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Isolation and characterization of plant synergistic bacteria capable of degrading xenobiotics from oil spillage sites

机译:能够降解漏油场所中异种生物的植物协同细菌的分离与鉴定

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摘要

Oil spillage sites primarily contain various types of hydrocarbons, such as linear chain, polycyclic, and aromatic compounds, posing several detrimental effects on plants. Results from our previous study showed an alteration of various metabolomic parameters, indirectly resulting in an observable decline of growth in the mung seedlings upon incubation with phenol, toluene, xylene, and hexane. This study evaluates the role of these compounds upon plant growth and focusses to mitigate the effect of the same, using some isolated plant synergistic bacteria. We isolated Proteus sp., Streptococcus sp., and Enterococcus sp., and tested the synergism of them in mung seedlings (Vigna radiata) by hydroponics. Treatment with the above-mentioned compounds significantly reduced the root and shoot length of the seedlings when compared to the control. The bacterial treatment helped in reducing the adversity due to the xenobiotic insult, by improving the root shoot length of the treated seedlings. Proteus sp. was found to be the most promising among other isolates. In another experiment, plasmid profiling of the bacterial isolates was done, yielding a band of 4.5 kb common for all, serving as a clue to be the most probable plasmid responsible for the degradation of the compounds. Results from this study clearly indicate that Proteus sp. can be explored further for its plant synergism and xenobiotic degradative capability to exploit its potential in oil spillage land reclamation and establishing vegetation.
机译:漏油场所主要包含各种类型的碳氢化合物,例如直链,多环和芳族化合物,对植物造成若干不利影响。我们先前研究的结果表明,各种代谢组学参数发生了变化,从而在与苯酚,甲苯,二甲苯和己烷孵育后间接导致了绿豆幼苗生长的明显下降。这项研究评估了这些化合物对植物生长的作用,并着重于使用一些分离的植物协同细菌来减轻它们的影响。我们分离了变形杆菌属,链球菌属和肠球菌属,并通过水培法测试了它们在绿化幼苗(Vigna radiata)中的协同作用。与对照相比,用上述化合物处理显着减少了幼苗的根和茎长。细菌处理通过改善处理过的幼苗的根茎长度,有助于减少由于异种生物侵害而引起的逆境。变形杆菌被发现是其他菌株中最有前途的。在另一个实验中,对细菌分离物进行了质粒分析,产生了一条共有4.5kb的条带,可以作为提示最有可能导致化合物降解的质粒的线索。这项研究的结果清楚地表明Proteus sp。可以进一步探讨其在植物中的协同作用和异种生物降解能力,从而发挥其在溢油土地复垦和建立植被方面的潜力。

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