105 research outputs found

    Evolução biológica no ensino de ciências: um relato de experiência

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    Esse artigo relata uma experiência de estágio em ensino de ciências do curso de licenciatura plena em ciências biológicas da Universidade Federal de São Carlos (UFSCar). A dupla   cursava o oitavo semestre e abordou o tema da evolução biológica na oitava série do ensino fundamental de uma escola pública situada na periferia da cidade de São Carlos. Dada a importância do assunto para o ensino de ciências e biologia, trazemos algumas reflexões advindas de nossas intervenções, como a dificuldade em lidar com a crença religiosa dos alunos e os obstáculos que ela traz para a compreensão da evolução biológica; as contribuições da história da ciência e das concepções prévias dos estudantes para construir aprendizagens contextualizadoras e significativas.

    Variação sazonal da fotossíntese, condutância estomática e potencial da água na folha de laranjeira 'Valência'

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    Em espécies perenes podem ocorrer variações nas taxas de trocas gasosas e nas relações hídricas em função da variação das condições ambientais, durante os diferentes meses do ano. Avaliaram-se, em laranjeira ´Valência´ enxertada sobre quatro espécies de porta-enxerto, mantida sem deficiência hídrica, as taxas de fotossíntese (A) e de transpiração (E), a condutância estomática (g) e o potencial da água na folha (psi f ), medidos nos períodos da manhã (9h00 às 11h00) e da tarde (13h00 às 15h00) nos meses de janeiro, março e julho em Campinas - SP. As espécies de porta-enxertos não tiveram efeitos sobre as variáveis medidas. Independente do porta-enxerto A, g e ;Y ;f foram menores no período da tarde. A queda de A deve estar relacionada com a queda de g que diminuiu em resposta ao aumento do déficit de pressão de vapor entre o ar e a folha (DPVar-folha ) nos horários mais quentes do dia. Apesar de ocorrer fechamento parcial dos estômatos no período da tarde E foi similar ao período da manhã, devido ao aumento do DPVar-folha. Também observou-se queda em A e em g no sentido de janeiro para julho. Sugere-se que a queda em A e em g ocorrida em março em comparação a janeiro esteja relacionada à queda da atividade de crescimento da planta, afetando as relações fonte-dreno, visto que as condições ambientais nestes dois meses foram semelhantes. As quedas de A e de g observadas em julho, em relação à janeiro e março, parecem estar relacionadas tanto à queda na temperatura noturna quanto à queda na atividade de crescimento.Seasonal variation in environmental conditions may influence gas exchange rates as well as water relations in perennial species. This work was carried out to evaluate photosynthetic rates (A), transpiration (E), stomatal conductance (g) and leaf water potential (psi f ) in 'Valencia' orange trees grafted on four different rootstocks. Measurements were made twice a day: from 9h00 to 11h00 a.m. and from 1h00 to 3h00 p.m., during January, March and July. A and g were significantly lower and psif was significantly more negative, in the afternoon. The decrease in A may be related to the reduction in g, due to the increase in the vapor pressure deficit between the air and the leaf (VPDair-leaf ) in the afternoon, when temperatures are higher. In spite of the partial stomatal closure in the afternoon, the values for E were approximately the same as those measured in the morning, due to the increase in the VPDair-leaf . A decrease in A and g could also be noted from January to July, that is, from the hot and humid summer months, to the colder and drier winter ones. It was suggested that the decrease in A and g observed from January through March, may be related to the decrease in plant growth rates, which could have influenced the source-sink relationships, since the climatic conditions for both months were similar. The decrease in A and g showed in July, seems to be related to the decrease in both the night temperature and the growth rate of plants

    Seasonal variation of photosynthetic rates, stomatal conductance and leaf water potential in 'Valencia' orange trees

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    Seasonal variation in environmental conditions may influence gas exchange rates as well as water relations in perennial species. This work was carried out to evaluate photosynthetic rates (A), transpiration (E), stomatal conductance (g) and leaf water potential (psi f ) in 'Valencia' orange trees grafted on four different rootstocks. Measurements were made twice a day: from 9h00 to 11h00 a.m. and from 1h00 to 3h00 p.m., during January, March and July. A and g were significantly lower and psif was significantly more negative, in the afternoon. The decrease in A may be related to the reduction in g, due to the increase in the vapor pressure deficit between the air and the leaf (VPDair-leaf ) in the afternoon, when temperatures are higher. In spite of the partial stomatal closure in the afternoon, the values for E were approximately the same as those measured in the morning, due to the increase in the VPDair-leaf . A decrease in A and g could also be noted from January to July, that is, from the hot and humid summer months, to the colder and drier winter ones. It was suggested that the decrease in A and g observed from January through March, may be related to the decrease in plant growth rates, which could have influenced the source-sink relationships, since the climatic conditions for both months were similar. The decrease in A and g showed in July, seems to be related to the decrease in both the night temperature and the growth rate of plants.Em espécies perenes podem ocorrer variações nas taxas de trocas gasosas e nas relações hídricas em função da variação das condições ambientais, durante os diferentes meses do ano. Avaliaram-se, em laranjeira ´Valência´ enxertada sobre quatro espécies de porta-enxerto, mantida sem deficiência hídrica, as taxas de fotossíntese (A) e de transpiração (E), a condutância estomática (g) e o potencial da água na folha (psi f ), medidos nos períodos da manhã (9h00 às 11h00) e da tarde (13h00 às 15h00) nos meses de janeiro, março e julho em Campinas - SP. As espécies de porta-enxertos não tiveram efeitos sobre as variáveis medidas. Independente do porta-enxerto A, g e Y f foram menores no período da tarde. A queda de A deve estar relacionada com a queda de g que diminuiu em resposta ao aumento do déficit de pressão de vapor entre o ar e a folha (DPVar-folha ) nos horários mais quentes do dia. Apesar de ocorrer fechamento parcial dos estômatos no período da tarde E foi similar ao período da manhã, devido ao aumento do DPVar-folha. Também observou-se queda em A e em g no sentido de janeiro para julho. Sugere-se que a queda em A e em g ocorrida em março em comparação a janeiro esteja relacionada à queda da atividade de crescimento da planta, afetando as relações fonte-dreno, visto que as condições ambientais nestes dois meses foram semelhantes. As quedas de A e de g observadas em julho, em relação à janeiro e março, parecem estar relacionadas tanto à queda na temperatura noturna quanto à queda na atividade de crescimento.5358Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP

    Challenges of biomass utilization for bioenergy in a climate change scenario

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    The climate changes expected for the next decades will expose plants to increasing occurrences of combined abiotic stresses, including drought, higher temperatures, and elevated CO2 atmospheric concentrations. These abiotic stresses have significant consequences on photosynthesis and other plants’ physiological processes and can lead to tolerance mechanisms that impact metabolism dynamics and limit plant productivity. Furthermore, due to the high carbohydrate content on the cell wall, plants represent a an essential source of lignocellulosic biomass for biofuels production. Thus, it is necessary to estimate their potential as feedstock for renewable energy production in future climate conditions since the synthesis of cell wall components seems to be affected by abiotic stresses. This review provides a brief overview of plant responses and the tolerance mechanisms applied in climate change scenarios that could impact its use as lignocellulosic biomass for bioenergy purposes. Important steps of biofuel production, which might influence the effects of climate change, besides biomass pretreatments and enzymatic biochemical conversions, are also discussed. We believe that this study may improve our understanding of the plant biological adaptations to combined abiotic stress and assist in the decision-making for selecting key agronomic crops that can be efficiently adapted to climate changes and applied in bioenergy production.info:eu-repo/semantics/publishedVersio

    Atividade fitotóxica de cascas do caule e folhas de Blepharocalyx salicifolius (Myrtaceae) sobre espécies infestantes

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    No presente estudo foi avaliada a fitotoxicidade de extratos e frações de cascas do caule (súber) e folhas maduras de Blepharocalyx salicifolius Kuth O. Berg sobre o crescimento inicial de Echinochloa crus-galli L. P. Beauv. (capim-arroz) e Euphorbia heterophylla L. (amendoim-bravo). Os extratos foram obtidos por meio de extração exaustiva e fracionamento por coeficiente de partição com solventes orgânicos. Posteriormente, os extratos acetato etílicos de cascas e folhas maduras e o extrato hexânico de cascas foram fracionados por cromatografia em coluna com a utilização de solventes em ordem crescente de polaridade. Os extratos e as frações foram testados sobre as espécies infestantes nas concentrações de 0,2, 0,4 e 0,8 mg.mL-1, como controle positivo foi utilizado o herbicida comercial Sanson® nas mesmas concentrações descritas e como controle negativo água destilada com DMSO (5 uL/mL). Os extratos acetato etílicos de cascas e folhas maduras, assim como o extrato hexânico de cascas apresentaram efeitos pronunciados de inibição sobre o crescimento das espécies-alvo. Das oito frações acetato etílicas de folhas, seis inibiram o crescimento das raízes de capim-arroz e quatro inibiram o crescimento das raízes e parte aérea de amendoim-bravo em todas as concentrações testadas. Das seis frações acetato etílicas de cascas, quatro apresentaram fitotoxicidade sobre o crescimento das raízes de capim-arroz em todas as concentrações. Os extratos e frações de cascas e folhas maduras levaram ao surgimento de anomalias nas espécies-alvo. Estes resultados evidenciaram o acentuado efeito fitotóxico dos extratos e frações de cascas e folhas maduras e seu potencial uso como herbicida natural.En este estudio se evaluó la fitotoxicidad de los extractos y fracciones de las cortezas del tallo (suber) y de las hojas maduras de Blepharocalyx salicifolius Kuth O. Berg sobre el crecimiento inicial de Echinochloa crus- galli L. P. Beauv. (capim-arroz) y Euphorbia heterophylla L. (amendoim-bravo). Estos extractos fueron obtenidos por extracción exhaustiva y fraccionamiento por coeficiente de partición con disolventes orgánicos. Posteriormente los extractos de acetato de etilo de las hojas y de la corteza del tallo (suber) fueron fraccionados por cromatografía de columna con disolventes de polaridad creciente. Tanto los extractos como las fracciones se ensayaron sobre las plantas diana en concentraciones de 0,2, 0,4 y 0,8 mg.mL-1, como control positivo se utilizó el herbicida comercial Sanson® disuelto en las mismas condiciones y como control negativo agua destilada con DMSO (5uL/mL). Los extractos de acetato de etilo de hojas maduras y corteza así como el extracto de hexano de la corteza mostraron los efectos inhibitorios más pronunciados sobre el crecimiento de las especies diana. De las ocho fracciones del extracto de acetato de etilo de hojas, seis inhibieron el crecimiento de las raíces de capim-arroz y cuatro fracciones inhibieron el crecimiento de las raíces y de la parte aérea de amendoin-bravo en todas las concentraciones ensayadas. De las seis fracciones del extracto de acetato de etilo de corteza, cuatro fueron fitotóxicos sobre el crecimiento de la raíz de capim-arroz en todas las concentraciones. Los extractos y fracciones de la corteza y de las hojas maduras provocaron anomalías en las especies diana. Estos resultados demostraron un efecto fitotóxico pronunciado de los extractos y fracciones de corteza y hojas maduras y su potencial uso como herbicidas naturales.In this study, the phytotoxicity of extracts and fractions of stem bark (suber) and mature leaves of Blepharocalyx salicifolius Kuth O. Berg was evaluated on the initial growth of Echinochloa crus- galli L. P. Beauv. (barnyardgrass) and Euphorbia heterophylla L. (wild poinsettia). The extracts were obtained by exhaustive extraction and fractionation by the partition coefficient with organic solvents. Subsequently, the ethyl acetate extracts of bark and mature leaves and the hexane extract of bark were fractionated by column chromatography with solvents in increasing order of polarity. The extracts and fractions were evaluated on weed species at concentrations of 0,2, 0,4 and 0,8 mg.mL-1, The positive control used was the commercial herbicide Sanson® at the same concentrations described and the negative control used was distilled water with DMSO (5 uL/mL). The ethyl acetate extracts of bark and mature leaves and hexane extract of bark showed the most pronounced inhibitory effects on the growth of the target species. Among the eight ethylic acetate leave’s fractions, six inhibited the root growth of barnyardgrass at all concentrations tested and four fractions inhibited the root and shoot growth of wild poinsettia, at all concentrations tested. Of the six ethylic acetate bark’s fractions, four showed phytotoxicity on root growth of barnyardgrass at all concentrations. The extracts and fractions of bark and mature leaves have given rise to anomalies in the target species. The results demonstrated a pronounced phytotoxic effect of the extracts and fractions of bark and mature leaves, providing subsidies for their use as natural herbicides

    Warming offsets the benefits of elevated CO2 in water relations while amplifies elevated CO2-induced reduction in forage nutritional value in the C4 grass Megathyrsus maximus

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    Tropical grasslands are very important to global carbon and water cycles. C4 plants have increased heat tolerance and a CO2 concentrating mechanism that often reduces responses to elevated concentrations of CO2 ([CO2]). Despite the importance of tropical grasslands, there is a scarcity of studies that elucidate how managed tropical grasslands will be affected by elevated [CO2] and warming. In our study, we used a combination of a temperature-free air-controlled enhancement (T-FACE) and a free-air carbon dioxide enrichment (FACE) systems to increase canopy temperature and [CO2] under field conditions, respectively. We warmed a field-grown pasture dominated by the C4 tropical forage grass Megathyrsus maximus by 2°C above ambient under two levels of [CO2] (ambient (aC) and elevated (eC - 600 ppm) to investigate how these two factors isolated or combined regulate water relations through stomatal regulation, and how this combination affects PSII functioning, biochemistry, forage nutritive value, and digestibility. We demonstrated that the effects of warming negated the effects of eC in plant transpiration, water potential, proline content, and soil moisture conservation, resulting in warming canceling the eCO2-induced improvement in these parameters. Furthermore, there were additive effects between eC and warming for chlorophyll fluorescence parameters and aboveground nutritive value. Warming sharply intensified the eCO2-induced decrease in crude protein content and increases in forage fibrous fraction and lignin, resulting in a smaller forage digestibility under a warmer CO2-enriched atmosphere. Our results highlight the importance of multifactorial studies when investigating global change impacts on managed ecosystems and the potential consequences for the global carbon cycle like amplification in methane emissions by ruminants and feeding a positive climate feedback system

    Stomatal Development and Conductance of a Tropical Forage Legume Are Regulated by Elevated [CO2] Under Moderate Warming

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    The opening and closing of stomata are controlled by the integration of environmental and endogenous signals. Here, we show the effects of combining elevated atmospheric carbon dioxide concentration (eCO2; 600 μmol mol-1) and warming (+2°C) on stomatal properties and their consequence to plant function in a Stylosanthes capitata Vogel (C3) tropical pasture. The eCO2 treatment alone reduced stomatal density, stomatal index, and stomatal conductance (gs), resulting in reduced transpiration, increased leaf temperature, and leading to maintenance of soil moisture during the growing season. Increased CO2 concentration inside leaves stimulated photosynthesis, starch content levels, water use efficiency, and PSII photochemistry. Under warming, plants developed leaves with smaller stomata on both leaf surfaces; however, we did not see effects of warming on stomatal conductance, transpiration, or leaf water status. Warming alone enhanced PSII photochemistry and photosynthesis, and likely starch exports from chloroplasts. Under the combination of warming and eCO2, leaf temperature was higher than that of leaves from the warming or eCO2 treatments. Thus, warming counterbalanced the effects of CO2 on transpiration and soil water content but not on stomatal functioning, which was independent of temperature treatment. Under warming, and in combination with eCO2, leaves also produced more carotenoids and a more efficient heat and fluorescence dissipation. Our combined results suggest that control on stomatal opening under eCO2 was not changed by a warmer environment; however, their combination significantly improved whole-plant functioning

    Blood pressure levels and hipertension prevalence in 16 to 25 year-old students in Botucatu, S. Paulo, Brazil. A comparative study of two successive cohorts, 1975-1976

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    Com o objetivo de determinar os níveis de pressão arterial e a prevalência de hipertensão arterial em uma população jovem, foram realizados pesquisas em dois anos sucessivos em 1.288 e 736 estudantes de Botucatu, SP (Brasil) tendo sido comparados os resultados obtidos. As médias das pressões sistólicas da população estudada e dos dois grupos etários desta população (16 a 20 anos e 21 a 25 anos) foram idênticas em ambos os anos, tendo as médias das pressões diastólicas diferido de no máximo 2 mmHg; as médias, tanto sistólicas quanto diastólicas, dos dois sexos e da parcela branca da população estudada quanto à idade e sexo também diferiram de no máximo 2 mmHg. As médias da população estudada e sua parcela branca, em ambos os anos, foram superiores no sexo masculino e no grupo etário de 21 a 25 anos. Na população negra e amarela houve disparidade de resultados entre 1975 e 1976, indicando influência da exiguidade do tamanho dos contigentes negro e amarelo desta população. A prevalência de hipertensão arterial (pressão sistólica igual ou maior que 140 mmHg e diastólica igual ou maior que 90 mmHg) foi de 5,04% em 1975 e 6,22% em 1976, tendo sido em ambos os anos maior no sexo masculino do que no feminino e no grupo de 21 a 25 do que no de 16 a 20 anos.To determine the prevalence of hypertension and blood pressure levels in a young population group, two groups, one of 1288 students and another of 736, all from Botucatu, were investigated during two consecutive years, and the results were then compared. The mean values for systolic readings of the whole population, as for the two age groups (16 to 20 and 21 to 25 years old), were identical for both years studied; the diastolic mean values differed by 2 mmHg at most. The mean systolic and diastolic reading for both sexes and among the whites also differed by 2 mmHg at most. The mean values for the whole population and among the white population were higher for males than for females, and also higher in the 21 to 25 age group than in the 16 to 20 group. The 1975 and 1976 results for the black and yellow population were inconsistent, reflecting the influence of the small size of these groups. The prevalence of arterial hypertension (systolic readings equal to or higher than 140 mmHg and diastolic readings equal to or higher than 90 mmHg) was 5.04% in 1975 and 6.22% in 1976, being higher in the males than in the females and higher in the 21 to 25 age group than in the 16 to 20 year-old group

    Integrated systems improve the sustainability of soybean cultivation in the tropical region

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    Inter-cropping between annual crops with tropical forages through integration crop-livestock systems (ICL) is considered a sustainable option to increase crop diversity and soybean productivity. In this study, we evaluated (1) the biomass production, desiccation efficiency, nutrient accumulation, and biomass decomposition of soil crop residues produced by Panicum maximum plants intercropped with maize in two different sowing methods during the second harvest and (2) investigated how soil crop residues impact the productivity of soybean. The experiment was conducted in a complete block design with three replicates. We compared conventional soybean cultivation with soybean cultivated over soil crop residues produced by a previous integration between maize and two Panicum maximum cultivars: Tamani and Zuri guinea grass, within and between rows of maize plants. Our results showed that Tamani guinea grass showed the highest desiccation efficiency. Zuri and Tamani guinea grass cultivated within and between maize plants resulted in higher biomass production and nutrient cycling potential, resulting in an increase of 28.4% in soybean productivity, compared to soybean grown without soil crop residues. We concluded that ICL system is an efficient method to increase the sustainability of soybean cultivation

    Upper lithospheric structure of the subduction zone offshore of southern Arauco peninsula, Chile, at ~38°S

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    A joint interpretation of swath bathymetric, seismic refraction, wide-angle reflection, and multichannel seismic data was used to derive a detailed tomographic image of the Nazca-South America subduction zone system offshore southern Arauco peninsula, Chile at similar to 38 degrees S. Here, the trench basin is filled with up to 2.2 km of sediments, and the Mocha Fracture Zone (FZ) is obliquely subducting underneath the South American plate. The velocity model derived from the tomographic inversion consists of a similar to 7-km-thick oceanic crust and shows P wave velocities typical for mature fast spreading crust in the seaward section of the profile, with uppermost mantle velocities >8.4 km s(-1). In the trench-outer rise area, the top of incoming oceanic plate is pervasively fractured and likely hydrated as shown by extensional faults, horst-and-graben structures, and a reduction of both crustal and mantle velocities. These slow velocities are interpreted in terms of extensional bending-related faulting leading to fracturing and hydration in the upper part of the oceanic lithosphere. The incoming Mocha FZ coincides with an area of even slower velocities and thinning of the oceanic crust (10-15% thinning), suggesting that the incoming fracture zone may enhance the flux of chemically bound water into the subduction zone. Slow mantle velocities occur down to a maximum depth of 6-8 km into the upper mantle, where mantle temperatures are estimated to be 400-430 degrees C. In the overriding plate, the tomographic model reveals two prominent velocity transition zones characterized by steep lateral velocity gradients, resulting in a seismic segmentation of the marine fore arc. The margin is composed of three main domains: (1) a similar to 20 km wide frontal prism below the continental slope with Vp <= 3.5 km s(-1), (2) a similar to 50 km area with Vp = 4.5-5.5 km s(-1), interpreted as a paleoaccretionary complex, and (3) the seaward edge of the Paleozoic continental framework with Vp >= 6.0 km s(-1). Frontal prism velocities are noticeably lower than those found in the northern erosional Chile margin, confirming recent accretionary processes in south central Chile
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