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林业科学 ›› 2009, Vol. 12 ›› Issue (12): 22-29.doi: 10.11707/j.1001-7488.20091204

• 论文 • 上一篇    下一篇

马尾松幼苗对模拟酸雨与铝胁迫的响应及其抗性机制

吴若菁1 庄捷2 黄婧1 陈文萍1   

  1. 1.福建师范大学生命科学学院 福州350108; 2.福建商贸学校 福州350007
  • 收稿日期:2008-11-07 修回日期:1900-01-01 出版日期:2009-12-25 发布日期:2009-12-25
  • 基金资助:
     

Responses and Resistance Mechanism of Pinus massoniana under the Stresses of Simulated Acid Rain and Aluminum

Wu Ruojing1,Zhuang Jie2,Huang Jing1,Chen Wenping1   

  1. 1. College of Life Science,Fujian Normal University Fuzhou 350108;2. Fujian Business School Fuzhou 350007
  • Received:2008-11-07 Revised:1900-01-01 Online:2009-12-25 Published:2009-12-25
  • Supported by:
     

摘要:

利用微核技术、核仁银染技术, TBA显色法、电导率仪法、NBT还原法和愈创木酚法,以及发射光谱仪测定等,对马尾松幼苗对酸雨、铝和酸雨-铝的不同胁迫条件的响应及其抗性机制的进行研究。结果表明: 1)当pH值为5.6~3.5或铝浓度为100~3 000 mg·L-1时,随着pH值的下降或铝浓度的上升,马尾松幼苗的微核率逐渐上升。不同胁迫对马尾松微核率的影响程度为酸雨-铝>铝>酸雨。2)在pH值为5.6~2.5或铝浓度为100~3 000 mg·L-1时,随着pH值的下降或铝浓度的上升,马尾松核仁平均数逐渐下降。不同胁迫对马尾松微核率的影响程度为铝>酸雨-铝>酸雨。3)随着胁迫条件的加剧,马尾松幼苗体内的MDA含量和叶片质膜伤害度不断上升,与此同时也激发其体内抗氧化酶SOD活性和POD的含量逐渐上升,但是当胁迫状况超过马尾松的自身耐受程度时,SOD活性和POD含量反而开始下降。4)在酸雨-铝的交互胁迫下,马尾松在pH值5.6~3.5之间具有较强的铝蓄积能力和耐铝性。5)马尾松的抗铝机制: 通过提高SOD和POD的合成,来降低铝的毒害与损伤; 通过产生一些物质与铝相结合形成活性较低的难溶性化合铝,使其活性和移动性降低,蓄积在根茎部,以降低其毒害作用。

关键词: 马尾松, 模拟酸雨, 铝胁迫, 遗传损伤, 生理生化响应, 抗性机制

Abstract:

This article studied responses and resistance mechanism of Pinus massoniana to different stresses of acid rain, aluminum and acid rain-aluminum by using micronucleus test and nucleoli silver staining techniques, and the other physical or chemical methods. The results showed that: 1)Micronucleus rate of P. massoniana was gradually increased with pH lowering from 5.6 to 3.5, or aluminum concentration increasing from 100 to 3 000 mg·L-1.The extent of impact of the different stress agents on the micronucleus rate was: acid rain-aluminum > aluminum > acid rain. 2) With pH declining or aluminum concentration increasing, number of Nucleoli of P. massoniana was gradually declined from 5.6 and 2.5 pH or from 100 to 3 000 mg·L-1 aluminum density. The extent of impact of the different stresses on the micronucleus rate was: acid aluminum > rain-aluminum > acid rain. 3) With the stress intensifying, MDA content of seedlings increased and leaf membrane injury degrees were aggravated, at the same time the SOD and POD activities were gradually increasing, however the enzymes activities declined after a threshold of stress intensity. 4) Under the stress of acid rain-aluminum, P. massoniana was able to accumulate aluminum and tolerate aluminum poison when the pH was between 3.5 and 5.6. 5) One of the resistance mechanism of P. massoniana to aluminum poison was by increasing the synthesis of SOD and POD to reduce the aluminum toxicity with the injury. Another mechanism was by producing some substances which might be combined with aluminum to form a lower activity of the insoluble aluminum compound to reduce its mobility and activity and stored at the roots in order to reduce its poison effect.

Key words: Pinus massoniana, simulated acid rain, aluminum, heredity hurt, physiological and biochemical responses, resistant mechanisms

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