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Effect of salinity and soil temperature on the growth and physiology of drip-irrigated rice seedlings

机译:盐度和土壤温度对滴灌水稻幼苗生长和生理的影响

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摘要

Drip irrigation offers potential for rice (Oryza sativa L.) production in regions where water resources are limited. However, farmers in Chinas Xinjiang Province report that drip-irrigated rice seedlings sometimes suffer salt damage. The objective of this study was to learn more about the effects of soil salinity and soil temperature on the growth of drip-irrigated rice seedlings. The study consisted of a two-factor design with two soil salinity treatments (0 and 1.8 g kg(-1) NaCl) and three soil temperature treatments (18 degrees C, 28 degrees C and 36 degrees C). The results showed that shoot biomass, root biomass and root vigor were greatest when seedlings were grown with no salt stress (0 g kg(-1) NaCl) at 28 degrees C. Moderate salt stress (1.8 g kg(-1) NaCl) combined with high temperature (36 degrees C) significantly reduced root and shoot biomass by 39-53%. Moderate salt stress and high temperature also increased root proline concentration by 77%, root malonyldialdehyde concentration by 60% and seedling mortality by 60%. Shoot and root Na+ concentrations, shoot and root Na+ uptake and the Na+ distribution ratio in shoots were all the greatest when moderate salt stress was combined with high temperature. In conclusion, high soil temperature aggravates salt damage to drip-irrigated rice seedlings. Therefore, soil salinity should be considered before adopting drip-irrigation for rice production.
机译:滴灌灌溉提供水资源有限的地区稻米(Oryza Sativa L.)生产的潜力。然而,中国在中国新疆省的农民报告说,滴灌的水稻幼苗有时会遭受盐损伤。本研究的目的是了解有关土壤盐度和土壤温度对滴灌水稻幼苗生长的影响。该研究包括双因素设计,具有两个土壤盐度处理(0和1.8g kg(-1)NaCl)和三种土壤温度处理(18℃,28℃和36℃)。结果表明,当幼苗生长时,芽生物质,根生物质和根部活力在28℃下的盐胁迫下(0g kg(-1)NaCl),中等盐胁迫(1.8g kg(-1)NaCl)结合高温(36℃),显着减少根和芽生物质39-53%。中等盐胁迫和高温也将根脯氨酸浓度增加77%,根月状单醛浓度浓度60%,幼苗死亡率为60%。芽和根Na +浓度,芽和根Na +摄取和芽中的Na +分布比当中等盐应激与高温合并时最大。总之,高土壤温度会加剧浸泡水稻幼苗的盐损伤。因此,在采用水稻生产之前应考虑土壤盐度。

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