Joo Se-Hwan, Jang Mun-Seok, Kim Min Kyun, Lee Ji-Eun, Kim Seong-Ki
Department of Life Science, Chung-Ang University, Seoul 156-756, Republic of Korea.
Department of Life Science, Chung-Ang University, Seoul 156-756, Republic of Korea.
Phytochemistry. 2015 Mar;111:84-90. doi: 10.1016/j.phytochem.2014.11.006. Epub 2014 Nov 26.
A crude enzyme solution was prepared from young rice seedlings, and the metabolism of C29-brassinosteroids identified from the seedlings was examined. When 28-homoteasterone was added as a substrate, 28-homotyphasterol, teasterone, and 26-nor-28-homoteasterone were characterized as enzyme products by GC-MS/SIM analysis. With 28-homotyphasterol, 28-homoteasterone, typhasterol, 28-homocastasterone, and 26-nor-28-homotyphasterol were formed and identified as products. When 28-homocastasterone was used, castasterone and 26-nor-28-homocastasterone were identified as products. Together with the reduced biological activity of C29-brassinosteroids and their metabolites in the rice lamina inclination assay, these metabolic studies suggest a biosynthetic sequence, 28-homoteasterone↔28-homotyphasterol→28-homocastasterone for C29-brassinosteroid biosynthesis is connected to the biosynthetic sequence teasterone↔typhasterol→castasterone for C28-brassinosteroids by C-28 demethylation, i.e., in order to increase biological activity in the rice plant. Additionally, the C29-brassinosteroids seem to bio-degrade their C-26 demethylated C28-brassinosteroid analogs to reduce brassinosteroid activity in planta. In conclusion, the biosynthesis of C29-brassinosteroids is a likely alternative route to the biologically-active brassinosteroid, castasterone, in rice.
从水稻幼苗中制备粗酶溶液,并检测从幼苗中鉴定出的C29-油菜素甾醇的代谢情况。当添加28-高表油菜素内酯作为底物时,通过气相色谱-质谱/选择离子监测(GC-MS/SIM)分析,将28-高油菜素甾醇、表油菜素内酯和26-去甲-28-高表油菜素内酯鉴定为酶促产物。以28-高油菜素甾醇为底物时,形成并鉴定出28-高表油菜素内酯、28-高表油菜素甾醇、油菜素甾醇、28-高油菜素甾酮和26-去甲-28-高油菜素甾醇为产物。当使用28-高油菜素甾酮时,油菜素甾酮和26-去甲-28-高油菜素甾酮被鉴定为产物。结合水稻叶片倾斜试验中C29-油菜素甾醇及其代谢产物降低的生物活性,这些代谢研究表明,C29-油菜素甾醇生物合成的生物合成序列为28-高表油菜素内酯↔28-高油菜素甾醇→28-高油菜素甾酮,它通过C-28去甲基化与C28-油菜素甾醇的生物合成序列表油菜素内酯↔油菜素甾醇→油菜素甾酮相连,即目的是提高水稻植株中的生物活性。此外,C29-油菜素甾醇似乎会对其C-26去甲基化的C28-油菜素甾醇类似物进行生物降解,以降低植物体内油菜素甾醇的活性。总之,C29-油菜素甾醇的生物合成可能是水稻中产生具有生物活性的油菜素甾酮的另一条途径。