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Novel 1,3,4-Oxadiazole Derivatives Containing a Cinnamic Acid Moiety as Potential Bactericide for Rice Bacterial Diseases

机译:含有肉桂酸部分的新型1,3,4-氧代唑衍生物作为水稻细菌疾病的潜在杀菌剂

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摘要

Rice bacterial leaf blight and leaf streak are two important bacterial diseases of rice, which can result in yield loss. Currently, effective antimicrobials for rice bacterial diseases are still lacking. Thus, to develop highly effective and low-risk bactericides, 31 novel 1,3,4-oxadiazole derivatives containing a cinnamic acid moiety were designed and synthesized. Bioassay results demonstrated that all compounds exhibited good antibacterial activities in vitro. Significantly, compounds 5r and 5t showed excellent antibacterial activities against Xanthomonas oryzae pv. oryzae (Xoo) and X. oryzae pv. oryzicola (Xoc), with the 50% effective concentration (EC50) values of 0.58 and 0.34, and 0.44 and 0.20 μg/mL, respectively. These compounds were much better than thiodiazole copper (123.10 and 161.52 μg/mL) and bismerthiazol (85.66 and 110.96 μg/mL). Moreover, compound 5t had better protective and curative activities against rice bacterial leaf blight and leaf streak than thiodiazole copper and bismerthiazol in vivo. Simultaneously, the in vivo efficacy of the compounds was demonstrated by real-time quantitative PCR to quantify bacterial titers. In addition, a three-dimensional quantitative structure⁻activity relationship model was created and presented good predictive ability. This work provides support for 1,3,4-oxadiazole derivatives containing a cinnamic acid moiety as a potential new bactericide for rice bacterial diseases.
机译:稻米细菌叶枯和叶片条纹是两种重要的水稻细菌疾病,这可能导致产量损失。目前,仍然缺乏稻米细菌疾病的有效抗微生物剂。因此,为了开发高效和低风险的杀菌剂,设计并合成了含有肉桂酸部分的31种新的1,3,4-氧代唑衍生物。生物测定结果表明,所有化合物在体外都表现出良好的抗菌活性。显着地,化合物5R和5T显示出对Xanthomonas oryzae PV的优异抗菌活性。 oryzae(xoo)和X. oryzae pv。 Oryzicola(XOC),分别为50%的有效浓度(EC 50)0.58和0.34,0.44和0.20μg/ ml。这些化合物比氧亚噻唑铜(123.10和161.52μg/ ml)和偶氮醇(85.66和110.96μg/ ml)好得多。此外,化合物5T对水稻细菌叶枯生叶和叶片线的愈合活性比体内的氧化钛铜和铋硫醇具有更好的防护和疗效。同时,通过实时定量PCR来证明化合物的体内疗效以量化细菌滴度。此外,创建了三维定量结构诱导关系模型并呈现了良好的预测能力。该作品为含有肉桂酸部分的1,3,4-氧代唑衍生物提供支持,作为水稻细菌疾病的潜在新杀菌剂。

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