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首页> 外文期刊>Journal of Chemical Ecology >Influence of Autoclaved Fungal Materials on Spearmint (Mentha spicata L.) Growth, Morphogenesis, and Secondary Metabolism
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Influence of Autoclaved Fungal Materials on Spearmint (Mentha spicata L.) Growth, Morphogenesis, and Secondary Metabolism

机译:高压灭菌真菌材料对留兰香(Mentha spicata L.)生长,形态发生和次级代谢的影响

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The influence of autoclaved fungal materials such as culture filtrate, freeze-dried mycelium (FDM), mycelium suspension, and spore suspension (SS) on the growth, morphogenesis, and carvone production of spearmint (Mentha spicata L.) plants was studied. Fungal materials were either applied as a drench or spray on the plants. Spearmint plants (cv. “294099”) drenched with SS (1 × 108 spores/ml) of Trichoderma reesei showed no significant differences in leaf numbers, root numbers, or shoot numbers compared with nontreated controls. However, significantly higher fresh weights and carvone levels were observed in plants drenched with T. reesei SS compared with the untreated controls. Fungal materials derived from Aspergillus sp., Fusarium graminearum, F. sporotrichoides, Penicillium sp., P. acculeatum, Rhizopus oryzae, and T. reesei were sprayed on spearmint foliage. F. graminearum, F. sporotrichoides, or R. oryzae elicited no enhanced growth, morphogenesis, or secondary metabolism responses. The best growth and morphogenesis responses were obtained employing Aspergillus sp., Penicillium sp., or T. reesei foliar sprays. For example, spearmint cv. “557807” plants sprayed with 100 mg/l FDM T. reesei isolate NRRL 11460 C30 stimulated higher fresh weights (75%), shoot numbers (39%), leaf numbers (57%), and root numbers (108%) compared with untreated plants. This effect was not dose-dependent because similar growth and morphogenesis responses were obtained by testing 10, 100, or 1000 mg/l FDM concentrations. Carvone levels in fungal-treated foliar-sprayed plants were comparable to nontreated controls. However, total carvone levels per plant were higher in fungal-treated plants because of their increased fresh weight.
机译:研究了高压灭菌真菌材料如培养滤液,冻干菌丝体(FDM),菌丝体悬浮液和孢子悬浮液(SS)对留兰香(Mentha spicata L.)植物的生长,形态发生和香芹酮产量的影响。将真菌材料浸湿或喷洒在植物上。与未处理的对照相比,用里氏木霉的SS(1×108 孢子/ ml)浸透的留兰香植物(cv。“ 294099”)在叶数,根数或枝数上没有显着差异。然而,与未处理的对照相比,在浸入里氏木霉SS的植物中观察到显着更高的鲜重和香芹酮水平。将衍生自曲霉属,禾谷镰刀菌,孢子孢霉,青霉菌,积雪草,米根霉和里氏木霉的真菌材料喷在留兰香叶子上。 F.禾谷镰刀菌,F. sporotrichoides或米曲霉不会引起增强的生长,形态发生或次级代谢反应。使用曲霉菌,青霉菌或里氏木霉叶面喷雾剂可获得最佳的生长和形态发生响应。例如,留兰香cv。喷施100 mg / l FDM里氏木霉NRRL 11460 C30的“ 557807”植物刺激的鲜重(75%),枝数(39%),叶数(57%)和根数(108%)高于未经处理的植物。此作用不是剂量依赖性的,因为通过测试10、100或1000 mg / l FDM浓度可获得相似的生长和形态发生反应。真菌处理的叶面喷洒植物中的香芹酮水平与未处理的对照相当。但是,由于真菌的新鲜重量增加,每株植物中的总香芹酮水平较高。

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