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Organic solutes in coconut palm seedlings under water and salt stresses

机译:水分和盐胁迫下椰子棕榈幼苗中的有机溶质

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The objective of this study was to investigate the biochemical mechanisms associated with isolated and/or concurrent actions of drought and soil salinity in seedlings of coconut tree, through the accumulation of organic solutes (soluble carbohydrates, soluble amino N and free proline) in leaves and roots. The experiment, conducted in a protected environment, in Fortaleza, Brazil, in a randomized block design, in a split-plot arrangement, evaluated the effects of different levels of water stress (plots) by imposing distinct percentages of replacement of water losses through crop potential evapotranspiration - ETpc (20, 40, 60, 80 and 100%), associated with subplots consisting of increasing levels of soil salinity in saturation extract (1.72, 6.25, 25.80 and 40.70 dS m-1) provided by the soils collected in the Irrigated Perimeter of Morada Nova. Salinity did not change the concentration of organic solutes; however, there were increases in leaf and root levels of free proline in response to water stress, which contributes to the osmoregulation and/or osmoprotection of the species under adverse conditions of water supply.
机译:这项研究的目的是通过在叶片和叶片中积累有机溶质(可溶性碳水化合物,可溶性氨基氮和游离脯氨酸)来研究与椰子树幼苗中干旱和土壤盐分的孤立和/或同时发生的干旱相关的生化机制。根。该实验是在巴西福塔莱萨的受保护环境中进行的,采用随机区组设计,分块布置的方式,通过施加不同百分比的作物失水替代量来评估不同水平的水分胁迫(曲线)的影响。潜在蒸散量-ETpc(20%,40%,60%,80%和100%),与子图相关,包括饱和土壤提取物中土壤盐分水平的提高(1.72、6.25、25.80和40.70 dS m-1)。莫拉达新星的灌溉边界。盐度并没有改变有机溶质的浓度。然而,由于水分胁迫,游离脯氨酸的叶和根水平增加,这在不利的供水条件下有助于该物种的渗透调节和/或渗透保护。

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