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Biology subjects

Beule, L.

Publications and source records attributed to Beule, L..

2 recordsLinked to original sources

Earthworm and Soil Microbial Communities in Flower Strips

Flower strips are a common agricultural practice to increase aboveground biodiversity and beneficial ecosystem services. Although soil communities are a key component of terrestrial biodiversity and drive important ecosystem services, their abundance, diversity, and composition in flower strips remain largely unexplored. Here, we shed light on earthworms and soil microorganisms in flower strips and aim to provide a starting point for research on belowground communities in flower strips. In 2020, we established a field margin vegetation as well as two annual and two perennial flower strip mixtures at three study sites in Germany that were previously conventional croplands or fallow. Two years following this conversion, we determined earthworm communities and investigated the soil microbiome using real-time PCR (archaea, bacteria, fungi, and soil-N-cycling genes) and amplicon sequencing (bacteria and fungi). Different plant mixtures (i.e. field margin, annual, and perennial flower strips) harbored distinct earthworm and soil microbial communities. Earthworm density and biomass declined or remained unaffected in annual flower strips but increased in perennial flower strips as compared to field margins. Arbuscular mycorrhizal fungi showed greater diversity and community share in non-tilled (i.e. field margin and perennial flower strips) as compared to tilled plant mixtures (i.e. annual flower strips). We attribute changes in earthworms and microorganisms mainly to the effect of tillage and plant diversity. Overall, we suggest that perennial flower strips serve as refugia for soil biota in agricultural landscapes. Future studies should compare soil biota in perennial flower strips to those in adjacent fields and investigate whether beneficial belowground effects are restricted to the flower strips or spatially extend into adjacent fields ( spillover).

ecology↗

Fusarium culmorum produces NX-2 toxin simultaneously with deoxynivalenol and 3-acetyl-deoxynivalenol or nivalenol

Fusarium culmorum is a major pathogen of grain crops. Infected plants accumulate deoxynivalenol (DON), 3-acetyl-deoxynivalenol (3-ADON), or nivalenol (NIV), which are mycotox-ins of the trichothecene B group. These toxins are also produced by F. graminearum species complex. New trichothecenes structurally similar to trichothecenes B but lacking the carbonyl group on C-8, designated NX toxins, were recently discovered in atypical isolates of F. graminearum from North America. Only these isolates and a few strains of a yet to be characterized Fusarium species from South Africa are known to produce NX-2 and other NX toxins. Here we report that among 20 F. culmorum strains isolated from maize, wheat, and oat in Europe and Asia over a period of 70 years, 18 strains produced NX-2 simultaneously with 3-ADON and DON or NIV. Rice cultures of strains producing 3-ADON accumulated NX-2 in amounts corresponding to 2-8% of 3-ADON (1.2 - 36 mg/kg). A strain producing NIV accumulated NX-2 and NIV at comparable amounts (13.6 and 10.3 mg/kg, respectively). In F. graminearum, producers of NX-2 possess a special variant of cytochrome P450 monooxygenase encoded by TRI1 that is unable to oxidize C-8. In F. culmorum, producers and non-producers of NX-2 possess identical TRI1; the reason for the production of NX-2 is unknown. Our results indicate that production of NX-2 simultaneously with trichothecenes B is a common feature of F. culmorum. Key resultIsolates of Fusarium culmorum obtained from different hosts at different locations over several dec-ades produced NX-2, which is a type A trichothecene structurally related to 3-ADON.

microbiology↗