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1.
Sci Rep ; 11(1): 16913, 2021 08 19.
Article in English | MEDLINE | ID: mdl-34413433

ABSTRACT

Sandalwood (Santalum album L.) is highly valued for its fragrant heartwood and extracted oil. Santalols, which are the main components of that oil, are terpenoids, and these are biosynthesized via the mevalonic acid (MVA) pathway. Mevalonate kinase (MK) and phosphomevalonate kinase (PMK) are key enzymes in the MVA pathway. Little is known about the genes that encode MK and PMK in S. album or the mechanism that regulates their expression. To isolate and identify the functional genes involved in santalol biosynthesis in S. album, an MK gene designated as SaMK, and a PMK gene designated as SaPMK, were cloned from S. album. The sequences of these genes were analyzed. A bioinformatics analysis was conducted to assess the homology of SaMK and SaPMK with MK and PMK genes from other plants. The subcellular localization of SaMK and SaPMK proteins was also investigated, as was the functional complementation of SaMK and SaPMK in yeast. Our results show that the full-length cDNA sequences of SaMK and SaPMK were 1409 bp and 1679 bp long, respectively. SaMK contained a 1381 bp open reading frame (ORF) encoding a polypeptide of 460 amino acids and SaPMK contained a 1527 bp ORF encoding a polypeptide of 508 amino acids. SaMK and SaPMK showed high homology with MK and PMK genes of other plant species. Functional complementation of SaMK in a MK-deficient mutant yeast strain YMR208W and SaPMK in a PMK-deficient mutant yeast strain YMR220W confirmed that cloned SaMK and SaPMK cDNA encode a functional MK and PMK, respectively, mediating MVA biosynthesis in yeast. An analysis of tissue expression patterns revealed that SaMK and SaPMK were constitutively expressed in all the tested tissues. SaMK was highly expressed in young leaves but weakly expressed in sapwood. SaPMK was highly expressed in roots and mature leaves, but weakly expressed in young leaves. Induction experiments with several elicitors showed that SaMK and SaPMK expression was upregulated by methyl jasmonate. These results will help to further study the role of MK and PMK genes during santalol biosynthesis in S. album.


Subject(s)
Gene Expression Regulation, Plant , Genes, Plant , Phosphotransferases (Alcohol Group Acceptor)/genetics , Phosphotransferases (Phosphate Group Acceptor)/genetics , Santalum/enzymology , Santalum/genetics , Acetates/pharmacology , Amino Acid Sequence , Cloning, Molecular , Computational Biology , Cyclopentanes/pharmacology , DNA, Complementary/genetics , Evolution, Molecular , Gene Expression Profiling , Gene Expression Regulation, Plant/drug effects , Organ Specificity/drug effects , Organ Specificity/genetics , Oxylipins/pharmacology , Phosphotransferases (Alcohol Group Acceptor)/chemistry , Phosphotransferases (Alcohol Group Acceptor)/metabolism , Phosphotransferases (Phosphate Group Acceptor)/chemistry , Phosphotransferases (Phosphate Group Acceptor)/metabolism , Phylogeny , Plant Leaves/drug effects , Plant Leaves/genetics , Plant Proteins/chemistry , Plant Proteins/genetics , Plant Proteins/metabolism , Plant Roots/drug effects , Plant Roots/genetics , Plant Shoots/drug effects , Plant Shoots/genetics , Protein Domains , RNA, Messenger/genetics , RNA, Messenger/metabolism , Saccharomyces cerevisiae/metabolism , Santalum/drug effects , Subcellular Fractions/metabolism
2.
BMC Plant Biol ; 19(1): 115, 2019 Mar 28.
Article in English | MEDLINE | ID: mdl-30922222

ABSTRACT

BACKGROUND: It is well known that aromatic essential oils extracted from the heartwood of Santalum album L. have wide economic value. However, little is known about the role of terpenoids in response to various adverse environmental stresses as other plants do in the form of signals during plant-environment interactions. RESULTS: In this study, trace amounts of volatiles consisting of α-santalene, epi-ß-santalene, ß-santalene, α-santalol, ß-santalol, (E)-α-bergamotene, (E)-ß-farnesene and ß-bisabolene were found in the leaves of mature S. album trees. We identified more than 40 candidate terpene synthase (TPS) unigenes by mining publicly-available RNA-seq data and characterized the enzymes encoded by three cDNAs: one mono-TPS catalyzes the formation of mostly α-terpineol, and two multifunctional sesqui-TPSs, one of which produces (E)-α-bergamotene and sesquisabinene as major products and another which catalyzes the formation of (E)-ß-farnesene, (E)-nerolidol and (E,E)-farnesol as main products. Metabolite signatures and gene expression studies confirmed that santalol content is closely related with santalene synthase (SaSSY) transcripts in heartwood, which is key enzyme responsible for santalol biosynthesis. However, the expression of three new SaTPS genes differed significantly from SaSSY in the essential oil-producing heartwood. Increased activities of antioxidant enzymes, superoxide dismutase, catalase, peroxidase and ascorbate peroxidase, were detected in different tissues of S. album plants after applying 1 mM methyl jasmonate (MeJA) and 1 mM salicylic acid (SA), or exposure to 4°C, 38°C and high light intensity. MeJA and SA dramatically induced the expression of SaTPS1 and SaTPS2 in leaves. SaTPS1 to 3 transcripts were differentially activated among different tissues under adverse temperature and light stresses. In contrast, almost all SaSSY transcripts decreased in response to these environmental stresses, unlike SaTPS1 to 3. CONCLUSIONS: Multifunctional enzymes were biochemically characterized, including one chloroplastic mono-TPS and two cytosolic sesqui-TPSs in sandalwood. Our results suggest the ecological importance of these three new SaTPS genes in defensive response to biotic attack and abiotic stresses in S. album.


Subject(s)
Alkyl and Aryl Transferases/genetics , Plant Proteins/genetics , Santalum/physiology , Stress, Physiological/genetics , Acetates/pharmacology , Alkyl and Aryl Transferases/metabolism , Cyclopentanes/pharmacology , Gene Expression Regulation, Plant/drug effects , Light , Multigene Family , Oxylipins/pharmacology , Phylogeny , Plant Leaves/chemistry , Plant Leaves/metabolism , Plant Proteins/metabolism , Salicylic Acid/pharmacology , Santalum/drug effects , Santalum/genetics , Temperature , Terpenes/analysis , Terpenes/chemistry , Terpenes/metabolism , Volatile Organic Compounds/analysis , Volatile Organic Compounds/chemistry
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