首页> 外文期刊>Journal of Plant Nutrition >SOIL PLUS FOLIAR NITROGEN APPLICATION INCREASES COTTON GROWTH AND SALINITY TOLERANCE
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SOIL PLUS FOLIAR NITROGEN APPLICATION INCREASES COTTON GROWTH AND SALINITY TOLERANCE

机译:土壤加叶状氮应用增加棉花生长和盐度耐受性

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摘要

Soil or foliar application of nitrogen (N) can increase plant growth and salinity tolerance in cotton, but a combination of both methods is seldom studied under salinity stress. A pot experiment was conducted to study the effects of soil application (S), foliar application (F), and a combination of both (S+F) with labeled nitrogen (N-15) on cotton growth, N uptake and translocation under salinity stress (ECe = 12.5 dS m(-1)). Plant biomass, leaf area, leaf chlorophyll (Chl) content, leaf net photosynthetic (Pn) rate, levels of N-15 and [Na+] and K+/ Na+ ratio in plant tissues were determined at 3, 7, 14 and 28days after N application (DAN). Results showed that soil or foliar nitrogen fertilization improved plant biomass, leaf area per plant and leaf photosynthesis, and a combination of soil- plus foliar-applied N was superior to either S or F alone under salinity stress. Although foliar application favored a rapid accumulation of leaf N and soil application a rapid accumulation of root N, S+F enhanced N accumulation in both leaf and root under salinity stress. The combined N application also maintained significantly greater [K+] and K+/Na+ than either soil or foliar application alone. Therefore, the improved plant growth and salinity tolerance under S+F relative to soil or foliar N application alone was attributed to the increased total uptake of N, balanced N concentrations in different tissues through enhanced uptake and accumulation in both leaves and roots, and higher ratio of K+/Na+.
机译:氮气(n)的土壤或叶面施用可以提高棉花的植物生长和盐度耐受性,但两种方法的组合很少在盐度胁迫下研究。进行了一种盆栽实验以研究土壤应用,叶面施用(F),以及(S + F)与标记氮(N-15)的组合对棉花生长,N采用和易位的组合压力(ECE = 12.5ds m(-1))。在n后,在3,7,14和28天测定植物生物质,叶面积,叶片叶绿素(CHL)含量,叶净光合(Pn)率,N-15和[Na +]和[Na +]和K + / Na +的比例申请书(丹)。结果表明,土壤或叶面氮肥改善了植物生物质,每株植物和叶片光合作用,以及土壤 - 加叶面涂覆的N的组合优于盐度胁迫下的S或F。虽然叶面应用有利于叶N和土壤应用的快速积累,但在盐度胁迫下,叶片和根部的根部N,S + F的快速积累的迅速积累。合并的N申请也比单独的土壤或叶面施用保持明显更大的[K +]和K + / Na +。因此,单独的S + F下的植物生长和盐度耐盐度的改善归因于不同组织中N,平衡N浓度的总摄取增加,通过叶子和根部的增强和积累,更高K + / Na +的比例。

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