首页> 外文期刊>Acta Physiologiae Plantarum >Salt tolerance of Hibiscus hamabo seedlings: a candidate halophyte for reclamation areas.
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Salt tolerance of Hibiscus hamabo seedlings: a candidate halophyte for reclamation areas.

机译:木槿hamabo幼苗的耐盐性:垦区的候选盐生植物。

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摘要

In order to evaluate the salinity tolerance of Hibiscus hamabo Siebold & Zuccarini (Malvaceae), a candidate halophyte for reclamation areas, we analyze the effects of NaCl concentration, ranging from 0 to 500 mM, on the morphological, photosynthetic and chlorophyll fluorescent traits of this species. The optimal concentration for the germination of H. hamabo was 25 mM NaCl, and the optimal concentration for the survival and growth of H. hamabo ranged from 5 to 10 mM NaCl. Growth traits of H. hamabo at 25 mM, including the plant height, canopy diameter, number of leaves and width of the largest leaf, showed no statistical differences from the control. Net photosynthetic rate, stomatal conduction, light utilization efficiency, water utilization efficiency, maximal photosynthetic rate, light saturation point and chlorophyll content were the highest at 7.5 mM NaCl. Fv/Fm and Fv/F0 at 5 and 7.5 mM were significantly higher than the others, while F0 was significantly lower. Fm and Fv at NaCl concentrations ranging from 2.5 to 10 mM were significantly higher than the others. Pearson correlation analysis showed that the chlorophyll content, maximal photosynthetic rate and light saturation point were significantly positively correlated with the number of leaves, while F0 was significantly negatively correlated with the width of the largest leaf. Light compensation point was significantly negatively correlated with plant height, leaf number, width of the largest leaf and canopy diameter, and might be a good indicator for the salt tolerance of H. hamabo.CAS Registry Numbers 1406-65-1 7647-14-5
机译:为了评估填海区候选盐生植物木槿(Hibiscus hamabo Siebold&Zuccarini)的耐盐性,我们分析了NaCl浓度在0至500 mM之间对形态,光合和叶绿素荧光特性的影响。种类。 H. hamabo萌发的最佳浓度为25 mM NaCl,H。hamabo存活和生长的最佳浓度为5至10 mM NaCl。 H. hamabo在25 mM时的生长特性,包括株高,冠层直径,叶片数和最大叶片宽度,与对照组无统计学差异。净光合速率,气孔导度,光利用效率,水分利用效率,最大光合速率,光饱和点和叶绿素含量最高,为7.5 mM NaCl。 F v / F m 和F v / F 0 在5和7.5 mM时显着高于其他,而F 0 显着降低。 NaCl浓度在2.5至10 mM之间的F m 和F v 显着高于其他浓度。皮尔逊相关分析表明,叶绿素含量,最大光合速率和光饱和点与叶片数呈显着正相关,而F 0 与最大叶的宽度呈显着负相关。光照补偿点与株高,叶片数,最大叶片宽度和冠层直径呈显着负相关,并且可能是金缕梅耐盐性的良好指标。CAS登记号1406-65-1 7647-14- 5

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