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盐碱胁迫下沙地彰武松和樟子松苗木生理特性

孟鹏1,2,李玉灵1**,张柏习2   

  1. 1河北农业大学, 河北保定 071000; 2辽宁省固沙造林研究所, 辽宁阜新 123000)
  • 出版日期:2013-02-18 发布日期:2013-02-18

Physiological characteristics of Pinus densiflora var. zhangwuensis and Pinus sylvestris var. mongolica seedlings on sandy lands under salt-alkali stresses.

MENG Peng1,2, LI Yu-ling1, ZHANG Bai-xi2   

  1. (1Agricultural University of Hebei, Baoding 071000, Heibei, China; 2Liaoning Province SandFixation and Afforestation Research Institute, Fuxin 123000, Liaoning, China)
  • Online:2013-02-18 Published:2013-02-18

摘要: 为了在北方沙漠化、盐碱化土地上推广应用沙地彰武松这一新的造林树种,客观评价彰武松的耐盐碱性及其耐盐碱机理,本文以4年生的彰武松和樟子松为试材,采用盆栽试验方法,研究NaCl、Na2CO3和NaHCO3 3种单盐胁迫及NaOH碱胁迫对苗木生长和叶片生理生化特性的影响.结果表明: 盐碱胁迫下,彰武松苗木的受害级别较小,根系忍耐指数较大,叶片的过氧化氢酶(CAT)活性显著提高,最高为对照的22.6倍,丙二醛(MDA)含量没有显著提高,叶绿素(Chl)含量降幅较小,其叶片含水量(LWC)有所提高.樟子松则表现出与彰武松不同的变化规律,各处理MDA含量显著提高,CAT活性没有显著变化,Chl含量显著下降,LWC有所下降.说明彰武松的耐盐碱性高于樟子松.彰武松针叶内较高的Fe含量使其CAT活性和Chl含量较高,而Zn、Cu含量较高与其抗性强有关.

Abstract: For the popularization of Pinus densiflora var. zhangwuensis, a new afforestation tree species on the desertified and salinized-alkalized lands in Northern China, and to  evaluate the salinityalkalinity tolerance of the tree species and to better understand the tolerance mechanisms, a pot experiment with 4year old P. densiflora var. zhangwuensis and P. sylvestris var. mongolica was conducted to study their seedlings growth and physiological and biochemical indices under the effects of three types salt (NaCl, Na2CO3, and NaHCO3) stresses and of alkali (NaOH) stress. Under the saltalkali stresses, the injury level of P. densiflora var. zhangwuensis was lower, and the root tolerance index was higher. The leaf catalase (CAT) activity increased significantly by 22.6 times at the most, as compared with the control; the leaf malondialdehyde (MDA) content had no significant increase; the leaf chlorophyll (Chl) content had a smaller decrement; and the leaf water content (LWC) increased slightly. P. sylvestris var. mongolica responded differently to the salt-alkali stresses. Its leaf CAT activity had less change, MDA content increased significantly, Chl content had significant decrease, and LWC decreased slightly. It was suggested that P. densiflora var. zhangwuensis had a greater salinity-alkalinity tolerance than P. sylvestris var. mongolica. The higher iron concentration in P. densiflora var. zhangwuensis needles enhanced the CAT activity and Chl content, whereas the higher concentrations of zinc and copper were associated with the stronger salinity-alkalinity tolerance.