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Effects of Compost on Colonization of Roots of Plants Grown in Metalliferous Mine Tailings, as Examined by Fluorescence In Situ Hybridization▿

机译:荧光原位杂交研究堆肥对含金属尾矿中植物根部定植的影响▿

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摘要

The relationship between compost amendment, plant biomass produced, and bacterial root colonization as measured by fluorescence in situ hybridization was examined following plant growth in mine tailings. Mine tailings can remain devoid of vegetation for decades after deposition due to a combination of factors that include heavy metal toxicity, low pH, poor substrate structure and water-holding capacity, and a severely impacted heterotrophic microbial community. Research has shown that plant establishment, a desired remedial objective to reduce eolian and water erosion of such tailings, is enhanced by organic matter amendment and is correlated with significant increases in rhizosphere populations of neutrophilic heterotrophic bacteria. Results show that for the acidic metalliferous tailings tested in this study, compost amendment was associated with significantly increased bacterial colonization of roots and increased production of plant biomass. In contrast, for a Vinton control soil, increased compost had no effect on root colonization and resulted only in increased plant biomass at high levels of compost amendment. These data suggest that the positive association between compost amendment and root colonization is important in the stressed mine tailings environment where root colonization may enhance both microbial and plant survival and growth.
机译:在矿山尾矿中植物生长后,检查了堆肥改良剂,植物生物量产生和细菌根部定植之间的关系,该关系通过荧光原位杂交进行了测量。由于多种因素的综合影响,矿山尾矿在沉积后数十年仍无植被,这些因素包括重金属毒性,pH低,基质结构和持水能力差以及异养微生物群落受到严重影响。研究表明,植物的建立是减少此类尾矿风沙和水蚀的一种理想的补救目标,通过有机物质的改良得以增强,并且与嗜中性异养细菌的根际种群显着增加有关。结果表明,对于本研究中测试的酸性含金属尾矿,堆肥改良与根部细菌定植显着增加和植物生物量产量增加相关。相反,对于Vinton对照土壤,堆肥增加对根部定植没有影响,而在堆肥改良水平高的情况下,只会增加植物生物量。这些数据表明,堆肥改良与根部定植之间的正相关性在紧张的矿山尾矿环境中很重要,在这种环境中,根部定植可能会提高微生物和植物的存活与生长。

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