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Synthesis and Biological Activity of Novel (Z)- and (E)-Verbenone Oxime Esters

机译:新型(Z)-和(E)-马鞭酮肟肟酯的合成及生物活性

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摘要

Twenty-seven (Z)- and (E)-verbenone derivatives bearing an oxime ester moiety were designed and synthesized in search of novel bioactive molecules. Their structures were confirmed by UV-Vis, FTIR, NMR, ESI-MS, and elemental analysis. The antifungal and herbicidal activities of the target compounds were preliminarily evaluated. As a result, compound (E)->4n (R = β-pyridyl) exhibited excellent antifungal activity with growth inhibition percentages of 92.2%, 80.0% and 76.3% against Alternaria solani, Physalospora piricola, and Cercospora arachidicola at 50 µg/mL, showing comparable or better antifungal activity than the commercial fungicide chlorothalonil with growth inhibition of 96.1%, 75.0% and 73.3%, respectively, and 1.7−5.5-fold more growth inhibition than its stereoisomer (Z)->4n (R = β-pyridyl) with inhibition rates of 22.6%, 28.6% and 43.7%, respectively. In addition, seven compounds displayed significant growth inhibition activity of over 90% against the root of rape (Brassica campestris) at 100 µg/mL, exhibiting much better herbicidal activity than the commercial herbicide flumioxazin with a 63.0% growth inhibition. Among these seven compounds, compound (E)->4n (R = β-pyridyl) inhibited growth by 92.1%, which was 1.7-fold more than its stereoisomer (Z)->4n (R = β-pyridyl) which inhibited growth by 54.0%.
机译:为了寻找新的生物活性分子,设计并合成了带有肟酯部分的二十七(Z)-和(E)-马来酮衍生物。通过UV-Vis,FTIR,NMR,ESI-MS和元素分析确认了它们的结构。初步评估了目标化合物的抗真菌和除草活性。结果,化合物(E)-> 4n (R =β-吡啶基)表现出优异的抗真菌活性,其对黑链格孢菌,皮氏假单胞菌和Cercospora的生长抑制率分别为92.2%,80.0%和76.3%。 arachidicola的浓度为50 µg / mL,显示出与市售杀菌剂百菌清相当或更好的抗真菌活性,生长抑制分别为96.1%,75.0%和73.3%,比其立体异构体(Z)高1.7-5.5倍-<强> 4n (R =β-吡啶基),抑制率分别为22.6%,28.6%和43.7%。此外,七种化合物在100 µg / mL时对油菜(甘蓝)的根部表现出超过90%的显着生长抑制活性,比具有63.0%生长抑制作用的商品除草剂氟米嗪具有更好的除草活性。在这七种化合物中,化合物(E)-> 4n (R =β-吡啶基)抑制92.1%的生长,是其立体异构体(Z)-> 4n的1.7倍(R =β-吡啶基),抑制了54.0%的生长。

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