M. V. Hapon, J. Boiteux, M. A. Fernández, G. Lucero, M. F. Silva, P. Pizzuolo
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引用次数: 9
摘要
多食性植物病原菌灰霉病菌(Botrytis cinerea)在多种条件下都能快速生长,并在植物的不同组织中产生灰色霉菌。由于其自适应的可塑性,抗性菌株给其化学控制带来了困难。因此,新的管理策略和天然化合物的使用可能是重要的控制选择。本文旨在研究阿根廷四种原生植物提取物及其部分酚类化合物对绿僵菌生物药物的潜在应用价值。以水植物水提取物为研究对象,分别为落叶松(Larrea divaricata)、苦艾草(Prosopis strombulifera)、苦艾草(Tessariaabsinthioides)和小茴香(Schinus molle var. areira)。研究了植物粗提物及其最重要的酚类化合物对菌丝生长的抑制作用。用紫外检测毛细管区带电泳(CZE)分析酚类化合物,并用主成分分析(主成分分析)对酚类化合物及其对真菌的生物活性进行统计分析。酵母提取物对菌丝生长无抑制作用,而苦艾草提取物对菌丝生长有刺激作用。当植物提取物浓度为100 mg/mL时,散叶蝉的抑制作用达到50%以上。
Effect of phenolic compounds present in Argentinian plant extracts on mycelial growth of the plant pathogen Botrytis cinerea Pers.
The polyphagous plant pathogen Botrytis cinerea has theability of growing fast under several conditions, and producing greymoulds in different plant tissues. Because of its adaptive plasticity,resistant strains have made difficult their chemical control. Therefore,new strategies of management and the use of natural compoundscould be important control alternatives. The aim of this work was tostudy the potential value of four Argentine native plant extracts andsome of its phenolic compounds as biodrugs on B. cinerea. Aqueousplant extracts of Larrea divaricata, Prosopis strombulifera, Tessariaabsinthioides and Schinus molle var. areira, were used. The capability toinhibit the mycelial growth was studied using either the crude plantextract or same its most important, detected phenolic compounds.Phenolic compounds were analyzed by Capillary Zone Electrophoresis(CZE) with UV detection, and then statistically analyzed byPrincipal Component Analysis to correlate them and their biologicalactivity against the fungus. Prosopis strombulifera and T. absinthioidesextracts did not inhibit mycelial growth while S. molle stimulated it.Larrea divaricata demonstrated inhibition above 50% at plant extractsconcentrations of 100 mg/mL.
期刊介绍:
Phyton-International Journal of Experimental Botany is an international journal that publishes on the broadest aspects of plant biology and ecology. The journal welcomes the original and exciting submissions that provide new and fundamental insights into the origins, development, and function of plants from the molecular to the whole organism and its interactions within the biotic and abiotic environment. Phyton-International Journal of Experimental Botany publishes outstanding research in the plant and ecology sciences, especially in the areas of plant physiology and biochemistry, plant metabolism, plant ecology and evolution, as well as those making use of synthetic, modeling, bioinformatics, and -omics tools. Manuscripts submitted to this journal must not be under simultaneous consideration or have been published elsewhere, either in part or in whole.