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High concentrations of Na+ and Cl– ions in soil solution have simultaneous detrimental effects on growth of faba bean under salinity stress

机译:盐分胁迫下土壤溶液中高浓度的Na +和Cl-离子对蚕豆的生长同时具有有害作用

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摘要

Despite the fact that most plants accumulate both sodium (Na+) and chloride (Cl) ions to high concentration in their shoot tissues when grown in saline soils, most research on salt tolerance in annual plants has focused on the toxic effects of Na+ accumulation. There have also been some recent concerns about the ability of hydroponic systems to predict the responses of plants to salinity in soil. To address these two issues, an experiment was conducted to compare the responses to Na+ and to Cl separately in comparison with the response to NaCl in a soil-based system using two varieties of faba bean (Vicia faba), that differed in salinity tolerance. The variety Nura is a salt-sensitive variety that accumulates Na+ and Cl to high concentrations while the line 1487/7 is salt tolerant which accumulates lower concentrations of Na+ and Cl. Soils were prepared which were treated with Na+ or Cl by using a combination of different Na+ salts and Cl salts, respectively, or with NaCl. While this method produced Na+-dominant and Cl-dominant soils, it unavoidably led to changes in the availability of other anions and cations, but tissue analysis of the plants did not indicate any nutritional deficiencies or toxicities other than those targeted by the salt treatments. The growth, water use, ionic composition, photosynthesis, and chlorophyll fluorescence were measured. Both high Na+ and high Cl reduced growth of faba bean but plants were more sensitive to Cl than to Na+. The reductions in growth and photosynthesis were greater under NaCl stress and the effect was mainly additive. An important difference to previous hydroponic studies was that increasing the concentrations of NaCl in the soil increased the concentration of Cl more than the concentration of Na+. The data showed that salinity caused by high concentrations of NaCl can reduce growth by the accumulation of high concentrations of both Na+ and Cl simultaneously, but the effects of the two ions may differ. High Cl concentration reduces the photosynthetic capacity and quantum yield due to chlorophyll degradation which may result from a structural impact of high Cl concentration on PSII. High Na+ interferes with K+ and Ca2+ nutrition and disturbs efficient stomatal regulation which results in a depression of photosynthesis and growth. These results suggest that the importance of Cl toxicity as a cause of reductions in growth and yield under salinity stress may have been underestimated.
机译:尽管大多数植物在盐渍土壤中生长时,其芽组织中的钠离子(Na + )和氯离子(Cl )都会积累到很高的浓度,但大多数研究一年生植物的耐盐性主要集中在Na + 积累的毒性作用上。最近也有人对水培系统预测植物对土壤盐分响应的能力感到担忧。为了解决这两个问题,进行了一项实验,比较了土壤基系统中Na + 和Cl 的响应与NaCl的响应的比较。耐盐性不同的两种蚕豆(Vicia faba)。 Nura品种是一种盐敏感品种,可将Na + 和Cl 累积到高浓度​​,而品系1487/7是耐盐的,可累积较低浓度的Na + 和Cl 。通过使用不同的Na + 盐和Cl 的组合,制备了用Na + 或Cl 处理过的土壤。分别用盐或氯化钠。尽管此方法产生的土壤主要为Na + 和Cl ,但不可避免地导致其他阴离子和阳离子的利用率发生变化,但是植物的组织分析确实除盐处理所针对的营养缺陷或毒性外,不表示任何营养缺陷或毒性。测量其生长,用水,离子组成,光合作用和叶绿素荧光。高Na + 和高Cl 均降低了蚕豆的生长,但植物对Cl 的敏感性高于对Na + 。在NaCl胁迫下,生长和光合作用的减少幅度更大,其影响主要是累加的。与以前的水耕研究的一个重要区别是,增加土壤中NaCl的浓度比增加Na + 的浓度增加的Cl 浓度。数据表明,高浓度的NaCl引起的盐度可通过同时积累高浓度的Na + 和Cl 来减少生长,但是这两种离子的影响可能有所不同。高Cl 浓度会降低叶绿素降解引起的光合能力和量子产率,这可能是由于高Cl 浓度对PSII的结构影响所致。高Na + 会干扰K + 和Ca 2 + 的营养,并干扰有效的气孔调节,导致光合作用和生长受到抑制。这些结果表明,Cl 毒性作为盐分胁迫下生长和产量下降的原因的重要性可能被低估了。

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