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Characterization of root-associated fungi and reduced plant growth in soils from a New Mexico uranium mine

机译:新墨西哥州铀矿土壤中根系相关真菌和植物生长减少的表征

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摘要

Characterizing the diverse, root-associated fungi in mine wastes can accelerate the development of bioremediation strategies to stabilize heavy metals. Ascomycota fungi are well known for their mutualistic associations with plant roots and, separately, for roles in the accumulation of toxic compounds from the environment, such as heavy metals. We sampled soils and cultured root-associated fungi from blue grama grass (Bouteloua gracilis) collected from lands with a history of uranium (U) mining and contrasted against communities in nearby, off-mine sites. Plant root-associated fungal communities from mine sites were lower in taxonomic richness and diversity than root fungi from paired, off-mine sites. We assessed potential functional consequences of unique mine-associated soil microbial communities using plant bioassays, which revealed that plants grown in mine soils in the greenhouse had significantly lower germination, survival, and less total biomass than plants grown in off-mine soils but did not alter allocation patterns to roots versus shoots. We identified candidate culturable root-associated Ascomycota taxa for bioremediation and increased understanding of the biological impacts of heavy metals on microbial communities and plant growth.
机译:表征矿山废物中多种与根相关的真菌可以加速开发稳定重金属的生物修复策略。子囊菌属真菌以其与植物根系的共生关联而闻名,并且分别在环境中有毒化合物(如重金属)的积累中的作用而闻名。我们从有铀矿 (U) 开采历史的土地上采集了蓝禾本科草 (Bouteloua gracilis) 的土壤和培养的根系相关真菌,并与附近矿场外的社区进行了对比。来自矿场的植物根系相关真菌群落在分类丰富度和多样性方面低于来自成对矿场的根系真菌。我们使用植物生物测定法评估了独特的与矿山相关的土壤微生物群落的潜在功能后果,结果显示,与在矿山外土壤中生长的植物相比,在温室矿山土壤中生长的植物的发芽率、存活率和总生物量明显较低,但没有改变根与芽的分配模式。我们确定了用于生物修复的候选可培养根系相关子囊菌分类群,并增加了对重金属对微生物群落和植物生长的生物学影响的理解。

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