首页> 外文期刊>World Journal of Microbiology & Biotechnology >Functional diversity of the microbial community in the rhizosphere of chickpea grown in diesel fuel-spiked soil amended with Trichoderma ressei using sole-carbon-source utilization profiles
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Functional diversity of the microbial community in the rhizosphere of chickpea grown in diesel fuel-spiked soil amended with Trichoderma ressei using sole-carbon-source utilization profiles

机译:利用唯一碳源利用曲线修正在掺有柴油木霉的柴油加标土壤中生长的鹰嘴豆根际微生物群落功能多样性

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摘要

Present study describes chickpea (Cicer arietinum) growth, microbial activity and community composition in a soil samples spiked with 0, 20 (LCD) and 80 g (HCD) diesel/kg soils, amended with Trichoderma ressei. T. ressei had stimulatory effect on the plant growth parameters as compared with un-inoculated control chickpea plant. Root length, shoot length, plant dry weight and chlorophyll content enhanced 128, 31, 46, 79%, respectively, as compared over the un-inoculated control. At LCD in the presence of T. ressei chickpea root length, shoot length, plant dry weight and chlorophyll content was maximum indicating that at this concentration of diesel chickpea plants could grow very well and T. ressei amendment had synergistic effect. Effect on microbial population was most evident at HCD and resulted in 4.84 log unit reduction of heterogeneous bacterial population, as compared with LCD which caused reduction of 2.8 log unit, compared with non-diesel spiked control soil. Impact of diesel on soil was somewhat lessened in the presence of T. ressei. Our results indicated that application of diesel improved the organic matter status of soils which was in turn reflected in the higher dehydrogenase activity. This could be due to diesel being a good source of hydrocarbon readily available for microbial activity. The structure of the microbial community in rhizosphere was analyzed through the sole-carbon-source utilization profiles using ECO Biolog microplates. Significant differences were found among the diversity and evenness indices on effect of diesel on chickpea rhizosphere microflora in presence and absence of T. ressei, based on Tukey's test (at P = 0.05). Principal component analysis of substrate source utilization pattern on Biolog Eco plates by chickpea rhizosphere microflora in presence and absence of T. ressei was determined. Distinct resolution of soil microbial communities in the presence of either diesel or, T. ressei observed thus revealed differences in the microbial metabolic profiles for the different treatments. Our results demonstrated that characteristics of the dynamics in microbial communities complemented well with organic matter status of soils and dehydrogenase activity. The technique highlighted the usefulness of this parameter for ecological indication of land use change in diesel contaminated ecosystems.
机译:本研究描述了掺有0、20(LCD)和80 g(HCD)柴油/ kg土壤的鹰嘴豆(Cicer arietinum)生长,微生物活性和群落组成,并用木霉菌(Trichoderma ressei)修正。与未接种的对照鹰嘴豆植物相比,水芹T. ressei对植物生长参数具有刺激作用。与未接种的对照相比,根长,苗长,植物干重和叶绿素含量分别提高了128%,31%,46%,79%。在LCD上存在水芹T.ressei鹰嘴豆根长,枝条长度,植物干重和叶绿素含量最大,表明在此浓度下,柴油中的鹰嘴豆植物可以很好地生长,水芹T.eisei修饰具有协同作用。在HCD上,对微生物种群的影响最明显,与LCD相比,与非柴油加标对照土壤相比,异种细菌种群减少4.84 log单位,而LCD导致减少2.8 log单位。在水芹的存在下,柴油对土壤的影响有所减轻。我们的结果表明,柴油的使用改善了土壤的有机质状况,这反过来又反映了较高的脱氢酶活性。这可能是由于柴油是易于用于微生物活动的良好碳氢化合物来源。使用ECO Biolog微孔板通过唯一碳源利用概况分析了根际微生物群落的结构。根据Tukey检验,在存在和不存在ress.ressei的条件下,柴油对鹰嘴豆根际微生物区系的影响的多样性和均匀度指标之间存在显着差异(P = 0.05)。确定存在和不存在鹰嘴豆的情况下鹰嘴豆根际微生物对Biolog Eco平板上底物源利用模式的主成分分析。在观察到柴油或T.ressei存在下土壤微生物群落的不同分辨率,从而揭示了不同处理方法的微生物代谢谱差异。我们的结果表明,微生物群落的动力学特征与土壤有机质状况和脱氢酶活性相辅相成。该技术强调了该参数对于柴油污染的生态系统中土地利用变化的生态指示的有用性。

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