首页> 外文期刊>Journal of applied microbiology >Tolerance and biodegradation of m-toluate by Scots pine, a mycorrhizal fungus and fluorescent pseudomonads individually and under associative conditions
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Tolerance and biodegradation of m-toluate by Scots pine, a mycorrhizal fungus and fluorescent pseudomonads individually and under associative conditions

机译:苏格兰松树,一种菌根真菌和荧光假单胞菌对甲基甲苯酚的耐受性和生物降解作用

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摘要

The tolerance to, and degradation of m-toluate by Scots pine (Pinus sylvestris), a symbiotic mycorrhizal fungus (Suillus bovinus) and Pseudomonas fluorescens strains, with or without m-toluate-degrading capacity, was determined individually and in all symbiotic/ associative plant-microbe combinations. Fungal survival on medium with m-toluate was increased in co-culture with the degradative bacterial strains on agar plates (up to 0.02%, w/v). When fungi were grown in mycorrhizal association with Scots pine seedlings in test-tube microcosms containing expanded clay pellets and growth media, the fungus was able to withstand m-toluate concentrations up to 2.0%, w/v in all treatments. The seedling tolerance remained unaltered regardless of the presence or absence of mycorrhizal fungi or biodegradative bacteria. Reduction in m-toluate levels was only detected in treatments inoculated with bacterial strains harbouring TOL catabolic plasmids. The plant and fungus, alone or in mycorrhizal symbiosis, were unable to cleave m-toluate. The presence of easily available plant-derived carbon sources did not impede m-toluate degradation by the bacteria in the mycorrhizosphere.
机译:单独确定和以所有共生/缔合能力确定苏格兰松树(Pinus sylvestris),共生菌根真菌(Suillus bovinus)和荧光假单胞菌菌株对间甲苯磺酸盐的耐受性和降解。植物-微生物组合。与琼脂平板上的降解细菌菌株共培养时,具有间甲苯磺酸盐的培养基上的真菌存活率增加(最高0.02%,w / v)。当真菌在含有膨胀黏土颗粒和生长培养基的试管微观世界中以菌根与松树幼苗的菌根结合生长时,在所有处理中,真菌均能承受高达2.0%w / v的间甲苯二酚浓度。无论是否存在菌根真菌或生物降解细菌,幼苗的耐受性均保持不变。仅在用带有TOL分解代谢质粒的细菌菌株接种的治疗中,检测到间甲苯磺酸盐水平的降低。单独或在菌根共生中的植物和真菌无法裂解间甲苯二酚。容易获得的植物来源的碳源的存在并不妨碍菌根根际细菌对间甲苯二酚的降解。

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