380 research outputs found

    Seleção de linhagens de soja quanto a resistência de Corynespora cassiicola safra 2009/2010.

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    Avaliou-se 28 genótipos de soja convencional e soja RR, quanto a reação de Corynespora cassiicola, nos municípios de São Gabriel do Oeste (MS), Chapadão do Sul (MS) e Sorriso (MT), na safra 2009/2010

    Nijmegen Breakage Syndrome fibroblasts and iPSCs: cellular models for uncovering disease-associated signaling pathways and establishing a screening platform for anti-oxidants.

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    Nijmegen Breakage Syndrome (NBS) is associated with cancer predisposition, premature aging, immune deficiency, microcephaly and is caused by mutations in the gene coding for NIBRIN (NBN) which is involved in DNA damage repair. Dermal-derived fibroblasts from NBS patients were reprogrammed into induced pluripotent stem cells (iPSCs) in order to bypass premature senescence. The influence of antioxidants on intracellular levels of ROS and DNA damage were screened and it was found that EDHB-an activator of the hypoxia pathway, decreased DNA damage in the presence of high oxidative stress. Furthermore, NBS fibroblasts but not NBS-iPSCs were found to be more susceptible to the induction of DNA damage than their healthy counterparts. Global transcriptome analysis comparing NBS to healthy fibroblasts and NBS-iPSCs to embryonic stem cells revealed regulation of P53 in NBS fibroblasts and NBS-iPSCs. Cell cycle related genes were down-regulated in NBS fibroblasts. Furthermore, oxidative phosphorylation was down-regulated and glycolysis up-regulated specifically in NBS-iPSCs compared to embryonic stem cells. Our study demonstrates the utility of NBS-iPSCs as a screening platform for anti-oxidants capable of suppressing DNA damage and a cellular model for studying NBN de-regulation in cancer and microcephaly

    Seletividade do feijão comum ao herbicida Targa.

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    O objetivo do trabalho foi estudar o efeito de dose e misturas dos herbicidas Targa e Select em diferentes cultivares do feijoeiro comum cultivado sob sistema de plantio direto irrigado

    Controlling Silver Nanoparticle Size and Morphology with Photostimulated Synthesis

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    Photo-induced synthesis and control over the size and shape of colloidal silver nanoparticles is investigated in contrast to photo-stimulated aggregation of small nanoparticles into large fractal-type structures. The feasibility of light-driven nanoengineering which enables manipulation of the sizes and shapes of the isolated nanoparticles is studied by varying the amount and type of the stabilizing agent and the type of optical irradiation.Comment: 10 pages, 7 figures, 11 image

    Human Amniocytes Are Receptive to Chemically Induced Reprogramming to Pluripotency

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    Restoring pluripotency using chemical compounds alone would be a major step forward in developing clinical-grade pluripotent stem cells, but this has not yet been reported in human cells. We previously demonstrated that VPA_ AFS cells, human amniocytes cultivated with valproic acid (VPA) acquired functional pluripotency while remaining distinct from human embryonic stem cells (hESCs), questioning the relationship between the modulation of cell fate and molecular regulation of the pluripotency network. Here, we used single-cell analysis and functional assays to reveal that VPA treatment resulted in a homogeneous population of self-renewing non-transformed cells that fulfill the hallmarks of pluripotency, i.e., a short G1 phase, a dependence on glycolytic metabolism, expression of epigenetic modifications on histones 3 and 4, and reactivation of endogenous OCT4 and downstream targets at a lower level than that observed in hESCs. Mechanistic insights into the process of VPA-induced reprogramming revealed that it was dependent on OCT4 promoter activation, which was achieved independently of the PI3K (phosphatidylinositol 3-kinase)/ AKT/ mTOR (mammalian target of rapamycin) pathway or GSK3 beta inhibition but was concomitant with the presence of acetylated histones H3K9 and H3K56, which promote pluripotency. Our data identify, for the first time, the pluripotent transcriptional and molecular signature and metabolic status of human chemically induced pluripotent stem cells

    Soil P, K, and Al contents in a Crop-Livestock-Forest integration system in Mato Grosso State.

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    The objective of this study was to evaluate the soil P, K, and Al contents in a CLFi system established in Nova Canaã do Norte-MT, Brazil

    Organic matter in forest arrangements within the Crop-Livestock-Forest Integration System in Mato Grosso State.

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    In Mato Grosso State, the main objectives of this integration are the shading provided to the animals, the improvement in the pastures? fertility, and the availability of wood for use at the property

    Growth of the Eucalyptus urograndis, Schizolobium parahyba var. amazonicum, Tectona grandis and Ochroma pyramidale on integration crop-livestock-forest systems in the Amazon Biome.

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    The objective of this study was to evaluate the growth in diameter and height eucalyptus (hybrid Eucalyptus urograndis), paricá (Schizolobium parahyba var. amazonicum), teak (Tectona grandis) and balsa tree (Ochroma pyramidale), seeking to supply information about the use of these species in crop-livestock-forest integration (ICLF) systems
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