysis according to whole sequence of Ttps2 gene can help providing insights in respect to its evolutionary process. Finally, clustering based on the amount of main essential oils components (thymol and carvacrol) was compared with that based on Ttps2 gene classification in the studied Thymus species, showing that clustering is not always in accordance.
百里香(Thymus spp.)是唇形科的一种有价值的属,具有不同的药用和食品特性。百里酚也被认为是大多数研究的百里香物种中主要的精油化合物。在这项研究中,测序了普通百里香(T. vulgaris)和 8 种伊朗百里香(T. carmanicus、T. daenensis、T. fedtschenkoi、T. kotschyanus、T. migricus、T. pubescens、T. serpyllum 和 T. trautvetteri)中的 γ-松油烯合酶(Ttps2)编码基因。还基于萜烯合酶基因确定了研究物种之间的遗传关系。通过快速扩增 cDNA 末端(RACE)PCR 完成了所有物种的序列。研究物种的 cDNA 具有一个开放阅读框,范围从 1788 到 1794 bp,编码 596-598 个氨基酸的蛋白质,呈现出单萜合酶所有保守基序特征。根据报道的 8 个部分确定了百里香物种的分类地位。这些物种分为三大类。第一和第二组由 Micantes 和 Mastichina 部分的物种组成。第三组包括属于 Serpyllum 和 Pseudothymbra 部分的物种。总的来说,根据 Ttps2 基因全长序列的系统发育分析可以帮助了解其进化过程。最后,基于主要精油成分(百里酚和香芹酚)的含量进行聚类与基于 Ttps2 基因分类的聚类进行了比较,表明聚类并不总是一致的。