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天然脲酶抑制剂可减轻疾病症状的严重程度,这取决于病原体的生存方式。

Natural Urease Inhibitors Reduce the Severity of Disease Symptoms, Dependent on the Lifestyle of the Pathogens.

作者信息

Aliyeva-Schnorr Lala, Schuster Carola, Deising Holger B

机构信息

Chair for Phytopathology and Plant Protection, Institute for Agricultural and Nutritional Sciences, Faculty of Natural Sciences III, Martin-Luther-University Halle-Wittenberg, Betty-Heimann-Str. 3, D-06120 Halle (Saale), Germany.

SKW Stickstoffwerke Piesteritz GmbH, Möllensdorfer Str. 13, D-06886 Lutherstadt Wittenberg, Germany.

出版信息

J Fungi (Basel). 2023 Jun 28;9(7):708. doi: 10.3390/jof9070708.

Abstract

The development of new anti-ureolytic compounds is of great interest due to the newly discovered role of urease inhibitors in crop protection. Purine degradation and the generation of ammonium by urease are required for the full virulence of biotrophic and hemibiotrophic fungal plant pathogens. Accordingly, chemicals displaying urease inhibitor activity may be used as a novel class of fungicides. Several urease inhibitors belonging to different chemical classes are known, and some compounds have been developed as urea fertilizer additives. We tested whether the natural urease inhibitors -benzoquinone (-HQ) and hydroquinone (HQ), as well as the synthetic inhibitors isopropoxy carbonyl phosphoric acid amide (iCPAA), benzyloxy carbonyl phosphoric acid amide (bCPAA), and dipropyl-hexamino-1,3 diphosphazenium chloride (DDC), prevent or delay plant infection caused by pathogens differing in lifestyles and host plants. -BQ, HQ, and DCC not only protected maize from infection by the hemibiotroph , but also inhibited the infection process of biotrophs such as the wheat powdery mildew fungus f. sp. and the broad bean rust fungus . Interestingly, the natural quinone-based compounds even reduced the symptom severity of the necrotrophic fungi, i.e., the grey mold pathogen and the Southern Leaf Spot fungus , to some extent. The urease inhibitors -BQ, HQ, and DCC interfered with appressorial penetration and confirmed the appropriateness of urease inhibitors as novel fungicidal agents.

摘要

由于脲酶抑制剂在作物保护中的新发现作用,新型抗脲解化合物的开发备受关注。生物营养型和半生物营养型真菌植物病原体的完全致病性需要嘌呤降解和脲酶产生铵。因此,具有脲酶抑制剂活性的化学物质可作为一类新型杀菌剂。已知几种属于不同化学类别的脲酶抑制剂,一些化合物已被开发为尿素肥料添加剂。我们测试了天然脲酶抑制剂——对苯醌(-HQ)和氢醌(HQ),以及合成抑制剂异丙氧基羰基磷酸酰胺(iCPAA)、苄氧基羰基磷酸酰胺(bCPAA)和二丙基 - 己氨基 - 1,3 - 二磷氮烯氯化物(DDC),是否能预防或延缓由生活方式和寄主植物不同的病原体引起的植物感染。-BQ、HQ和DCC不仅保护玉米免受半生物营养型病原体的感染,还抑制了生物营养型病原体如小麦白粉病菌f. sp.和蚕豆锈病菌的感染过程。有趣的是,基于天然醌的化合物甚至在一定程度上降低了坏死营养型真菌即灰霉病原体和南方叶斑病菌的症状严重程度。脲酶抑制剂 -BQ、HQ和DCC干扰了附着胞的穿透,并证实了脲酶抑制剂作为新型杀菌剂的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9874/10381680/068282579fcf/jof-09-00708-g001.jpg

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