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香精油杀线虫作用的综合分析

A Comprehensive and Analysis of Nematicidal Action of Essential Oils.

作者信息

Kundu Aditi, Dutta Anirban, Mandal Abhishek, Negi Lalit, Malik Monika, Puramchatwad Rajshekhar, Antil Jyoti, Singh Anupama, Rao Uma, Saha Supradip, Kumar Rajesh, Patanjali Neeraj, Manna Suman, Kumar Anil, Dash Sukanta, Singh P K

机构信息

Division of Agricultural Chemicals, ICAR-Indian Agricultural Research Institute, New Delhi, India.

Division of Nematology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

出版信息

Front Plant Sci. 2021 Jan 8;11:614143. doi: 10.3389/fpls.2020.614143. eCollection 2020.

Abstract

Nematicidal potential of essential oils (EOs) has been widely reported. Terpenoids present in most of the essential oils have been reported responsible for their bioactivity though very less is known about their modes of action. In the present study, an screening of nine Eos, namely, (OEO), (MTEO), (CEO), (TEO), (AEO), (MREO), (CNEO), (WEO), and (PEO) against revealed OEO, CNEO, and TEO as most effective with LC 39.37, 43.22, and 76.28 μg ml respectively. EOs had varying compositions of mono- and sesquiterpenes determined by gas chromatography-mass spectrometry (GC-MS) analysis. The molecular interactions screening of major EO constituents and the seven selected target proteins of the nematode indicated highest binding affinity of geraniol-ODR1 (odorant response gene 1) complex (ΔG = -36.9 kcal mol), due to extensive H-bonding, hydrophobic and π-alkyl interactions. The relative binding affinity followed the order: geraniol-ODR1 > β-terpineol-ODR1 > citronellal-ODR1 > -limonene-ODR1 > γ-terpinene-ODR1. Taken together, the cumulative and computational bioefficacy analysis related to the chemoprofiles of EOs provides useful leads on harnessing the potential of EOs as bionematicides. The insight on biochemical ligand-target protein interactions described in the present work will be helpful in logical selection of biomolecules and essential oils for development of practically viable bionematicidal products.

摘要

精油的杀线虫潜力已被广泛报道。大多数精油中存在的萜类化合物被认为与其生物活性有关,尽管对其作用方式知之甚少。在本研究中,对九种精油进行了筛选,即橙叶油(OEO)、薄荷油(MTEO)、肉桂叶油(CEO)、百里香油(TEO)、茴芹油(AEO)、月桂叶油(MREO)、菖蒲油(CNEO)、艾草油(WEO)和胡椒薄荷油(PEO),以对抗松材线虫,结果显示OEO、CNEO和TEO最为有效,其LC50分别为39.37、43.22和76.28μg/ml。通过气相色谱 - 质谱联用(GC-MS)分析确定,精油具有不同的单萜和倍半萜组成。对主要精油成分与线虫的七种选定靶蛋白进行的分子相互作用筛选表明,香叶醇 - ODR1(气味反应基因1)复合物具有最高的结合亲和力(ΔG = -36.9 kcal/mol),这是由于广泛的氢键、疏水和π-烷基相互作用。相对结合亲和力顺序为:香叶醇 - ODR1 > β-萜品醇 - ODR1 > 香茅醛 - ODR1 > α-柠檬烯 - ODR1 > γ-萜品烯 - ODR1。综上所述,与精油化学特征相关的累积生物学和计算生物有效性分析为利用精油作为生物杀线虫剂的潜力提供了有用线索。本工作中描述的对生化配体 - 靶蛋白相互作用的深入了解将有助于合理选择生物分子和精油,以开发实际可行的生物杀线虫产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d664/7820373/95736574b356/fpls-11-614143-g001.jpg

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