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Response of Foliar Application of Nitrogen Compounds on Sugarcane Grown Under Waterlogging Stress

机译:叶面施氮化合物对淹水胁迫下甘蔗生长的响应

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Present study was aimed to assess the effect of foliar applications of nitrogen compounds (potassium nitrate, urea and calcium nitrate) on physio-biochemical attributes in sugarcane plants (Saccharum spp. hybrids, CoLk 94184) subjected to waterlogging. Single bud setts were planted in earthen pots filled with soil. The treatments included control (T1), waterlogged (WL) (T2), WL + potassium nitrate (0.5 %) (T3), WL + urea (0.3 %) (T4) and WL + calcium nitrate (0.4 %) (T5). Waterlogging was imposed by placing planted pot into a larger plastic bucket and filling it with water up to 2 cm above the soil surface. After 2, 6 and 10 weeks of waterlogging, plants were sampled for growth, biochemical and molecular studies. Results obtained indicated decrease in shoot weight, leaf area and activity of nitrate reductase (NR) and increase in root weight, plant height, MDA, proline contents and peroxidase activity due to waterlogging compared to control plants. As compared to waterlogged treatment (T2), application of nitrogen compounds increased leaf area, shoot weight and NR activity and decreased MDA content. Alcohol dehydrogenase (ADH) gene expression was up-regulated due to waterlogging (T2) and WL + nitrogen compounds in both leaf and root tissues; increase was highest in leaves of WL + urea (T4) and roots of WL + calcium nitrate treatment. Findings suggested beneficial effect of all tested nitrogen compounds on growth and biochemical attributes under waterlogged condition.
机译:本研究旨在评估叶面施氮化合物(硝酸钾,尿素和硝酸钙)对遭受涝渍的甘蔗植物(蔗糖属杂种,CoLk 94184)的生理生化特性的影响。将单芽定植在装满土壤的土盆中。处理包括对照(T1),浸水(WL)(T2),WL +硝酸钾(0.5%)(T3),WL +尿素(0.3%)(T4)和WL +硝酸钙(0.4%)(T5) 。通过将种植的花盆放入一个更大的塑料桶中并在土壤表面上方2 cm处注满水来进行渍水。在淹水2、6和10周后,对植物取样进行生长,生化和分子研究。与对照植物相比,所获得的结果表明由于浸水,枝条重量,叶面积和硝酸还原酶(NR)活性降低,根重,植物高度,MDA,脯氨酸含量和过氧化物酶活性增加。与淹水处理(T2)相比,施用氮化合物增加了叶面积,苗重和NR活性,并降低了MDA含量。酒精脱氢酶(ADH)基因的表达由于叶和根组织中的渍水(T2)和WL +氮化合物而被上调。 WL +尿素(T4)的叶片和WL +硝酸钙处理的根系的增幅最高。研究结果表明,在淹水条件下,所有测试的氮化合物对生长和生化特性都有有益的影响。

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