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Rice development and water demand under drought stress imposed at distinct growth stages

机译:处于不同生育阶段的干旱胁迫下的水稻发展和需水

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This study aimed to establish a comparison for theoretical water demand between rice plants grown under flooding and under different levels of water stress, imposed at distinct crop stages, in terms of plant morpho-physiology and phenology. The experiment was installed in a greenhouse, using complete randomized design and factorial scheme 3?×?4?+?1, with four replications. Factor “A” was defined as the growth stage when water stress was imposed on the treatments, these stages being (1) vegetative, (2) reproductive?1, and (3) reproductive?2; factor “B” was composed of four levels of water stress (0?to 200?kPa). The additional treatment consisted of a flooded check. Water was replenished back to saturation every time the threshold stress level was reached. There is damage to rice growth and development in water tensions greater than 30?kPa when applied between tillering start and anthesis. Main damage was observed as reduced rates of culm growth; leaf area tended to be maintained. Water luxury consumption by rice plants grown under flooding seems to be about 23% of the total demand, compared to the other irrigated treatments. The rice field should be irrigated back to saturation when soil water tension is between 10?kPa and 30?kPa. Overall, theoretical crop coefficient (Kc) for rice under sprinkler irrigation is about 20% lower than that observed for the flooded check.
机译:这项研究旨在就植物形态生理学和物候学方面,对在洪水和不同水平的水分胁迫下生长于不同作物阶段的水稻植物之间的理论需水量进行比较。将实验安装在温室中,采用完全随机设计和阶乘方案3?×?4?+?1,一式四份。因子“ A”被定义为在施加水分胁迫时的生长阶段,这些阶段是(1)营养,(2)生殖?1和(3)生殖?因子“ B”由四个水平的水分胁迫(0?至200?kPa)组成。额外的处理包括充水检查。每次达到阈值应力水平时,水就会补充到饱和状态。在分till开始和开花期之间施肥时,如果水分张力大于30?kPa,会对水稻的生长发育造成损害。观察到主要损害是茎秆生长速率降低。叶面积倾向于保持。与其他灌溉处理相比,淹水后种植的水稻植物的水奢侈消费量约占总需求的23%。当土壤水分张力在10?kPa和30?kPa之间时,应将稻田灌溉回饱和。总体而言,喷灌条件下水稻的理论作物系数(Kc)比水淹检查的理论作物系数低约20%。

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