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- W2275702413 abstract "'Salvia mirzayanii' and 'Salvia macrosiphon' are medicinal and aromatic plants belonging to the Lamiaceae family, which have many pharmaceutical properties. In the present study, the nucleic acid sequences of small-subunit ribosomal RNAs ('18s rRNA') were isolated from 'S. mirzayanii' and 'S. macrosiphon' and then the genetic diversity and phylogenetic relationships of these two species with 29 related Salvia species were investigated. Phenylalanine ammonia lyase ('PAL1') was isolated from these two 'Salvia' species. The phylogenetic and multi-alignment analyses of amino acids sequences of 'PAL1' revealed that 'PAL1' from both 'S. mirzayanii' (GenBank accession no. KP336898) and 'S. macrosiphon' (GenBank accession no. KP336899) has high identity with the other 'Salvia PALs' in the GenBank (71%-96%) and has a closer relationship with other angiosperm species. Promoter analysis demonstrated that 'PAL' includes cis-acting elements such as ABRE, ARE, HSE, TCA-elements, TC-rich repeat and GA, CGTCA, TGACG, WUN-motif in the upstream region which respond to stress hormones and might show its vital role in biotic and abiotic stresses. To investigate the effects of salinity on Salvia plants, twelve-week old seedlings of 'S. mirzayanii' and 'S. macrosiphon' were irrigated with 100 mM NaCl salinity. Leaf tissue was harvested at 0, 6, 12, 24 and 48 h after end of treatments for subsequent analyses. The results showed that salt stress could induce 'PAL1' expression (12 to 18 times) and subsequently increase 'PAL' activity (42%-45%) and total phenolic accumulation (35%-43%) in the early hours after stress treatment. These results provide new information about molecular phylogeny of these two Salvia species and phenylpropanoid pathway under salt stress." @default.
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- W2275702413 date "2015-07-01" @default.
- W2275702413 modified "2023-09-24" @default.
- W2275702413 title "Phenylalanine ammonia lyase isolation and functional analysis of phenylpropanoid pathway under salinity stress in Salvia species." @default.
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