Publications by authors named "C D Knight"

The environmental use of azole fungicides has led to selective sweeps across multiple loci in the Aspergillus fumigatus genome causing the rapid global expansion of a genetically distinct cluster of resistant genotypes. Isolates within this cluster are also more likely to be resistant to agricultural antifungals with unrelated modes of action. Here we show that this cluster is not only multi-azole resistant but has increased propensity to develop resistance to next generation antifungals because of variants in the DNA mismatch repair system.

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Increasing extreme climatic events threaten the functioning of terrestrial ecosystems. Because soil microbes govern key biogeochemical processes, understanding their response to climate extremes is crucial in predicting the consequences for ecosystem functioning. Here we subjected soils from 30 grasslands across Europe to four contrasting extreme climatic events under common controlled conditions (drought, flood, freezing and heat), and compared the response of soil microbial communities and their functioning with those of undisturbed soils.

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The overall aim of the present study was to understand how dancers' perception and parents' own perceptions of parents' responsiveness and competence support were associated with dancers' self-perceptions and thriving. In total, 64 dancers and 91 parents for a total of 52 matching dyads participated in the study. Dancers were aged 7-24 years, trained on average 4.

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Article Synopsis
  • - gRASPA is an open-source Monte Carlo simulation code that enhances speed and functionality by utilizing GPUs, offering better performance than traditional CPU methods for various types of simulations.
  • - The software supports advanced features like grand canonical transition matrix Monte Carlo (GC-TMMC) and can handle different moves for components in metal-organic frameworks (MOFs), aiding in precise free energy calculations and adsorption studies.
  • - It includes a High-Throughput Computing (HTC) mode for conducting multiple simulations on a single GPU, integrates machine learning potentials for improved accuracy, and promotes scientific openness by allowing users to customize and extend the code.
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The yeast SWR1 complex catalyses the exchange of histone H2A-H2B dimers in nucleosomes, with Htz1-H2B dimers. Here we used single-molecule analysis to demonstrate two-step double exchange of the two H2A-H2B dimers in a canonical yeast nucleosome with Htz1-H2B dimers, and showed that double exchange can be processive without release of the nucleosome from the SWR1 complex. Further analysis showed that bound nucleosomes flip between two states, with each presenting a different face, and hence histone dimer, to SWR1.

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