首页> 外文期刊>Environmental Pollution >Effect Of Birch (betula Spp.) And Associated Rhizoidal Bacteria On The Degradation Of Soil Polyaromatic Hydrocarbons, Pah-induced Changes In Birch Proteome And Bacterial Community
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Effect Of Birch (betula Spp.) And Associated Rhizoidal Bacteria On The Degradation Of Soil Polyaromatic Hydrocarbons, Pah-induced Changes In Birch Proteome And Bacterial Community

机译:桦木和相关根状细菌对土壤多环芳烃降解,Pah诱导的桦木蛋白质组和细菌群落变化的影响

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Two birch clones originating from metal-contaminated sites were exposed for 3 months to soils (sand-peat ratio 1:1 or 4:1) spiked with a mixture of polyaromatic hydrocarbons (PAHs; anthracene, fluo-ranthene, phenanthrene, pyrene). PAH degradation differed between the two birch clones and also by the soil type. The statistically most significant elimination (p ≤ 0.01), i.e. 88% of total PAHs, was observed in the more sandy soil planted with birch, the clearest positive effect being found with Betula pubescens clone on phenanthrene. PAHs and soil composition had rather small effects on birch protein complement. Three proteins with donal differences were identified: ferritin-like protein, auxin-induced protein and peroxidase. Differences in planted and non-planted soils were detected in bacterial communities by 16S rRNA T-RFLP, and the overall bacterial community structures were diverse. Even though both represent complex systems, trees and rhizoidal microbes in combination can provide interesting possibilities for bioremediation of PAH-polluted soils.
机译:将两个源自金属污染部位的桦树无性系暴露于土壤(砂皮比为1:1或4:1)中,掺加多芳烃(PAH;蒽,氟-蒽,菲,pyr)3个月。在两个桦树克隆之间,PAH降解也有所不同,并且土壤类型也不同。统计学上最显着的消除作用(p≤0.01),即总PAHs的88%,是在桦木种植的沙质土壤中观察到的,最明显的阳性作用是用耻骨桦(Betula pubescens)克隆对菲进行的。多环芳烃和土壤成分对桦树蛋白质补体的影响很小。鉴定出三种具有捐献差异的蛋白:类铁蛋白,生长素诱导蛋白和过氧化物酶。通过16S rRNA T-RFLP在细菌群落中检测到种植土壤和未种植土壤的差异,并且总体细菌群落结构各不相同。尽管两者都代表着复杂的系统,但树木和根状微生物的结合可以为PAH污染土壤的生物修复提供有趣的可能性。

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