TY - JOUR
T1 - Modulation of Tropane Alkaloids' Biosynthesis and Gene Expression by Methyl Jasmonate in Datura stramonium L.: A Comparative Analysis of Scopolamine, Atropine, and Hyoscyamine Accumulation
AU - Rasi, Arash
AU - Sabokdast, Manijeh
AU - Naghavi, Mohammad Reza
AU - Jariani, Parisa
AU - Dedicova, Beata
PY - 2024
Y1 - 2024
N2 - Scopolamine and atropine are two medicinal alkaloids derived from Datura stramonium L. with anticholinergic properties. This study explored how methyl jasmonate (MJ), a plant growth regulator, affects the biosynthesis and accumulation of these alkaloids in different plant tissues. The expression levels of putrescine N-methyltransferase (PMT), tropinone reductase I (TR1), and hyoscyamine 6 beta-hydroxylase (h6h), three critical enzymes in the biosynthetic pathway, were also analyzed. The results indicated that MJ at 150 mu M increased the production of scopolamine and atropine in both leaves and roots, while MJ at 300 mu M had an adverse effect. Furthermore, MJ enhanced the expression of PMT, TR1, and h6h genes in the roots, the primary site of alkaloid synthesis, but not in the leaves, the primary site of alkaloid storage. These results imply that MJ can be applied to regulate the biosynthesis and accumulation of scopolamine and atropine in D. stramonium, thereby improving their production efficiency.
AB - Scopolamine and atropine are two medicinal alkaloids derived from Datura stramonium L. with anticholinergic properties. This study explored how methyl jasmonate (MJ), a plant growth regulator, affects the biosynthesis and accumulation of these alkaloids in different plant tissues. The expression levels of putrescine N-methyltransferase (PMT), tropinone reductase I (TR1), and hyoscyamine 6 beta-hydroxylase (h6h), three critical enzymes in the biosynthetic pathway, were also analyzed. The results indicated that MJ at 150 mu M increased the production of scopolamine and atropine in both leaves and roots, while MJ at 300 mu M had an adverse effect. Furthermore, MJ enhanced the expression of PMT, TR1, and h6h genes in the roots, the primary site of alkaloid synthesis, but not in the leaves, the primary site of alkaloid storage. These results imply that MJ can be applied to regulate the biosynthesis and accumulation of scopolamine and atropine in D. stramonium, thereby improving their production efficiency.
KW - alkaloid biosynthesis
KW - Datura stramonium L.
KW - gene expression
KW - leaves and roots
KW - alkaloid biosynthesis
KW - Datura stramonium L.
KW - gene expression
KW - leaves and roots
UR - https://res.slu.se/id/publ/130402
U2 - 10.3390/life14050618
DO - 10.3390/life14050618
M3 - Journal article
C2 - 38792639
SN - 2075-1729
VL - 14
JO - Life
JF - Life
IS - 5
M1 - 618
ER -