Publications by authors named "Nora Temme"

Article Synopsis
  • The significance of crop-associated microbiomes in enhancing plant health and performance has been well-established, particularly in sugar beet cultivation, which relies on genetics and soil microbiomes.
  • Research highlights how bacterial, fungal, and archaeal communities impact sugar beet's resilience, leading to strategies for sustainable farming, including biocontrol of diseases and improved fertilization.
  • The review discusses the unique traits of sugar beet microbiomes, their dynamics throughout plant growth, and potential biocontrol strategies to guide future studies on optimizing sugar beet cultivation through microbiome management.
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The rhizosphere microbiome is crucial for plant health, especially for preventing roots from being infected by soil-borne pathogens. Microbiota-mediated pathogen response in the soil-root interface may hold the key for microbiome-based control strategies of phytopathogens. We studied the pathosystem sugar beet-late sugar beet root rot caused by in an integrative design of combining and (greenhouse and field) trials.

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The thioredoxin system is of great importance for maintenance of cellular redox homeostasis. Here, we show that it has a severe influence on virulence of Botrytis cinerea, demonstrating that redox processes are important for host-pathogen interactions in this necrotrophic plant pathogen. The thioredoxin system is composed of two enzymes, the thioredoxin and the thioredoxin reductase.

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Atf1-homologous basic region leucine zipper (bZIP) transcription factors are known to act downstream of the stress-activated mitogen-activated protein kinase (SAPK) cascade in mammals, as well as in several fungi; they regulate the transcription of genes involved in the general stress response. Functional analyses of BcAtf1 in Botrytis cinerea show that it is also connected to the SAPK BcSak1, as it shares several stress response target genes. However, Δbcatf1 mutants are not hypersensitive to osmotic or oxidative stress, as are Δbcsak1 mutants.

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Botrytis cinerea is a phytopathogen infecting a broad range of plants including strawberries and grapevine. During infection, the necrotrophic fungus is exposed to reactive oxygen species (ROS) released by the oxidative burst, an early plant defense reaction. B.

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