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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Microbial competition, lack in macronutrients, and acidity as main obstacles to the transfer of basidiomycetous ground fungi into (organically or heavy-metal contaminated) soils.
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Microbial competition, lack in macronutrients, and acidity as main obstacles to the transfer of basidiomycetous ground fungi into (organically or heavy-metal contaminated) soils.

机译:微生物竞争,缺乏大量营养素和酸度是将担子菌基真菌转移到(被有机或重金属污染的)土壤中的主要障碍。

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摘要

Non-symbiotic soil microorganisms which have been expensively engineered or selected to support plant nutrition, control root diseases, degrade xenobiotic hydrocarbons, and repress or stimulate heavy metal uptake of plants fail to survive in target soils. This prompted studies into the role of chemistry and microbial pre-colonization of 23 top soils in long-term growth of basidiomycetes. Fungi are seen as auxiliary agents in soil remediation. Untreated soils (1.5 L) were colonized by lignocellulose preferring ground fungi such as Agaricus aestivalis, A. bisporus, A. campestris, A. edulis, A. macrocarpus, A. porphyrizon, Agrocybe dura, A. praecox, Clitocybe sp., Coprinus comatus, Lepista nuda, L. sordida, Macrolepiota excoriata, M. procera, Stropharia coronilla, and S. rugoso-annulata. Spawn mycelia of fairy-ring-type fungi such as Agaricus arvensis, A. fissuratus, A. langei, A. lanipes, A. pilatianus, Lyophyllum sp., and Marasmius oreades died back in contact with non-sterile soils. Fungal growth correlated positively with the soils' C(t) Ca K Mg content and negatively with microbial CO(2) evolution. Pasteurization and autoclaving increased mycelial growth and life span in soils pH 6.6-8.2. Growth of pH-sensitive but not of pH-tolerant fungi was inhibited on the Ca-deficient soils pH 4-4.4 (-5.6) and was not improved by autoclaving. The pretended fungistasis of acid soils to pH-sensitive fungi was controlled by N P K mineral (pH not altering) or organic (pH increasing) fertilizing as well as by neutralization with NaOH or CaCO(3). Although microbial competition was mortal to 33% of the fungal mycelia inserted into natural unplanted soils, further seriously antifungal effects beyond those pretended by low pH conditions and shortage in mineral macronutrients were not identified. ((c) 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim).
机译:非共生土壤微生物已经过昂贵的工程设计或选择以支持植物营养,控制根部疾病,降解异种生物碳氢化合物以及抑制或刺激植物对重金属的吸收,但这些微生物无法在目标土壤中存活。这促使人们对化学和微生物预先定殖在23种表层土壤的长期生长中的作用进行了研究。真菌被视为土壤修复的辅助剂。未处理的土壤(1.5 L)被木质纤维素定殖,优选地面真菌,如姬松茸,双孢蘑菇,菜油菜,可食蘑菇,大果鲤鱼,紫菜,土壤杆菌,硬皮土壤杆菌,praecox,Clitocybe sp。,鸡腿菇昏迷,Lepista nuda,L. sordida,Macrolepiota excoriata,M. procera,Stropharia coronilla和S. rugoso-annulata。仙女环型真菌,例如姬松茸,纤溶假单胞菌,蓝皮拟南芥,蓝皮拟南芥,羽衣曲霉,Lyophyllum sp。和Marasmius oreades的菌丝体在与非无菌土壤接触后死亡。真菌的生长与土壤的C(t)Ca K Mg含量呈正相关,与微生物的CO(2)演化呈负相关。在pH值为6.6-8.2的土壤中,巴氏杀菌和高压灭菌可增加菌丝体的生长和寿命。在缺钙的土壤pH 4-4.4(-5.6)上,pH敏感而不是pH耐受真菌的生长受到抑制,高压灭菌法不能改善其生长。酸性土壤对pH敏感真菌的假装真菌控制是通过N P K矿物(pH不变)或有机(pH升高)施肥以及用NaOH或CaCO中和来控制的(3)。尽管微生物竞争对插入天然未种植土壤中的真菌菌丝体而言是致命的33%,但除低pH条件和缺乏矿物质大量营养素所假装的真菌菌丝外,还没有发现更严重的抗真菌作用。 ((c)2007 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)。

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