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Owen, R.

Publications and source records attributed to Owen, R..

2 recordsLinked to original sources

Direct measurement of X-ray induced heating of microcrystals

Temperature control is a key aspect of macromolecular crystallography, with the technique of cryocooling routinely used to mitigate X-ray induced damage. Beam induced heating could cause the temperature of crystals to rise above the glass transition temperature, greatly increasing the rate of damage. X-ray induced heating of ruby crystals 20-40 microns in size has been quantified non-invasively by monitoring the emission wavelengths of X-ray induced fluorescence during exposure to the X-ray beam. For beamsizes and dose-rates typically used in macromolecular crystallography the temperature rises are of order 20 K. The temperature changes observed are compared with models in the literature and can be used as a validation tool for future models.\n\nSynopsisX-ray induced heating of micro-crystals is quantified through the temperature-dependent shift in X-ray induced fluorescence from ruby crystals.

biophysics

Subtle, seasonal and potentially important: Are phytotoxic foliage leachates overlooked in plant invasion studies?

Invasive species pose a threat to global biodiversity. Recently there has been a growth in research into the chemical aspect of invasions, with some plants reported to introduce compounds to the soil which impair the growth of competing native plants. One such species is Rhododendron ponticum, which has become a damaging invasive shrub in Britain. Here we investigate whether water-soluble compounds introduced from R. ponticum leaves in Ceredigion, Wales, suppressed seed germination, and whether this varied temporally. Leachates from leaf material collected monthly (March to July) were analysed for their chemical composition by liquid chromatography-mass spectrometry and Lactuca sotiva bioassays. In total, 19 compounds were identified, displaying both qualitative and quantitative seasonal variation. Total concentrations peaked in June, however L sativa germination inhibition was only found in leachates from April and May (15% and 17% respectively). The study provides evidence that phytotoxic chemical introduction from R. ponticum leaves is seasonal and most bioactive at a time of year when the seeds of other species germinate. We propose this is one of several mechanisms including shading, lowering of soil pH and the deposition of thick litter, that this species exploits when in competition with other species. We argue that for studies on the phytotoxicity of invasive plants, there is a need to consider temporal variation in the rate and quality of bioactive chemicals produced and released, local precipitation rates, persistence of chemicals in the soil plus synergistic interactions between individual chemicals.

ecology