Plant growth promotion of Miscanthus × giganteus by endophytic bacteria and fungi on non-polluted and polluted soils
Jazyk angličtina Země Německo Médium electronic
Typ dokumentu časopisecké články
Grantová podpora
TA03011184
Technologická Agentura České Republiky
RVO 67985939
Akademie Věd České Republiky
PubMed
29536268
DOI
10.1007/s11274-018-2426-7
PII: 10.1007/s11274-018-2426-7
Knihovny.cz E-zdroje
- Klíčová slova
- Antioxidative activity, Halenospora, Heavy metals, Miscanthus, Plant growth promotion, Variovorax, Verticillium leptobactrum,
- MeSH
- Ascomycota MeSH
- Bacteria klasifikace genetika izolace a purifikace metabolismus MeSH
- DNA bakterií genetika MeSH
- DNA fungální genetika MeSH
- endofyty klasifikace genetika izolace a purifikace fyziologie MeSH
- houby klasifikace genetika izolace a purifikace fyziologie MeSH
- kořeny rostlin mikrobiologie MeSH
- látky znečišťující půdu * MeSH
- lipnicovité mikrobiologie MeSH
- listy rostlin mikrobiologie MeSH
- Populus mikrobiologie MeSH
- půda chemie MeSH
- regulátory růstu rostlin metabolismus MeSH
- siderofory metabolismus MeSH
- těžké kovy MeSH
- vývoj rostlin * MeSH
- znečištění životního prostředí MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- DNA bakterií MeSH
- DNA fungální MeSH
- látky znečišťující půdu * MeSH
- půda MeSH
- regulátory růstu rostlin MeSH
- siderofory MeSH
- těžké kovy MeSH
Putative endophytes of Miscanthus × giganteus were isolated, and screened in the laboratory, greenhouse and field for their plant growth promoting properties in this host. Pantoea ananatis and Pseudomonas savastanoi were the predominant bacteria in leaves whereas other pseudomonads prevailed in roots. Almost all fungal endophytes belonged to the Pezizomycotina and most were isolated from roots; Fusarium oxysporum was most abundant, followed by the genera Periconia, Exophiala, Microdochium and Leptodontidium. All endophytic groups produced phytohormones and some bacteria also produced siderophores, solubilised P and exhibited ACC-deaminase activity in vitro. In subsequent pot experiments with pre-selected endophytes, several isolates including pseudomonads, Variovorax paradoxus, Verticillium leptobactrum, Halenospora sp. and Exophiala sp. enhanced Miscanthus growth in gamma-sterilised soil. These promising Miscanthus-derived isolates were tested either as single or mixed inocula along with a mixed bacterial inoculum originating from poplar. No significant effects of inocula were detected in a pot experiment in non-sterilised soil. On two marginal field sites the mixture of bacterial endophytes from poplar had a consistently negative effect on survival and growth of Miscanthus. Contrarily, mixtures consisting of bacteria or fungi originating from Miscanthus promoted growth of their host, especially on the heavy metals-polluted site. The combination of bacteria and fungi was inferior to the mixtures consisting of bacteria or fungi alone. Our observations indicate extensive potential of mixed bacterial and fungal endophytic inocula to promote establishment and yield of Miscanthus grown on marginal and polluted land and emphasise the necessity to test particular microbial-plant host combinations. Morphotypes of fungi isolates from Miscanthus × giganteus.
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