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Investigating the Modes of Action of the Antimicrobial Chalcones BC1 and T9A

机译:调查抗菌杀虫剂BC1和T9A的作用方式

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摘要

Xanthomonas citri subsp. citri (X. citri) is an important phytopathogen and causes Asiatic Citrus Canker (ACC). To control ACC, copper sprays are commonly used. As copper is an environmentally damaging heavy metal, new antimicrobials are needed to combat citrus canker. Here, we explored the antimicrobial activity of chalcones, specifically the methoxychalcone BC1 and the hydroxychalcone T9A, against X. citri and the model organism Bacillus subtilis. BC1 and T9A prevented growth of X. citri and B. subtilis in concentrations varying from 20 µg/mL to 40 µg/mL. BC1 and T9A decreased incorporation of radiolabeled precursors of DNA, RNA, protein, and peptidoglycan in X. citri and B. subtilis. Both compounds mildly affected respiratory activity in X. citri, but T9A strongly decreased respiratory activity in B. subtilis. In line with that finding, intracellular ATP decreased strongly in B. subtilis upon T9A treatment, whereas BC1 increased intracellular ATP. In X. citri, both compounds resulted in a decrease in intracellular ATP. Cell division seems not to be affected in X. citri, and, although in B. subtilis the formation of FtsZ-rings is affected, a FtsZ GTPase activity assay suggests that this is an indirect effect. The chalcones studied here represent a sustainable alternative to copper for the control of ACC, and further studies are ongoing to elucidate their precise modes of action.
机译:Xanthomonas Citri子公司。 Citri(X.Citri)是一种重要的植物病理学,导致亚洲柑橘类溃疡(ACC)。控制ACC,通常使用铜喷雾。随着铜是一种环保损伤的重金属,需要新的抗微生物来打击柑橘溃疡。在这里,我们探讨了杀菌剂的抗菌活性,特别是甲氧基甲酮Bc1和羟基甲酮T9a,对X. Citri和模型生物枯草芽孢杆菌。 BC1和T9A防止X. Citri和B.枯草芽孢杆菌的生长,其浓度从20μg/ ml到40μg/ ml变化。 BC1和T9A掺入X.Citri和B.枯草芽孢杆菌中的DNA,RNA,蛋白质和肽聚糖的放射性标记前体的掺入。两种化合物在X.Citri中的呼吸活性两者都会受到温和地影响的呼吸活性,但T9A强烈降低了B.枯草芽孢杆菌的呼吸活性。符合该发现,细胞内ATP在枯草芽孢杆菌对T9A处理时较大,而BC1增加了细胞内ATP。在X. Citri中,两种化合物导致细胞内ATP降低。细胞分裂似乎不会受到X. Citri的影响,虽然在B.枯草芽孢杆菌中,FTSZ环的形成受到影响,但FTSZ GTPase活性测定表明这是间接效应。这里研究的Chalcones代表了铜的可持续替代品,用于控制ACC,并正在进行进一步的研究来阐明其精确的行动方式。

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