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Genome-wide detection of terpene synthase genes in holy basil (Ocimum sanctum L.)

机译:全基因组检测圣罗勒(Ocimum sanctum L.)中的萜烯合酶基因

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摘要

Holy basil (Ocimum sanctum L.) and sweet basil (Ocimum basilicum L.) are the most commonly grown basil species in India for essential oil production and biosynthesis of potentially volatile and non-volatile phytomolecules with commercial significance. The aroma, flavor and pharmaceutical value of Ocimum species is a significance of its essential oil, which contains most of the monoterpenes and sesquiterpenes. A large number of plants have been studied for characterization and identification of terpene synthase genes, involved in terpenoids biosynthesis. The goal of this study is to discover and identify the putative functional terpene synthase genes in O. sanctum. HMMER search was performed by using a set of 13 well sequenced and annotated plant genomes including the newly sequenced genome of O. sanctum with Pfam-A database locally, using HMMER 3.0 hmmsearch for the two Pfam domains (PF01397 and PF03936). Using this search method 81 putative terpene synthases genes (OsaTPS) were identified in O. sanctum; the study further reveals 47 OsaTPS were putatively functional genes, 19 partial OsaTPS, and 15 OsaTPS as probably pseudogenes. All these identified OsaTPS genes were compared with other plant species, and phylogenetic analysis reveals the subfamily classification of OsaTPS in TPS-a, -b, -c, -e, -f and TPS-g subfamilies clusters. This genome-wide identification of OsaTPS genes, their phylogenetic analysis and secondary metabolite pathway mapping predictions together provide a comprehensive understanding of the TPS gene family in Ocimum sanctum and offer opportunities for the characterization and functional validation of numbers of terpene synthase genes.
机译:圣罗勒(Ocimum sanctum L.)和甜罗勒(Ocimum basilicum L.)是印度最常种植的罗勒树种,用于精油生产和具有潜在商业价值的挥发性和非挥发性植物分子的生物合成。 Ocimum种类的香气,风味和药用价值是其精油的重要意义,精油包含大多数单萜和倍半萜。已经研究了大量植物以鉴定和鉴定涉及萜类生物合成的萜烯合酶基因。这项研究的目的是发现和鉴定圣所中假定的功能性萜烯合酶基因。使用HMMER 3.0 hmmsearch对两个Pfam域(PF01397和PF03936)进行HMMER搜索,方法是使用一组13个经过良好测序和注释的植物基因组,其中包括带有Pfam-A数据库的新近鉴定的O. sanctum的基因组。使用该搜索方法,在圣殿中鉴定出了81个假定的萜烯合酶基因(OsaTPS)。该研究进一步揭示了47个OsaTPS是推定的功能基因,其中19个部分OsaTPS和15个OsaTPS可能是假基因。将所有这些鉴定出的OsaTPS基因与其他植物物种进行了比较,系统发育分析揭示了TPS-a,-b,-c,-e,-f和TPS-g亚家族簇中OsaTPS的亚科分类。 OsaTPS基因的全基因组鉴定,系统发育分析和次级代谢产物途径定位预测共同提供了对 Ocimum Sanctum 中TPS基因家族的全面了解,并为表征和鉴定功能提供了机会。萜烯合酶基因。

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