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园艺学报 ›› 2008, Vol. 35 ›› Issue (6): 787-792.

• 果树 • 上一篇    下一篇

镉胁迫对‘丽春’桃树体中镉积累及根系生长的影响

王有年1*;关 伟1,2;邢彦峰2;杜相堂2;杨爱珍1;王一鸣1
  

  1. 1北京市农业应用新技术重点实验室,北京102206;2北京市平谷区人民政府果品办公室,北京 101200)
  • 收稿日期:2008-02-17 修回日期:2008-05-09 出版日期:2008-06-25 发布日期:2008-06-25
  • 通讯作者: 王有年

Effects on the Growth of Root and Cadmium Accumulation in Lichun Peach under Cadmium Stress

WANG You-nian1*,GUAN Wei1,2, XING Yan-feng2, DU Xiang-tang2, YANG Ai-zhen1, and WANG Yi-ming1   

  1. (1Key Labortory of New Technology in Agriculture Application of Beijing, Beijing 102206, China; 2Pinggu District of Fruit Bureau inBeijing,Beijing 101200,China)
  • Received:2008-02-17 Revised:2008-05-09 Online:2008-06-25 Published:2008-06-25
  • Contact: WANG You-nian

摘要: 以水培‘丽春’桃(Prunus persica L.Batsch.)幼苗为试材,研究不同镉浓度(1、2 、4 、8、16、64 mg.L-1 )和pH 5.6的条件下,根的生长长度,生长速率以及树体器官、茎组织、根、叶亚细胞结构中镉积累的变化。结果表明,处理2 d后,营养液中镉浓度小于4 mg.L-1时根生长速率较对照显著(P<0.05)增加,表现为促进生长,随处理天数的增加,刺激生长效果减弱。当营养液中镉浓度超过4 mg.L-1、处理时间超过6 d,根生长速率随镉浓度增加而减少,表现为抑制生长。营养液中镉浓度为64 mg.L-1时,根系停长。镉在桃树体中的积累量:器官中,根>茎>叶;茎组织中,木质部>韧皮部;根、叶亚细胞中,细胞壁>可溶性部分、细胞核>线粒体;根细胞壁中镉含量显著(P<0.05)高于其它亚细胞组分,这说明细胞壁在抵御桃树受镉胁迫时起到关键性作用。

关键词: 桃, 镉积累, 亚细胞成分, 根系

Abstract: The seedlings of 'Lichun' peach(Prunus persica L.Batsch.)grown in MS nutrient solution under different levels(1, 2, 4 , 8 , 16 , 64 mg·L-1) of cadmium at pH 5.6 for 12 d were adopted in the observation. Changes on the growth of roots associating with Cd accumulation in organ, stem tissue and subcellular parts were investigated respectively. The results demonstrated that the rate of root growth increased significantly(P<0.05) after 2 d of exposure to 4 mg·L -1 Cd, in addition it diminished along with increasing days under Cd stress. After 6 d of suffering from Cd concentration over 4 mg·L -1, the growth of root was restrained obviously and the change of vegetal rate was decreased. When the seedlings were disposed subjecting 64 mg·L -1 Cd, the ability of root growth was completely inhibited. The accumulation of Cd in organ of the seedlings was higher than root, followed by stem and leaf. Furthermore the content of Cd in xylem was more than that in phloem, the subcellular distribution of Cd was not equilibrated, and the accumulation of Cd in the cell wall of root and leaf was more than that in the soluble materials. The accumulation of Cd in the cell nucleolus of root and leaf was more than that in mitochondria. The content of Cd in the cell wall of root was significantly(P<0.05)higher than that in other subcellular tissue. It suggested that the cell wall of root play an important role in alleviating Cd damage due to high Cd content.

Key words: peach, cadmium accumulation, subcellular fraction, root system

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