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Improved application of natural forest product terpene for discovery of potential botanical fungicide

机译:改进天然林产品萜烯对潜在植物杀菌剂发现的应用

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The development of efficient terpenoid fungicides and exploration of its action mechanism is of great significance for the prevention and control of agricultural diseases. To confirm our previous findings on naturally occurring antifungal products with ecofriendly features, 40 terpene-based acyl-thiourea derivatives were synthesized and structurally characterized by H-1 NMR, ESI-MS, elemental analysis and IR spectroscopy. Their inhibitory activities against several fungi, including Boirytis cinerea, Scierotinia sclerotiorwn and Thanatephorus cucumeris, were assessed by the growth rate method and the in vivo antifungal effects of these compounds against Thanatephorus cucumeris were performed evaluated using detached leaves. The majority of these compounds showed moderate to marked antifungal activities. Of all compounds, myrtenyl-based acylthiourea (8i) displayed more pronounced antifungal activity against Thanatephorus cucumeris (EC50 = 0.412 mg/L) compared with carbendazim (EC50 = 0.436 mg/L). In vivo antifungal of compound 8i efficiency against Thanatephorus cucumeris was also excellent. Treatment with 8i of Thanatephorus cucumeris resulted in significantly influenced morphology, markedly increased cell membrane permeability, and reduced ATP amounts and ATPase activity in comparison with untreated controls. A total of four descriptors linking structures and antifungal activities against Thanatephorus cucumeris were determined, including q(max)(S), HOMO-LUMO, log MS and q(max)(N), and employed to build a quantitative structure-activity relationship (QSAR) model (R-2 = 0.9673). Preliminary structure-activity relationship (SAR) and QSAR assessments revealed that electronic and steric effects as well as energy differences of various molecules markedly affected antifungal effects. These findings provide novel insights into the modes of action of terpene-based acyl-thiourea derivatives, which could constitute potential substitutes for current fungicides or leads for novel antifungal agent development.
机译:高效萜类杀菌剂的发展与其动作机制的探索对于预防和控制农业疾病具有重要意义。为了确认我们以前发生的Ecofriendly特征天然发生的抗真菌产品的发现,通过H-1 NMR,ESI-MS,元素分析和IR光谱合成40萜烯类酰基硫脲衍生物和结构特征。通过脱离的叶片进行通过生长速率方法和这些化合物的增长速率方法和患者对这些化合物的体内抗真菌效应进行评估它们的抑制作用。这些化合物中的大部分显示出中度至明显的抗真菌活性。在所有化合物中,与Carbendazim(EC50 = 0.436mg / L)相比,髓催化基酰硫脲(8i)显示出对Thanatephorus Cucumeris(EC50 = 0.412mg / L)的更明显的抗真菌活性。体内化合物8I抗真菌效率对杨霉素Cucumeris也是优异的。与未经处理的对照相比,用8I次碱性磷酸葡萄球菌治疗导致显着影响的形态,显着增加的细胞膜渗透性和降低的ATP量和ATP酶活性。确定共有四种描述符的结构和抗真菌蛋白酶的抗真菌活动,包括Q(MAX),Homo-Lumo,Log MS和Q(MAX)(n),并采用来构建定量结构 - 活动关系(QSAR)模型(R-2 = 0.9673)。初步结构 - 活动关系(SAR)和QSAR评估显示电子和空间效应以及各种分子的能量差异显着影响抗真菌效应。这些发现提供了对萜烯类酰基 - 硫脲衍生物的作用方式的新颖见解,这可能构成目前杀菌剂或新型抗真菌剂发育的潜在替代品。

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