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Rhizosphere microflora of plants used for the phytoremediation of bitumen-contaminated soil

机译:用于植物修复沥青污染土壤的植物的根际微生物区系

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The microbial communities and their degradative potential in rhizospheres of alfalfa (Medicago sativa) and reed (Phragmites australis) and in unplanted soil in response to bitumen contamination of soil were studied in pot experiments. According to the results of fluorescence microscopy, over a period of 27 months. bitumen contamination of soil reduced the total number of microorganisms more significantly (by 75%) in unplanted than in rhizosphere soil (by 42% and 7% for reed and alfalfa, respectively) and had various effects on some important physiological groups of microorganisms Such as actinomycetes as well as nitrogen-fixing, nitrifying, denitrifying, ammonifying, phosphate-solubilizing, sulphur-oxidizing, cellulolytic and hydrocarbon-degrading microorganisms. The changes in the physiological structure of the microbial community under bitumen contamination were found to hinge on not merely the presence of plants but also their type. It was Doted that the rhizosphere microflora of alfalfa was less inhibited by hydrocarbon pollution and had a higher degradative potential than the rhizosphere microflora of reed.
机译:在盆栽试验中研究了苜蓿(Medicago sativa)和芦苇(Phragmites australis)的根际以及未种植土壤中土壤微生物对土壤沥青污染的响应。根据荧光显微镜检查的结果,持续了27个月。土壤中的沥青污染使未种植的微生物总数比根际土壤显着减少(减少了75%)(芦苇和苜蓿分别减少了42%和7%),并对某些重要的生理微生物群体产生了各种影响,例如放线菌以及固氮,硝化,反硝化,氨化,磷酸盐增溶,硫氧化,纤维素分解和碳氢化合物降解微生物。发现在沥青污染下微生物群落的生理结构变化不仅取决于植物的存在,还取决于植物的类型。可以肯定的是,苜蓿的根际微生物区系比芦苇的根际微生物区系受到烃污染的抑制作用较小,并且具有更高的降解潜力。

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