2 research outputs found

    Efeito de sistemas de uso e manejo nas propriedades físico-hídricas de um argissolo amarelo de tabuleiro costeiro Effect of use and management systems on the physical and hydraulic properties of a yellow argisol of coastal tablelands

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    Os diferentes sistemas de manejo com cana-de-açúcar em solos de tabuleiros costeiros podem causar alterações na estrutura original do solo. Os efeitos de diferentes sistemas de manejo com cana-de-açúcar nas propriedades físico-hídricas de um Argissolo Amarelo coeso foram estudados em quatro áreas selecionadas na usina Triunfo, no Estado de Alagoas. Os tratamentos consistiram de uma área não irrigada, uma área irrigada, uma com aplicação de vinhaça e uma sob floresta nativa como condição original. As amostras foram retiradas das profundidades de 0-0,2, 0,2-0,4 e 0,4-0,8 m, para determinar as alterações na densidade do solo, distribuição de diâmetro dos poros, curvas de retenção de água no solo e condutividade hidráulica saturada. O maior grau de dispersão de argila nos solos cultivados com cana-de-açúcar promoveu maior acúmulo desta partícula nas camadas subsuperficiais do solo. Os sistemas de manejo com cana-de-açúcar aumentaram a compactação do solo, com conseqüente redução da macroporosidade e condutividade hidráulica saturada, e aumento da retenção de água disponível do solo.<br>Different sugarcane management systems on soils of coastal tablelands can cause alterations in their original soil structure. Effects of the different sugarcane management systems on the properties of a cohesive Yellow Argisol were studied in four areas of the Triunfo sugar mill in Alagoas State, Brazil. The treatments consisted of a site with and without cultivation irrigation each, one site with vinasse application and another under undisturbed native forest. Samples were collected at depths of 0-0.2, 0.2-0.4 and 0.4-0.8 m to determine the alterations in the bulk density, soil pore size distribution, soil water retention curves, and saturated hydraulic conductivity. The highest degree of clay dispersion in sugarcane-cultivated soils promoted a greater accumulation of clay particles in the subsurface soil layers. Management systems with sugarcane increased soil compaction, with a consequent alteration of the soil pore size distribution, reduced the saturated hydraulic conductivity and increased the retention of available water

    MicroRNA-223 dose levels fine tune proliferation and differentiation in human cord blood progenitors and acute myeloid leukemia

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    A precise understanding of the role of miR-223 in human hematopoiesis and in the pathogenesis of acute myeloid leukemia (AML) is still lacking. By measuring miR-223 expression in blasts from 115 AML patients, we found significantly higher miR-223 levels in patients with favorable prognosis, whereas patients with low miR-223 expression levels were associated with worse outcome. Furthermore, miR-223 was hierarchically expressed in AML subpopulations, with lower expression in leukemic stem cell-containing fractions. Genetic depletion of miR-223 decreased the leukemia initiating cell (LIC) frequency in a myelomonocytic AML mouse model, but it was not mandatory for rapid-onset AML. To relate these observations to physiologic myeloid differentiation, we knocked down or ectopically expressed miR-223 in cord-blood CD34+ cells using lentiviral vectors. Although miR-223 knockdown delayed myeloerythroid precursor differentiation in vitro, it increased myeloid progenitors in vivo following serial xenotransplantation. Ectopic miR-223 expression increased erythropoiesis, T lymphopoiesis, and early B lymphopoiesis in vivo. These findings broaden the role of miR-223 as a regulator of the expansion/differentiation equilibrium in hematopoietic stem and progenitor cells where its impact is dose- and differentiation-stage-dependent. This also explains the complex yet minor role of miR-223 in AML, a heterogeneous disease with variable degree of myeloid differentiation
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