Cheng Wenwen, Jia Guikang, Zhang Jie, Lin Limei, Cui Minghui, Zhang Duoduo, Jiao Mengying, Zhao Xuelei, Wang Shuo, Dong Jing, Xing Zhaobin
College of Life Sciences, North China University of Science and Technology, Tangshan 063210, China.
College of Agriculture and Food Engineering, Baise University, Baise 533000, China.
ACS Omega. 2022 May 4;7(19):16803-16816. doi: 10.1021/acsomega.2c01816. eCollection 2022 May 17.
(Crofton weed) is an invasive weed in more than 30 countries. It inhibits the growth of surrounding plants by releasing allelochemicals during its invasion. However, the synthetic pathways and molecular mechanisms of its allelochemicals have been rarely reported. In this study, the related genes and pathways of allelochemicals in were analyzed. Transcriptome analysis showed that differentially expressed genes (DEGs) were mainly enriched in the phenylpropanoid biosynthetic pathway and flavonoid biosynthetic pathway. Thirty-three DEGs involved in the synthesis of allelochemicals were identified, and 30 DEGs showed significant differences in blades and stems. Six allelochemicals were identified from blades and stems by ultraperformance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). Correlation analysis of genes and metabolites showed a strong correlation between the five genes and allelochemicals. In addition, this study supplemented the biosynthetic pathway of (HHO). It was found that acyclic sesquiterpene synthase (NES), δ-cadinene synthase (TPS), and cytochrome P450 (P450) were involved in the synthesis of HHO. These findings provide a dynamic spectrum consisting of allelochemical metabolism and a coexpression network of allelochemical synthesis genes in .
(飞机草)是一种在30多个国家的入侵杂草。它在入侵过程中通过释放化感物质抑制周围植物的生长。然而,其化感物质的合成途径和分子机制鲜有报道。在本研究中,对飞机草中化感物质的相关基因和途径进行了分析。转录组分析表明,差异表达基因(DEGs)主要富集在苯丙烷类生物合成途径和类黄酮生物合成途径中。鉴定出33个参与化感物质合成的DEGs,其中30个在叶片和茎中表现出显著差异。通过超高效液相色谱-串联质谱(UPLC-MS/MS)从叶片和茎中鉴定出6种化感物质。基因与代谢物的相关性分析表明,5个基因与化感物质之间存在强相关性。此外,本研究补充了飞机草(HHO)的生物合成途径。发现无环倍半萜烯合酶(NES)、δ-杜松烯合酶(TPS)和细胞色素P450(P450)参与了HHO的合成。这些发现提供了一个由化感物质代谢组成的动态图谱以及飞机草中化感物质合成基因的共表达网络。