首页> 外文期刊>Communications in Soil Science and Plant Analysis >Effectiveness of water-saving superabsorbent polymer in soil water conservation for oat based on ecophysiological parameters.
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Effectiveness of water-saving superabsorbent polymer in soil water conservation for oat based on ecophysiological parameters.

机译:节水型高吸收性聚合物在燕麦土壤水分保护中的生态生理参数效应。

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摘要

The objective of the study was to study soil water conservation and physiological growth of oat (Avena sativa L.) using water-saving superabsorbent polymer (SAP) at 60 kg ha-1. The effectiveness of SAP was studied under three irrigation levels (adequate, moderate, and deficient) using a new type of negative hydraulic pressure-controlled auto-irrigator. Seven weeks after sowing (WAS), the number of tillers and leaves increased significantly by 33 and 40%, respectively, under deficient irrigation due to application of SAP. The SAP had little effects on shoot dry mass (SDM) and root dry mass (RDM) under adequate and moderate irrigation but increased both parameters significantly (59 and 45%) under deficient irrigation. As a result, the water-use efficiency (WUE) increased substantially (50%) under deficient irrigation. Leaf water potential ( psi 1) under adequate irrigation exceeded that under moderate and deficient irrigation by 26.4 and 39.6%, respectively, and the application of SAP further increased it by 7.2%. The superior growth and WUE of oat treated with SAP under deficient irrigation was ascribed to maintenance of greater relative water content (RWC) in leaves as well as intercellular carbon dioxide concentration (Ci), net photosynthesis (PN), and transpiration rate. It is suggested that the application of SAP is a suitable soil management practice for locations characterized by severe water stress.
机译:本研究的目的是使用节水型超吸收性聚合物(SAP)在60 kg ha -1 L.)的土壤水分养护和生理生长>。使用新型负液压控制自动灌溉机,在三种灌溉水平(适度,中度和不足)下研究了SAP的有效性。播种后七周(WAS),由于使用SAP导致灌溉不足,分ers和叶片的数量分别显着增加了33%和40%。在适当和适度的灌溉条件下,SAP对茎干质量(SDM)和根系干燥质量(RDM)的影响很小,但在灌溉不足的情况下,两个参数均显着增加(59和45%)。结果,在灌溉不足的情况下,用水效率(WUE)大大提高了(50%)。适量灌溉下的叶片水势(psi 1 )分别比中度和不足灌溉下的分别高出26.4%和39.6%,SAP的应用进一步提高了7.2%。灌溉不足的条件下,SAP处理过的燕麦具有较高的生长和WUE,这归因于维持较高的叶片相对含水量(RWC)以及细胞间二氧化碳浓度(Ci),净光合作用(P N )和蒸腾速率。建议在有严重水分胁迫的地区使用SAP是一种合适的土壤管理方法。

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