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应用生态学报 ›› 1996, Vol. 7 ›› Issue (3): 262-266.

• 研究论文 • 上一篇    下一篇

根表铁氧化物胶膜对水稻吸收Zn的影响

张西科, 张福锁, 毛达如   

  1. 北京农业大学植物营养系, 北京100094
  • 收稿日期:1995-04-12 修回日期:2011-06-15 出版日期:1996-07-25 发布日期:1996-07-25
  • 基金资助:

    国家自然科学基金资助项目

Effect of root iron plaque on zinc uptake by rice

Zhang Xike, Zhang Fusuo, Mao Daru   

  1. Beijing Agricultural University, Beijing 100094
  • Received:1995-04-12 Revised:2011-06-15 Online:1996-07-25 Published:1996-07-25

摘要: 采用营养液培养方法研究了水稻根表形成的铁氧化物胶膜对水稻吸收Zn的影响.结果表明,在有Fe2+的嫌气环境中,由于根际氧化作用水稻根表会形成红色的铁氧化物胶膜,根表的铁氧化物胶膜影响水稻对Zn的吸收.铁膜数量较少时,由于对Zn的富集作用有限,其对水稻Zn的吸收虽有促进作用,但不明显.随着根表铁膜数量的增加,这种促进作用也相应增加,并且在铁膜数量增加到一定值时,对水稻吸收Zn的促进作用达到最大.而后,随着铁膜数量的进一步增加,铁膜反而阻碍水稻对Zn的吸收,成为水稻吸收Zn的障碍层.在此过程中,水稻的根分泌物,特别是其中的植物铁载体对覆有铁膜水稻根系吸收Zn有促进作用.这种促进作用随铁膜数量的增加而逐渐减弱.因此,根表铁氧化物胶膜对水稻吸收Zn并不总是起促进作用,其作用的方向和程度取决于铁膜的数量.

关键词: 铁氧化物胶膜, 水稻, Zn吸收, 植物铁载体, 黑河中游地区, 生态质量, 生态等级, 土地利用转型

Abstract: Solution culture is conducted to investigate the effect of root iron plaque on zinc uptake by rice plant. The results show that under anaerobic condition,oxygen release from root to rhizosphere causes the formation of precipitated iron oxides or hydroxides plaque on root surface,which influences the zinc uptake by plant.If less iron plaque is existed the zinc uptake can be enhanced. When the amount of iron plaque were 12100 mg·kg-1 root DW,the zinc uptake by rice reaches to maximum.However,with increasing amount of iron plaque(more than 12100 mg· kg-1 root DW),the zinc is inhibited, and the plaque becomes a barrier for zinc uptake. Under Fe deficiency,the exudates of rice root,especially phytosiderophore,play an important role in zinc uptake by rice root with plaque,and the significance of phytosiderophore in zinc uptake is correlated with the amount of iron plaque.If the plaque is less,phytosiderophore appeares to enhance the zinc uptake. With increasing amount of iron plaque, the role of phytosiderophore in mobilizing zinc absorped on plaque becomes less important.Therefore, iron plaque on rice root could be either a beneficial reservoir or a barrier for zinc uptake by rice plant, which depends on the amount of iron plaque.

Key words: Iron plaque, Rice, Zinc uptake, Phytosiderophore, the middle reaches of Heihe River, land use transition, ecological quality, ecological grade