首页> 外文期刊>Archives of Agronomy and Soil Science >Combined effects of salinity and nitrogen levels on some physiological and biochemical aspects at the halophytic forage legume Sulla carnosa
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Combined effects of salinity and nitrogen levels on some physiological and biochemical aspects at the halophytic forage legume Sulla carnosa

机译:盐度和氮水平对盐生牧草豆科植物生理生化的综合影响

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摘要

Salinity and low nitrogen availability are two major abiotic stresses that often coexist and disturb plant productivity. This study aimed at investigating the combined effects of salinity (0 and 100 mM NaCl) and nitrogen (0.5 and 5.0 mM NH4NO3) levels on the morphological parameters, the mineral status, nitrogen use efficiency, photosynthesis, and nitrate reductase (NR, E.C. 1.6.6.1) and glutamine synthetase (GS, EC 6.3.1.2) activities at Sulla carnosa.left-to-right mark Salinity enhanced growth rate (66), the relative growth rate (RGR), root volume (RV), Na+ and Cl- accumulations and nitrogen use efficiency (NUE). It had no detrimental effect on photosynthetic assimilation rate (A) and leaf NR and GS activities under high nitrogen level condition. High nitrogen availability under saline condition enhanced growth rate, RGR, shoot/root ratio, photosynthesis activity, NR activity in roots, and the accumulation of NO3- in different plant organs and all cations and anions in roots. In brief, salinity and high nitrogen availability represented an adequate condition for optimal growth and high Na+ and NO3- accumulations at S. carnosa. This study suggested that S. carnosa could be a suitable forage legume that can be widely cultivated in the discarded, salinized and nitrogen-contaminated agricultural soils.
机译:盐度和低氮有效性是两种主要的非生物胁迫,它们经常共存并干扰植物生产力。本研究旨在探究盐度(0 和 100 mM NaCl)和氮 (0.5 和 5.0 mM NH4NO3)水平对 Sulla carnosa 形态学参数、矿质状态、氮利用效率、光合作用、硝酸盐还原酶 (NR, E.C. 1.6.6.1) 和谷氨酰胺合成酶 (GS, EC 6.3.1.2) 活性的综合影响。 相对生长速率(RGR)、根体积(RV)、Na+和Cl-积累量以及氮素利用效率(NUE)。在高氮条件下,对光合同化速率(A)和叶片NR和GS活性无不利影响。盐碱条件下的高氮有效性提高了生长速率、RGR、地上部/根系比、光合作用活性、根系NR活性、不同植物器官中NO3-的积累以及根系中所有阳离子和阴离子的积累。简而言之,盐度和高氮有效性是 S. carnosa 最佳生长和高 Na+ 和 NO3- 积累的充分条件。本研究表明,卡诺萨草是一种适宜的牧草豆科植物,可在废弃、盐渍化和氮污染的农业土壤中广泛种植。

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