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机构地区:[1]农业部植物营养学重点实验室
出 处:《中国农业科技导报》2005年第4期46-50,共5页Journal of Agricultural Science and Technology
基 金:“十五”国家科技攻关计划重大专项课题资助项目(2002BA516A03)。
摘 要:对持续干旱处理的盆栽春小麦,分别在扬花期前、后和灌浆期3次喷施50、100和150mg/L的含1.1g/LNa+的硝基黄腐酸钠混合液,可以提高春小麦对有限水分的利用效率。试验中以50mg/L喷施浓度的抗旱效果最好,较对照增产9.4%;生育期总耗水量减少13%,较喷水处理增产27.6%。此外,浸种试验中硝基黄腐酸钠混合液所表现出的提高春小麦发芽率和苗期植株含水量的作用是硝基黄腐酸钠及硝酸钠(工艺副产物)的叠加效应。而喷施100mg/L含与Na+等摩尔浓度(4.6g/L)K+的硝基黄腐酸钾混合液较喷水处理减产7.6%,有抑制效应。Utility efficiency of limited water on spring wheat under continuous drought stress condition, could be increased after spraying the solution of sodium nitro-fulvate three times before anthesis, after anthesis and grouting. The concentration of fulvic acid was set to be 50, 100 and 150 mg L^-1 whichcontained 1.1 g L^-1 of Na^+. Spraying concentration set to be 50 mg L^-1 had the best effect on drought resistance. It could increase 9.4 % of yield when compared with CK, but decrease 13 % of water consumption. It could also increase 27.6 % of yield when compared with the treatment of spraying water. The germination percentage and water content of spring wheat could also be increased after its seed soaked by the solution, which showed that the effect is interaction between the two main components, sodium nitro-fulvate and sodium nitrate. However, spraying potassium nitro-fulvate, which contained 100 mg L^-1 of fulvic acid and 1.8 g L^-1 of K^+ led to decrease 7.6 % of yield when compared with the treatment of spraying water. It restrained the growth of spring wheat.
分 类 号:S153[农业科学—土壤学] S512.1[农业科学—农业基础科学]
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