Vicedo Begonya, de la O Leyva María, Flors Víctor, Finiti Ivan, Del Amo Gemma, Walters Dale, Real Maria Dolores, García-Agustín Pilar, González-Bosch Carmen
Fisiología Vegetal, Departamento de Ciencias Experimentales, Campus Riu Sec E.S.T.C.E, Universitat Jaume I, 12071 Castellón, Spain.
Arch Microbiol. 2006 Jan;184(5):316-26. doi: 10.1007/s00203-005-0048-6. Epub 2005 Oct 29.
The in vitro and in vivo antifungal activity of adipic acid monoethyl ester (AAME) on the necrotrophic pathogen Botrytis cinerea has been studied. This chemical effectively controlled this important phytopathogen, inhibited spore germination and mycelium development at non-phytotoxic concentrations. The effectiveness of AAME treatment is concentration-dependent and influenced by pH. Spore germination in the presence of AAME is stopped at a very early stage, preventing germ tube development. In addition, cytological changes such as retraction of the conidial cytoplasm in the fungus are observed. AAME was also found to act on membrane integrity, affecting permeability without exhibiting lytic activity, as described previously for other antifungal compounds. Polyamine content in the mycelium of B. cinerea was also affected in response to AAME treatment, resulting in putrescine reduction and spermine accumulation similar to a number of antifungal agents. Microscopic observation of treated conidia after inoculation on tomato leaves suggested that inhibited spores are not able to attach to and penetrate the leaf. Finally, AAME completely suppressed the grey mould disease of tomato fruits under controlled inoculation conditions, providing evidence for its efficacy in a biological context and for the potential use of this chemical as an alternative fungicide treatment.
已对己二酸单乙酯(AAME)对坏死营养型病原菌灰葡萄孢的体外和体内抗真菌活性进行了研究。这种化学物质能有效控制这种重要的植物病原菌,在无植物毒性的浓度下抑制孢子萌发和菌丝体发育。AAME处理的效果取决于浓度,并受pH值影响。在AAME存在的情况下,孢子萌发在很早阶段就会停止,从而阻止芽管发育。此外,还观察到真菌中分生孢子细胞质收缩等细胞学变化。如先前针对其他抗真菌化合物所描述的那样,还发现AAME作用于膜完整性,影响通透性但不表现出裂解活性。灰葡萄孢菌丝体中的多胺含量也因AAME处理而受到影响,导致腐胺减少和精胺积累,这与许多抗真菌剂的情况类似。对接种在番茄叶片上的处理分生孢子进行显微镜观察表明,受抑制的孢子无法附着并穿透叶片。最后,在可控接种条件下,AAME完全抑制了番茄果实的灰霉病,为其在生物学环境中的功效以及这种化学物质作为替代杀菌剂处理的潜在用途提供了证据。