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Implications of Below-Ground Allelopathic Interactions of Camelina sativa and Microorganisms for Phosphate Availability and Habitat Maintenance.
Hofmann, Diana; Thiele, Björn; Siebers, Meike; Rahmati, Mehdi; Schütz, Vadim; Jeong, Seungwoo; Cui, Jiaxin; Bigler, Laurent; Held, Federico; Wu, Bei; Babic, Nikolina; Kovacic, Filip; Hamacher, Joachim; Hölzl, Georg; Dörmann, Peter; Schulz, Margot.
Afiliação
  • Hofmann D; IBG-3: Agrosphäre, Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Thiele B; IBG-3: Agrosphäre, Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Siebers M; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
  • Rahmati M; IBG-3: Agrosphäre, Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Schütz V; Department of Soil Science and Engineering, University of Maragheh, Maragheh 83111-55181, Iran.
  • Jeong S; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
  • Cui J; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
  • Bigler L; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
  • Held F; Department of Chemistry, University of Zurich, CH-8057 Zurich, Switzerland.
  • Wu B; Department of Chemistry, University of Zurich, CH-8057 Zurich, Switzerland.
  • Babic N; IBG-3: Agrosphäre, Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Kovacic F; Institute of Molecular Enzyme Technology, Heinrich-Heine-University of Düsseldorf and Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Hamacher J; Institute of Molecular Enzyme Technology, Heinrich-Heine-University of Düsseldorf and Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
  • Hölzl G; Plant Diseases and Crop Protection, Institute of Crop Science and Resource Conservation, University of Bonn, 53115 Bonn, Germany.
  • Dörmann P; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
  • Schulz M; IMBIO Institute of Molecular Physiology and Biotechnology of Plants, University of Bonn, 53115 Bonn, Germany.
Plants (Basel) ; 12(15)2023 Jul 29.
Article em En | MEDLINE | ID: mdl-37570969
ABSTRACT
Toxic breakdown products of young Camelina sativa (L.) Crantz, glucosinolates can eliminate microorganisms in the soil. Since microorganisms are essential for phosphate cycling, only insensitive microorganisms with phosphate-solubilizing activity can improve C. sativa's phosphate supply. In this study, 33P-labeled phosphate, inductively coupled plasma mass spectrometry and pot experiments unveiled that not only Trichoderma viride and Pseudomonas laurentiana used as phosphate-solubilizing inoculants, but also intrinsic soil microorganisms, including Penicillium aurantiogriseum, and the assemblies of root-colonizing microorganisms solubilized as well phosphate from apatite, trigger off competitive behavior between the organisms. Driving factors in the competitiveness are plant and microbial secondary metabolites, while glucosinolates of Camelina and their breakdown products are regarded as key compounds that inhibit the pathogen P. aurantiogriseum, but also seem to impede root colonization of T. viride. On the other hand, fungal diketopiperazine combined with glucosinolates is fatal to Camelina. The results may contribute to explain the contradictory effects of phosphate-solubilizing microorganisms when used as biofertilizers. Further studies will elucidate impacts of released secondary metabolites on coexisting microorganisms and plants under different environmental conditions.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article