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首页> 外文期刊>Plant and Soil >Osmotic adjustment and ion balance traits of an alkali resistant halophyte Kochia sieversiana during adaptation to salt and alkali conditions
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Osmotic adjustment and ion balance traits of an alkali resistant halophyte Kochia sieversiana during adaptation to salt and alkali conditions

机译:耐碱盐生植物Kochia sieversiana在适应盐和碱性条件下的渗透调节和离子平衡特征

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摘要

Kochia sieversiana (Pall.) C. A. M., a naturally alkali-resistant halophyte, was chosen as the test organism for our research. The seedlings of K. sieversiana were treated with varying (0–400 mM) salt stress (1:1 molar ratio of NaCl to Na2SO4) and alkali stress (1:1 molar ratio of NaHCO3 to Na2CO3). The concentrations of various solutes in fresh shoots, including Na+, K+, Ca2+, Mg2+, Cl?, SO 4 2? , NO 3 ? , H2PO 3 ? , betaine, proline, soluble sugar (SS), and organic acid (OA), were determined. The water content (WC) of the shoots was calculated and the OA components were analyzed. Finally, the osmotic adjustment and ion balance traits in the shoots of K. sieversiana were explored. The results showed that the WC of K. sieversiana remained higher than 6 [g g?1 Dry weight (DW)] even under the highest salt or alkali stress. At salinity levels >240 mM, proline concentrations increased dramatically, with rising salinity. We proposed that this was not a simple response to osmotic stress. The concentrations of Na+ and K+ all increased with increasing salinity, which implies that there was no competitive inhibition for absorption of either in K. sieversiana. Based on our results, the osmotic adjustment feature of salt stress was similar to that of alkali stress in the shoots of K. sieversiana. The shared essential features were that the shoots maintained a state of high WC, OA, Na+, K+ and other inorganic ions, accumulated largely in the vacuoles, and betaine, accumulated in cytoplasm. On the other hand, the ionic balance mechanisms under both stresses were different. Under salt stress, K. sieversiana accumulated OA and inorganic ions to maintain the intracellular ionic equilibrium, with close to equal contributions of OA and inorganic ions to anion. However, under alkali stress, OA was the dominant factor in maintaining ionic equilibrium. The contribution of OA to anion was as high as 84.2%, and the contribution of inorganic anions to anion was only 15.8%. We found that the physiological responses of K. sieversiana to salt and alkali stresses were unique, and that mechanisms existed in it that were different from other naturally alkali-resistant gramineous plants, such as Aneurolepidium chinense, Puccinellia tenuiflora.
机译:天然抗碱的盐生植物Kochia sieversiana(Pall。)C. A. M.被选为我们研究的测试生物。用不同的盐胁迫(0–400 mM)(1 NaCl与Na2 SO4 的摩尔比)和碱胁迫(1∶1的NaHCO3 <1的摩尔比)处理K. sieversiana幼苗。 / sub>转化为Na2 CO3 )。 Na + ,K + ,Ca2 + ,Mg2 + ,Cl2 ,SO 4 2?< / sup>,NO 3 ,H2 PO 3 ,甜菜碱,脯氨酸,可溶性糖(SS)和有机酸(OA),被确定。计算芽的含水量(WC),并分析OA成分。最后,探讨了K. sieversiana芽的渗透调节和离子平衡性状。结果表明,即使在最高盐或碱胁迫下,K。sieversiana的WC仍高于6 [g g?1 干重(DW)]。在盐度水平> 240 mM时,脯氨酸浓度随着盐度的升高而急剧增加。我们提出,这不是对渗透压的简单反应。 Na + 和K + 的浓度均随盐度的增加而增加,这表明在无刺小球藻中均无竞争性抑制其吸收。根据我们的结果,盐胁迫的渗透调节特征与K. sieversiana芽的碱胁迫相似。共有的基本特征是枝条保持高WC,OA,Na + ,K + 和其他无机离子的状态,这些离子主要积累在液泡中,而甜菜碱则积累在细胞质中。另一方面,两种应力下的离子平衡机理是不同的。在盐胁迫下,K。sieversiana累积OA和无机离子以维持细胞内离子平衡,而OA和无机离子对阴离子的贡献几乎相等。但是,在碱胁迫下,OA是维持离子平衡的主要因素。 OA对阴离子的贡献高达84.2%,而无机阴离子对阴离子的贡献仅为15.8%。我们发现K. sieversiana对盐和碱胁迫的生理反应是独特的,并且其存在的机制不同于其他自然抗碱的禾本科植物,例如羊草,Puccinellia tenuiflora。

著录项

  • 来源
    《Plant and Soil》 |2007年第2期|263-276|共14页
  • 作者单位

    Ministry of Education Key Laboratory of Vegetation Ecology Northeast Normal University 130024 Changchun Jilin Province China;

    Ministry of Education Key Laboratory of Vegetation Ecology Northeast Normal University 130024 Changchun Jilin Province China;

    Ministry of Education Key Laboratory of Vegetation Ecology Northeast Normal University 130024 Changchun Jilin Province China;

    Department of Horticulture Sariwon Agricultural University Sariwon Democractic Peoples Republic of Korea;

    Ministry of Education Key Laboratory of Vegetation Ecology Northeast Normal University 130024 Changchun Jilin Province China;

    Ministry of Education Key Laboratory of Vegetation Ecology Northeast Normal University 130024 Changchun Jilin Province China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Kochian sieversiana; Salt stress; Alkali stress; Osmotic adjustment; Ion balance;

    机译:Kochian sieversiana;盐胁迫;碱胁迫;渗透调节;离子平衡;

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