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Does co-inoculation of Lactuca serriola with endophytic and arbuscular mycorrhizal fungi improve plant growth in a polluted environment?

机译:是否与内科霉菌和丛枝菌根真菌共同接种乳酸血清醇,从而改善污染环境中的植物生长?

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Phytoremediation of polluted sites can be improved by co-inoculation with mycorrhizal and endophytic fungi. In this study, the effects of single- and co-inoculation of Lactuca serriola with an arbuscular mycorrhizal (AM) fungus, Rhizoglomus intraradices, and endophytic fungi, Mucor sp. or Trichoderma asperellum, on plant growth, vitality, toxic metal accumulation, sesquiterpene lactone production and flavonoid concentration in the presence of toxic metals were evaluated. Inoculation with the AM fungus increased biomass yield of the plants grown on non-polluted and polluted substrate. Co-inoculation with the AM fungus and Mucor sp. resulted in increased biomass yield of plants cultivated on the polluted substrate, whereas co-inoculation with T. asperellum and the AM fungus increased plant biomass on the non-polluted substrate. In the presence of Mucor sp., mycorrhizal colonization and arbuscule richness were increased in the non-polluted substrate. Co-inoculation with the AM fungus and Mucor sp. increased Zn concentration in leaves and roots. The concentration of sesquiterpene lactones in plant leaves was decreased by AM fungus inoculation in both substrates. Despite enhanced host plant costs caused by maintaining symbiosis with numerous microorganisms, interaction of wild lettuce with both mycorrhizal and endophytic fungi was more beneficial than that with a single fungus. The study shows the potential of double inoculation in unfavourable environments, including agricultural areas and toxic metal-polluted areas.
机译:通过与菌根和内生真菌的共同接种可以改善污染部位的植物修复。在这项研究中,单一和共同接种Lactuca Serriola与丛枝菌根(AM)真菌,根瘤病菌,粘液性真菌,粘液菌。或者在植物生长,活力,有毒金属积累,评估毒性金属存在下的植物生长,活力,有毒金属积累,筛窦内酯和黄酮浓度。与AM真菌接种的接种增加在非污染和污染的基材上生长的植物的生物质产量。与AM真菌和粘液SP共同接种。导致污染底物培养的植物的生物量产量增加,而用T.Sperellum和Am真菌的共同接种增加了非污染底物上的植物生物质。在不污染的基材中增加了粘液菌。,未污染的基材中腐蚀性殖民化和仲裁性。与AM真菌和粘液SP共同接种。叶片和根中增加Zn浓度。植物叶中的倍半萜烯内酯的浓度在两个基材中接种植物叶中的浓度降低。尽管通过维持宿主植物成本增强了患有许多微生物的共生,但野生生菜与菌根和内生真菌的相互作用比单一真菌更有益。该研究表明,在不利环境中双接种的潜力,包括农业领域和有毒金属污染区域。

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