首页> 外文期刊>Scientific reports. >Biosynthetic investigation of γ-lactones in Sextonia rubra wood using in situ TOF-SIMS MS/MS imaging to localize and characterize biosynthetic intermediates
【24h】

Biosynthetic investigation of γ-lactones in Sextonia rubra wood using in situ TOF-SIMS MS/MS imaging to localize and characterize biosynthetic intermediates

机译:利用原位TOF-SIMS MS / MS成像技术定位和表征生物合成中间体,对红枫木中γ-内酯的生物合成研究

获取原文
       

摘要

Molecular analysis by parallel tandem mass spectrometry (MS/MS) imaging contributes to the in situ characterization of biosynthetic intermediates which is crucial for deciphering the metabolic pathways in living organisms. We report the first use of TOF-SIMS MS/MS imaging for the cellular localization and characterization of biosynthetic intermediates of bioactive γ-lactones rubrynolide and rubrenolide in the Amazonian tree Sextonia rubra (Lauraceae). Five γ-lactones, including previously reported rubrynolide and rubrenolide, were isolated using a conventional approach and their structural characterization and localization at a lateral resolution of ~400?nm was later achieved using TOF-SIMS MS/MS imaging analysis. 2D/3D MS imaging at subcellular level reveals that putative biosynthetic γ-lactones intermediates are localized in the same cell types (ray parenchyma cells and oil cells) as rubrynolide and rubrenolide. Consequently, a revised metabolic pathway of rubrynolide was proposed, which involves the reaction between 2-hydroxysuccinic acid and 3-oxotetradecanoic acid, contrary to previous studies suggesting a single polyketide precursor. Our results provide insights into plant metabolite production in wood tissues and, overall, demonstrate that combining high spatial resolution TOF-SIMS imaging and MS/MS structural characterization offers new opportunities for studying molecular and cellular biochemistry in plants.
机译:通过并行串联质谱(MS / MS)成像进行的分子分析有助于原位表征生物合成中间体,这对于解密活生物体的代谢途径至关重要。我们报道了首次使用TOF-SIMS MS / MS成像技术对亚马逊树Sextonia rubra(Lauraceae)中的生物活性γ-内酯rubrynolide和rubrenolide的生物合成中间体进行细胞定位和表征。使用常规方法分离了5种γ-内酯,包括先前报道的布丁内酯和卢布奈德,后来通过TOF-SIMS MS / MS成像分析实现了其结构表征和侧向分辨率为〜400?nm的定位。在亚细胞水平上的2D / 3D MS成像表明,假定的生物合成γ-内酯中间体与卢比诺利德和卢比诺利德位于相同的细胞类型(薄壁实质细胞和油细胞)中。因此,提出了一种经修订的红霉素内酯代谢途径,该途径涉及2-羟基琥珀酸与3-氧代十四烷酸之间的反应,这与先前的研究表明单一的聚酮化合物前体相反。我们的结果提供了对木质组织中植物代谢产物产生的见解,总体而言,表明结合了高空间分辨率TOF-SIMS成像和MS / MS结构表征为研究植物中的分子和细胞生物化学提供了新的机会。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号