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金属植物修复过程中与基因改良杨树相关的真菌群落。

Fungal community associated with genetically modified poplar during metal phytoremediation.

机构信息

Nakdong River Environment Research Center, National Institute of Environmental Research, Goryeong-gum 717-873, Republic of Korea.

出版信息

J Microbiol. 2012 Dec;50(6):910-5. doi: 10.1007/s12275-012-2491-9. Epub 2012 Dec 30.

Abstract

Due to the increasing demand for phytoremediation, many transgenic poplars have been developed to enhance the bioremediation of heavy metals. However, structural changes to indigenous fungal communities by genetically modified organisms (GMO) presents a major ecological issue, due to the important role of fungi for plant growth in natural environments. To evaluate the effect of GM plant use on environmental fungal soil communities, extensive sequencing-based community analysis was conducted, while controlling the influence of plant clonality, plant age, soil condition, and harvesting season. The rhizosphere soils of GM and wild type (WT) poplars at a range of growth stages were sampled together with unplanted, contaminated soil, and the fungal community structures were investigated by pyrosequencing the D1/D2 region of the 28S rRNA gene. The results show that the overall structure of the rhizosphere fungal community was not significantly influenced by GM poplars. However, the presence of GM specific taxa, and faster rate of community change during poplar growth, appeared to be characteristic of the GM plant-induced effects on soil-born fungal communities. The results of this study provide additional information about the potential effects of GM poplar trees aged 1.5-3 years, on the soil fungal community.

摘要

由于对植物修复的需求不断增加,已经开发出许多转基因杨树,以增强重金属的生物修复。然而,由于真菌在自然环境中对植物生长的重要作用,转基因生物(GMO)对土著真菌群落的结构变化带来了一个主要的生态问题。为了评估转基因植物的使用对环境真菌土壤群落的影响,进行了广泛的基于测序的群落分析,同时控制了植物克隆性、植物年龄、土壤条件和收获季节的影响。在一系列生长阶段,与未种植的污染土壤一起采集了转基因和野生型(WT)杨树的根际土壤,并通过对 28S rRNA 基因的 D1/D2 区进行焦磷酸测序来研究真菌群落结构。结果表明,根际真菌群落的整体结构不受转基因杨树的显著影响。然而,存在 GM 特有分类群,以及在杨树生长过程中群落变化的更快速度,似乎是 GM 植物对土壤真菌群落产生影响的特征。本研究的结果提供了更多关于 1.5-3 岁转基因杨树对土壤真菌群落潜在影响的信息。

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