Suppr超能文献

来自火山南蛇藤的木栓烷三萜类化合物作为光合抑制剂

Friedelane triterpenes from Celastrus vulcanicola as photosynthetic inhibitors.

作者信息

Torres-Romero David, King-Díaz Beatriz, Strasser Reto J, Jiménez Ignacio A, Lotina-Hennsen Blas, Bazzocchi Isabel L

机构信息

Instituto Universitario de Bio-Orgánica "Antonio González", Universidad de La Laguna, Avenida Astrofísico Francisco Sánchez 2, 38206 La Laguna, Tenerife, Spain.

出版信息

J Agric Food Chem. 2010 Oct 27;58(20):10847-54. doi: 10.1021/jf1022115. Epub 2010 Sep 27.

Abstract

Five friedelane triterpenoids, epifriedelinol (1), friedelin (2), canophyllol (3), pulpononic acid (4) and 3-oxo-29-hydroxyfriedelane (5), were isolated from Celastrus vulcanicola (Celastraceae), and were identified by spectroscopic methods, comparison with authentic samples and reported data. In the search for potential herbicides, compounds 1-5 were evaluated for their photosynthetic inhibitory activity. Compound 1 acts as an energy transfer inhibitor, interacting and enhancing the light-activated Mg(2+)-ATPase, while 3 behaves as a Hill reaction inhibitor. The in vivo assays indicated that 1 and 3 act as selective postemergence herbicides at 100 μM by reducing biomass production in the weed Physalis ixocarpa. Moreover, results from Chl a fluorescence transients in leaves of Lolium perenne and P. ixocarpa suggest that both compounds affect photosynthesis efficiency of the chloroplasts as a response to a process of detoxification and repair. Thus, 1 and 3 reduce biomass by more complex mechanisms than only the damaging of the photosynthetic apparatus.

摘要

从火山南蛇藤(卫矛科)中分离出了五种木栓烷三萜类化合物,表木栓醇(1)、木栓酮(2)、南美茶醇(3)、普尔波诺酸(4)和3-氧代-29-羟基木栓烷(5),并通过光谱方法、与标准品比较及已报道数据对其进行了鉴定。在寻找潜在除草剂的过程中,对化合物1-5的光合抑制活性进行了评估。化合物1作为能量转移抑制剂,与光激活的Mg(2+)-ATP酶相互作用并增强其活性,而化合物3则作为希尔反应抑制剂。体内试验表明,化合物1和3在100μM时可作为选择性苗后除草剂,通过减少杂草酸浆的生物量产量来发挥作用。此外,黑麦草和酸浆叶片叶绿素a荧光瞬变的结果表明,这两种化合物都会影响叶绿体的光合作用效率,作为解毒和修复过程的一种反应。因此,化合物1和3减少生物量的机制比仅仅破坏光合机构更为复杂。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验