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+content = "<jats:p>ABSTRACT  Objective: To know the perceptions of nursing professionals in urgent and emergency services regarding workloads and the relationship with their health.  Method: Descriptive qualitative study carried out in two urgent and emergency sectors in southern Brazil. 16 nursing professionals were interviewed. The data were subjected to thematic content analysis.  Results: The first thematic category highlighted the workloads in the daily lives of professionals, highlighting Covid-19 as an element recently incorporated into the perception of biological load. The psychic load is enhanced by stress and suffering in the face of deaths, in addition to adverse working conditions. The second category showed the interface between the loads, the overload and the workers' health, highlighting the importance of the psychic load in mental health.  Conclusion: Workloads are enhanced by working conditions and the relationship with the profession's work object, generating overload and risk of mental illness.</jats:p>"
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+content = "<jats:p>Unspecific peroxygenases (UPOs), whose sequences can be found in the genomes of thousands of filamentous fungi, many yeasts and certain fungus-like protists, are fascinating biocatalysts that transfer peroxide-borne oxygen (from H2O2 or R-OOH) with high efficiency to a wide range of organic substrates, including less or unactivated carbons and heteroatoms. A twice-proline-flanked cysteine (PCP motif) typically ligates the heme that forms the heart of the active site of UPOs and enables various types of relevant oxygenation reactions (hydroxylation, epoxidation, subsequent dealkylations, deacylation, or aromatization) together with less specific one-electron oxidations (e.g., phenoxy radical formation). In consequence, the substrate portfolio of a UPO enzyme always combines prototypical monooxygenase and peroxidase activities. Here, we briefly review nearly 20 years of peroxygenase research, considering basic mechanistic, molecular, phylogenetic, and biotechnological aspects.</jats:p>"
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+content = "<jats:p>Low temperatures are a substantial limitation in the geographic distribution of warm-season crops such as cucumber (Cucumis sativus L.). Tolerance to low temperatures varies among different plant species and genotypes when changes in environmental cues occur. Therefore, biochemical and biophysical events should be coordinated to form a physiological response and cope with low temperatures. We examined how light intensity influences the effects of low temperature on photosynthesis and some biochemical traits. We used chlorophyll fluorescence imaging and polyphasic fluorescence transient to analyze cold stress damage by 4 °C. Photosynthetic Photon Flux Densities (PPFDs) of 0, 300, and 600 μmol m−2 s−1, in four accessions of cucumber, were investigated. The results show that the negative effects of cold stress are PPFD-dependent. The adverse effect of cold stress on the electron transport chain is more pronounced in plants exposed to 600 μmol m−2 s−1 than the control and dark-exposed plants, indicated by a disturbance in the electron transport chain and higher energy dissipation. Moreover, biochemical traits, including the H2O2 content, ascorbate peroxidase activity, electrolyte leakage, and water-soluble carbohydrate, increased under low temperature by increasing the PPFD. In contrast, chlorophyll and carotenoid contents decreased under low temperature through PPFD elevation. Low temperature induced a H2O2 accumulation via suppressing ascorbate peroxidase activity in a PPFD-dependent manner. In conclusion, high PPFDs exacerbate the adverse effects of low temperature on the cucumber seedlings.</jats:p>"
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+title = "Rendimento da cultura da cebola submetida a níveis de água e nitrogênio por gotejamento"
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+title = "Desempenho de cultivares de cebola em função do manejo da irrigação por gotejamento"
+locator = "117"
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+authors = [ "Vilas Boas R. C.",]
+doi = "10.1590/s1415-43662011000200002"
+volume = "15"
+[[abstracts]]
+sha1 = "68441bacd1a8e2f447ce2dbb1f61bbd2d5b42e09"
+content = "<jats:p>ABSTRACT This study aimed to determine crop evapotranspiration through the soil water balance, the crop coefficient and water use efficiency of the onion (Allium cepa L.) in a system with four irrigation regimes, cultivated in the semiarid region of northeastern Brazil. Two field experiments were carried out during the rainy and dry periods of the region in 2018, using the treatments of 100% (T1), 75% (T2), 50% (T3) and 25% (T4) of the reference evapotranspiration for daily water replacement and five replicates for each treatment. It was verified that crop evapotranspiration varies according to the water availability in the soil; however, the highest water use efficiency occurred for the T3 treatment. The T1 treatment obtained the highest estimated yield, 43.86 tons ha-1, while T4 obtained 13.47 tons ha-1, the lowest estimated yield among the treatments, and this difference was statistically significant (p ≤ 0.05) by F test. The crop coefficients obtained were 0.68, 0.89, 0.99 and 0.73 for the initial, vegetative, bulbing and maturation stages, respectively.</jats:p>"
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