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Dynamic changes of bacterial community under the influence of bacterial-feeding nematodes grazing in prometryne contaminated soil.

机译:细菌进食线虫影响的土壤中的metry素污染,土壤中细菌群落的动态变化。

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Microcosm experiments were carried out to study the effects of bacterial-feeding nematodes and prometryne on soil bacterial communities in contaminated soil. Prometryne (5 or 10 mg kg-1 dry soil, that is, P5 or P10) and bacterial-feeding nematodes (5 or 10 individuals g-1 dry soil, that is, N5 or N10), singly and in combination (P5N5, P5N10, P10N5, P10N10), were added to a nematode-free soil. An uncontaminated nematode-free soil was studied for comparison (Control). Bacterial-feeding nematode grazing boosted soil enzyme activities in contaminated soils, thus speeding up prometryne degradation. In the initial stage of the experiment, prometryne enhanced the soil enzyme activities too, but served the opposite purpose later. Denaturing gradient gel electrophoresis (DGGE) analysis indicated that prometryne contamination and nematode grazing over the incubation period exerted an obvious impact on Species richness (S), Shannon-Wiener index (H') and Evenness (EH) of soil bacteria, which increased initially, then decreased and increased again later. The cluster analysis of DGGE profiles showed that the similarity of soil bacterial communities in all treatments with indigenous microbes, P5, P5N5, P5N10, P10, P10N5, and P10N10 and the Control was 75%, 44%, 78% and 49% at Day 0, Day 8, Day 18 and Day 30, respectively. Compared to the Control, DGGE profiles displayed a varying characteristic bands pattern in all treatments over the incubation period with certain bands present in the treatments while not in the Control and vice versa, suggesting that bacterial-feeding nematode grazing and prometryne contamination affected soil bacterial communities evidently. Consequently, when added to contaminated soil, bacterial-feeding nematodes can contribute to restoration of contaminated sites by degrading toxic compounds like prometryne through enhanced microbial activity.
机译:进行了微观实验,研究了细菌摄食线虫和pro丸对污染土壤中细菌群落的影响。丙炔(5或10 mg kg -1 干燥土壤,即P5或P10)和以细菌为食的线虫(5或10个人g -1 干燥土壤) (分别是N5或N10),(P5N5,P5N10,P10N5,P10N10)组合添加到不含线虫的土壤中。研究了未污染的无线虫土壤以进行比较(对照)。进食细菌的线虫放牧提高了受污染土壤中土壤酶的活性,从而加快了metry素的降解。在实验的初始阶段,前metry烯也增强了土壤酶的活性,但后来却达到了相反的目的。变性梯度凝胶电泳(DGGE)分析表明,潜伏期中的metry烯污染和线虫放牧对物种丰富度(S),香农-维纳指数(H')和均匀度(E H ),最初增加,然后减少,之后又增加。 DGGE图谱的聚类分析表明,在所有处理中,土壤细菌群落与本地微生物,P5,P5N5,P5N10,P10,P10N5和P10N10的相似性在对照中分别为75%,44%,78%和49% 0,第8天,第18天和第30天。与对照相比,DGGE谱在潜伏期的所有处理中均显示出不同的特征带模式,其中某些带出现在处理中,而对照中则没有,反之亦然,这表明细菌摄食线虫放牧和丙三酮污染会影响土壤细菌群落。显然。因此,当添加到受污染的土壤中时,以细菌为食的线虫可通过增强的微生物活性降解有毒化合物如丙三酮,从而有助于恢复受污染的地点。

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