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Sulfonamides identified as plant immune-priming compounds in high-throughput chemical screening increase disease resistance in Arabidopsis thaliana

机译:在高通量化学筛选中被确认为植物免疫引发化合物的磺酰胺可提高拟南芥的抗病性

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摘要

Plant activators are agrochemicals that protect crops from diseases by activating the plant immune system. To isolate lead compounds for use as practical plant activators, we screened two different chemical libraries composed of various bioactive substances by using an established screening procedure that can selectively identify immune-priming compounds. We identified and characterized a group of sulfonamide compounds – sulfameter, sulfamethoxypyridazine, sulfabenzamide, and sulfachloropyridazine – among the various isolated candidate molecules. These sulfonamide compounds enhanced the avirulent Pseudomonas-induced cell death of Arabidopsis suspension cell cultures and increased disease resistance in Arabidopsis plants against both avirulent and virulent strains of the bacterium. These compounds did not prevent the growth of pathogenic bacteria in minimal liquid media at 200 μM. They also did not induce the expression of defense-related genes in Arabidopsis seedlings, at least not at 24 and 48 h after treatment, suggesting that they do not act as salicylic acid analogs. In addition, although sulfonamides are known to be folate biosynthesis inhibitors, the application of folate did not restore the potentiation effects of the sulfonamides on pathogen-induced cell death. Our data suggest that sulfonamides potentiate Arabidopsis disease resistance by their novel chemical properties.
机译:植物激活剂是通过激活植物免疫系统来保护农作物免受疾病侵害的农药。为了分离用作实际植物激活剂的先导化合物,我们通过使用既定的筛选程序筛选了由各种生物活性物质组成的两个不同的化学文库,该筛选程序可以选择性地识别免疫引发化合物。我们鉴定并鉴定了各种分离的候选分子中的一组磺酰胺化合物–磺胺盐计,磺胺甲氧基哒嗪,磺胺苯甲酰胺和磺胺氯哒嗪。这些磺酰胺化合物增强了拟南芥悬浮细胞培养物的无毒假单胞菌诱导的细胞死亡,并提高了拟南芥植物对细菌的无毒力和强毒力的抗病性。这些化合物在200μM的最小液体培养基中不能阻止病原菌的生长。他们也没有诱导拟南芥幼苗中防御相关基因的表达,至少在处理后的24和48小时没有诱导,这表明它们不充当水杨酸类似物。另外,尽管已知磺酰胺是叶酸的生物合成抑制剂,但是叶酸的应用不能恢复磺酰胺对病原体诱导的细胞死亡的增强作用。我们的数据表明,磺胺类药物具有新颖的化学特性,可增强拟南芥的抗病性。

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