Bakaeva Margarita, Kuzina Elena, Vysotskaya Lidiya, Kudoyarova Guzel, Arkhipova Tat'yana, Rafikova Gulnaz, Chetverikov Sergey, Korshunova Tat'yana, Chetverikova Dar'ya, Loginov Oleg
Ufa Institute of Biology, Ufa Federal Research Centre, Russian Academy of Sciences, Ufa 450054, Russia.
Plants (Basel). 2020 Mar 19;9(3):379. doi: 10.3390/plants9030379.
The phytoremediation of soil contaminated with petroleum oil products relies on co-operation between plants and rhizosphere bacteria, including the plant growth-promoting effect of the bacteria. We studied the capacity of strains of , selected as oil degraders, to produce plant hormones and promote plant growth. Strains with intermediate auxin production were the most effective in stimulating the seedling growth of seven plant species under normal conditions. Bacterial seed treatment resulted in about a 1.6-fold increase in the weight of barley seedlings, with the increment being much lower in other plant species. The strains 2.4-D and IB C7, characterized by highly efficient oil degradation (about 70%) and stable intermediate auxin production in the presence of oil, were selected for further study with barley. These strains increased the seed germination percentage approximately two-fold under 5% oil concentration in the soil, while a positive effect on further seedling growth was significant when the oil concentration was raised to 8%. This resulted in a 1.3-1.7-fold increase in the seedling mass after 7 days of growth, depending on the bacterial strain. Thus, strains of oil-degrading bacteria selected for their intermediate and stable production of auxin were found to be effective ameliorators of plant growth inhibition resulting from petroleum stress.
被石油产品污染土壤的植物修复依赖于植物与根际细菌之间的合作,包括细菌对植物生长的促进作用。我们研究了被选为石油降解菌的菌株产生植物激素和促进植物生长的能力。在正常条件下,生长素产量中等的菌株对刺激7种植物的幼苗生长最为有效。细菌种子处理使大麦幼苗重量增加了约1.6倍,而在其他植物物种中增加幅度要低得多。选择了以高效石油降解(约70%)和在有油存在时稳定产生中等生长素为特征的2.4-D和IB C7菌株,用于对大麦的进一步研究。在土壤含5%油浓度的情况下,这些菌株使种子发芽率提高了约两倍,而当油浓度提高到8%时,对幼苗进一步生长的积极影响显著。这导致生长7天后幼苗质量增加了1.3至1.7倍,具体取决于细菌菌株。因此,因能中等且稳定地产生生长素而被选择的石油降解细菌菌株,被发现是石油胁迫导致的植物生长抑制的有效改善剂。