28 research outputs found

    Adaptive partitioning of real-time tasks on multiple processors

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    This paper presents a new algorithm for scheduling real-time tasks on multiprocessor/multicore systems. This new algorithm is based on combining EDF scheduling with a migration strategy that moves tasks only when needed. It has been evaluated through an extensive set of simulations that showed good performance when compared with global or partitioned EDF: a worst-case utilisation bound similar to partitioned EDF for hard real-time tasks, and a tardiness bound similar to global EDF for soft real-time tasks. Therefore, the proposed scheduler is effective for dealing with both soft and hard real-time workloads

    The nuclear and organellar tRNA-derived RNA fragment population in Arabidopsis thaliana is highly dynamic

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    In the expanding repertoire of small noncoding RNAs (ncRNAs), tRNA-derived RNA fragments (tRFs) have been identified in all domains of life. Their existence in plants has been already proven but no detailed analysis has been performed. Here, short tRFs of 19-26 nucleotides were retrieved from Arabidopsis thaliana small RNA libraries obtained from various tissues, plants submitted to abiotic stress or fractions immunoprecipitated with ARGONAUTE 1 (AGO1). Large differences in the tRF populations of each extract were observed. Depending on the tRNA, either tRF-5D (due to a cleavage in the D region) or tRF-3T (via a cleavage in the T region) were found and hot spots of tRNA cleavages have been identified. Interestingly, up to 25% of the tRFs originate from plastid tRNAs and we provide evidence that mitochondrial tRNAs can also be a source of tRFs. Very specific tRF-5D deriving not only from nucleus-encoded but also from plastid-encoded tRNAs are strongly enriched in AGO1 immunoprecipitates. We demonstrate that the organellar tRFs are not found within chloroplasts or mitochondria but rather accumulate outside the organelles. These observations suggest that some organellar tRFs could play regulatory functions within the plant cell and may be part of a signaling pathway.Cognat, Valerie Morelle, Geoffrey Megel, Cyrille Lalande, Stephanie Molinier, Jean Vincent, Timothee Small, Ian Duchene, Anne-Marie Marechal-Drouard, Laurence eng England 2016/12/03 06:00 Nucleic Acids Res. 2017 Apr 7;45(6):3460-3472. doi: 10.1093/nar/gkw1122.PMC538970

    Microbial carcinogenic toxins and dietary anti-cancer protectants

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    Parents’ experiences of having an excessively crying baby and implications for enhancing support services

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    Evidence suggests that around 20% of healthy babies cry for long periods without apparent reason, causing significant distress to parents and a range of adverse outcomes. This study explored parents' experiences of having an excessively crying baby and their suggestions for improved NHS support. Focus groups and interviews with 20 parents identified three key themes: disrupted expectations and experiences of parenthood; stigma and social isolation; seeking support and validation of experience. Parents experienced shock, anxiety and a sense of failure, leading to self-imposed isolation and a reluctance to seek help. Other people's reactions sometimes reinforced their feelings. Parents need more support, including from health professionals, to cope with excessive crying, and recommendations for this support are given

    Distributed Secondary Frequency Control Algorithm Considering Storage Efficiency

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    Operation experience with a novel highly efficient micro-scale CHP system based on fuel-flexible gasification and a SOFC

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    An efficient and fuel flexible micro-scale biomass CHP technology based on the combination of a small-scale updraft gasifier with a SOFC system is developed within the project FlexiFuel-SOFC. High load flexibility and a maximum of full load operating hours of the CHP system is achieved by operating the CHP part of the plant with a side stream (product gas extracted from the gasifier) of a heat controlled system (gas burner and boiler as well as heat recovery). A gas cleaning unit (GCU) for the treatment of the side stream according to the requirements for the operation of the SOFC regarding contaminant (H2S, HCl) and TSP removal as well as tar content reduction was designed, constructed and successfully evaluated. A considerable reduction of the gravimetric tar content down to a suitable tar content for the operation of the SOFC stack module is achieved by gasifier internal tar reformation and a further reformation step in the tar reformer of the GCU. Comprehensive tests have been successfully performed with a broad spectrum of solid biomass fuels at a testing plant at BIOS in Graz. Promising test run results showing a basic proof of concept for the new technology could be gained

    In vitro RNA uptake studies in plant mitochondria

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    During evolution, most of the ancestral genes from the endosymbiotic alpha-proteobacteria at the origin of mitochondria have been either lost or transferred to the nuclear genome. To allow the comeback of proteins and RNAs [in particular transfer RNA (tRNAs)] into the organelle, macromolecule import systems were universally established. While protein import processes have been studied into details, much less is known about tRNA mitochondrial import. In plants, part of the knowledge on the tRNA import process into mitochondria has been acquired thanks to in vitro import assays. Furthermore, the development of in vitro RNA import strategies allowed the study of plant mitochondrial gene expression. The purpose of this chapter is to provide detailed protocols to perform in vitro RNA uptake into potato (Solanum tuberosum) or Arabidopsis (Arabidopsis thaliana) mitochondria as well as approaches to analyze them
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