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Response of arbuscular mycorrhizal fungi and phosphorus solubilizing bacteria to remediation abandoned solid waste of coal mine

机译:丛枝菌根真菌和磷溶解细菌对修复的响应废弃煤矿固体废物

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摘要

Abstract Coal is the vital resource of energy in China, but abandoned coal ash and gangue lead to the degradation of vegetation cover and reduce soil quality. Both arbuscular mycorrhizal fungi (AMF) and phosphate solubilizing bacteria (PSB) play a key role in biogeochemical cycle such as soil organic matter decomposition, nutrition release, and energy flow. To improve and reclamation the soil quality and ecological efficiency of the coal mining waste, we investigated the effects of an AMF strain (Glomus mosseae) and a PSB strain (Pantoesstewarti) on phytate mineralization and subsequent transfer to the host plant (Medicago sativa L.) using a two-compartment microcosm with a central 30 mm nylon mesh barrier. The results showed that significantly higher available P (AP), above ground biomass (AGB) and underground biomass (UGB) were in combined inoculation of AMF-PSB than other treatments in root and hyphae compartment. The microbial inoculum of the AMF or PSB had a significant influence on soil acid phosphatase activities (ACP). AMF-PSB enhanced phytate mineralization, improved plant biomass. AP and ACP positively influenced the AGB and UGB. AMF-PSB could be used as bioinoculant to enhance sustainable production of the plant in abandoned solid waste of coal mine.
机译:摘要煤炭是能源在中国的重要资源,而且废弃的粉煤灰,煤矸石导致植被的退化和减少土壤质量。这两种丛枝菌根真菌(AMF)和解磷细菌(PSB)发挥生物地球化学循环过程中起关键作用,如土壤有机质分解,养分释放,能量流。为了提高复垦土壤质量和煤矿废弃物的生态效率,我们调查的AMF应变对植酸矿化和随后转移到寄主植物(紫花苜蓿的影响(球囊霉)和PSB应变(Pantoesstewarti) )使用二室缩影与中央30毫米尼龙网状屏障。结果表明,较高的显著可用P(AP),地上生物量(AGB),地下生物量(UGB)为在AMF-PSB的组合接种比在根和菌丝隔间其他治疗。该AMF或PSB的菌剂对土壤酸性磷酸酶活性(ACP)一个显著影响。 AMF-PSB增强肌醇六磷酸盐的矿化,改善的植物生物质。 AP和ACP积极影响的AGB和UGB。 AMF-PSB可以作为bioinoculant加强可持续生产的煤矿废弃固体废物的工厂。

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