首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Saline soil desalination by honeysuckle (Lonicera japonica Thunb.) depends on salt resistance mechanismKun
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Saline soil desalination by honeysuckle (Lonicera japonica Thunb.) depends on salt resistance mechanismKun

机译:金银花对盐渍土壤的脱盐作用取决于抗盐机理

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Honeysuckle (Lonicera japonica Thunb.) is a traditional medicinal plant in China. This study aimed to investigate the relation between salt tolerance mechanism in honeysuckle and phytodesalination of saline soil through field trial. In April, 2014, honeysuckle plants were transplanted to non-saline and moderate saline plots. Six months later, Na+ concentration, Na+ adsorption ratio and electrical conductance in tilth soil were significantly lowered by honeysuckle in moderate saline plots, suggesting that saline soil was desalinized. Due to the inhibition on plant growth, the estimated phytodesalination capacity by shoot Na+ accumulation was only 8.71 kg Na+ ha 1, which seemed very limited compared with succulent halophytes. Therefore, soil desalination by honeysuckle should depend on Na+ leaching rather than shoot Na+ accumulation. Respiration rate and Na+ extrusion in roots were elevated by salinity, and they were significantly and positively correlated, indicating the importance of root respiration for resisting Na+ uptake. The elevated root respiration might aid in dissolving calcite by releasing more CO2 into soil, and consistently, Ca2+ concentration in tilth soil was remarkably increased by honeysuckle in moderate saline plots in contrast to no significant change in non-saline plots. As a result, Na+ leaching could be facilitated, as Na+ at the exchange site would be efficiently replaced by Ca2+. In conclusion, salt-induced elevation of root respiration enhanced salt resistance of honeysuckle by increasing Na+ extrusion and could assist in desalinizing saline soil by improving Na+ leaching. (C) 2015 Elsevier B.V. All rights reserved.
机译:金银花(忍冬)是中国的传统药用植物。本研究旨在通过田间试验研究金银花的耐盐性机制与盐渍土的植物脱盐作用之间的关系。 2014年4月,金银花植物被移植到非盐和中度盐渍地。 6个月后,金银花在中度盐渍地上显着降低了斜纹土壤中的Na +浓度,Na +吸附率和电导率,表明盐渍土已被脱盐。由于对植物生长的抑制作用,由芽Na +积累估算的植物脱盐能力仅为8.71 kg Na + ha 1,与肉质盐生植物相比似乎非常有限。因此,金银花对土壤的脱盐作用应依赖于Na +的浸出而不是芽Na +的积累。盐分提高了根系的呼吸速率和Na +的释放,并且它们之间呈显着正相关,表明根系呼吸对于抵抗Na +吸收的重要性。较高的根部呼吸作用可能通过向土壤中释放更多的CO2来帮助溶解方解石,并且一致地,金银花在适度盐渍地中显着提高了倾斜土壤中的Ca2 +浓度,而在非盐渍地中则无显着变化。结果,可以促进Na +的浸出,因为交换位点上的Na +将被Ca 2+有效替代。总之,盐诱导的根系呼吸的升高通过增加Na +的含量而增强了金银花的耐盐性,并且可以通过改善Na +的浸出来帮助盐渍土壤脱盐。 (C)2015 Elsevier B.V.保留所有权利。

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