沙地环境条件对平菇生长的影响

Emmanuel Salifu , Giuseppe Di Rauso Simeone , Giacomo Russo , Maria A. Rao , Gianfranco Urciuoli , Grainne El Mountassir
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引用次数: 0

摘要

平菇(Pleurotus ostreatus)是一种腐养真菌,已被提出用于修复土壤中的有机污染物,最近还被用于改变颗粒土壤的水力和力学行为。真菌生物技术的原位性能将受到真菌生长和相关生物化学活性的控制,这些活性可以在土壤中实现。本研究考察了环境条件(温度、饱和度)、底物类型(木质纤维素和废咖啡渣)和浓度对沙中P. ostreatus菌丝生长的影响。此外,还研究了生长/生存指标(呼吸、麦角甾醇浓度)和酶活性(漆酶、锰过氧化物酶)的演变。温度对沙中postreatus的生长有很强的影响:观察到在低温(例如5°C)下生长迟缓,而在高温(例如35°C)下生长受阻。在非常低的饱和度(Sr=0%和1.2%)下,没有观察到生长,这表明存在支持postreatus生长所需的临界含水量。在径向测定含水量的中程范围内,青霉的生长情况相似。然而,由于对氧气有效性的要求,饱和土壤条件下的生长仅限于空气-水气氛。低底物浓度(1% ~ 5%)下,绿僵菌的径向生长较高,而增加底物含量会进一步抑制径向生长,但肉眼观察表明真菌生物量密度增加。这些结果对于了解青霉在特定场地条件下生长的可行性和设计成功的处理策略具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of environmental conditions on the growth of Pleurotus ostreatus in sand
Pleurotus ostreatus, a saprotrophic fungus, has been proposed for the remediation of organic contaminants in soils and more recently for modifying the hydraulic and mechanical behaviour of granular soils. The in situ performance of fungal-based biotechnologies will be controlled by the fungal growth and associated biochemical activity that can be achieved in soil. In this study, the influence of environmental conditions (temperature, degree of saturation), substrate type (lignocellulose and spent coffee grounds) and concentration on the mycelium growth of P. ostreatus in sand are investigated. Furthermore, the evolution of growth/survival indicators (respiration, ergosterol concentration) and enzymatic activity (laccase, manganese peroxidase) are investigated. Temperature was shown to have a strong influence on the growth of P.ostreatus in sand: growth was observed to be delayed at low temperatures (e.g. 5 °C), whereas growth was prevented at high temperatures (e.g. 35 °C). No growth was observed at very low degrees of saturation (Sr=0% and 1.2%), indicating there is a critical water content required to support P.ostreatus growth. Within the mid-range of water contents tested radially, growth of P.ostreatus was similar. However, growth under saturated soil conditions was restricted to the air-water atmosphere due to the requirement for oxygen availability. Low substrate concentrations (1%–5%) resulted in high radial growth of P.ostreatus, whereas increasing substrate content further acted to reduce radial growth, but visual observations indicated that fungal biomass density increased. These results are important for understanding the feasibility of P.ostreatus growth under specific site conditions and for the design of successful treatment strategies.
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