• ISSN 1008-505X
  • CN 11-3996/S
崔骁勇, 张福锁, 王贺, 曹一平. 两种基因型豌豆根系质外体铁的积累与消耗[J]. 植物营养与肥料学报, 1999, 5(1): 67-71. DOI: 10.11674/zwyf.1999.0112
引用本文: 崔骁勇, 张福锁, 王贺, 曹一平. 两种基因型豌豆根系质外体铁的积累与消耗[J]. 植物营养与肥料学报, 1999, 5(1): 67-71. DOI: 10.11674/zwyf.1999.0112
Cui Xiaoyong Zhang Fusuo Wang He Cao Yiping, . ACCUMULATION AND DEPLETION OF APOPLASTIC IRON IN ROOTS OF TWO PEA GENOTYPES[J]. Journal of Plant Nutrition and Fertilizers, 1999, 5(1): 67-71. DOI: 10.11674/zwyf.1999.0112
Citation: Cui Xiaoyong Zhang Fusuo Wang He Cao Yiping, . ACCUMULATION AND DEPLETION OF APOPLASTIC IRON IN ROOTS OF TWO PEA GENOTYPES[J]. Journal of Plant Nutrition and Fertilizers, 1999, 5(1): 67-71. DOI: 10.11674/zwyf.1999.0112

两种基因型豌豆根系质外体铁的积累与消耗

ACCUMULATION AND DEPLETION OF APOPLASTIC IRON IN ROOTS OF TWO PEA GENOTYPES

  • 摘要: 采用两种基因型豌豆,在水培条件下研究了根系质外体铁的积累和利用。结果发现供铁后短时间内豌豆根系质外体铁就大量积累,铁效率不同的豌豆基因型根系质外体铁的积累量没有明显差异,根系质外体铁的利用速率与根系缺铁适应性反应强弱有关。

     

    Abstract: Two pea genotypes were used to study accumulation and depletion of apolastic iron in roots The plants were grown in controlled conditions with 14/10 h light/dark, 20/15℃ day/night 1.0 mmol/L FeEDTA was supplied the 9th day after transplanting(DAT), and at the 12th DAT iron was removed Iron reducing activity and apoplastic iron in roots were measured during this period of time The results showed that apoplastic iron increased quickly in roots of both genotypes after FeEDTA was applied Within 4 h after iron supply Sparkle and E107 plants accumulated approximately 60%~80% of their maximum amount of apoplastic iron in roots There was no difference in the quantity of apoplastic iron accumulated in roots between the two genotypes of different iron efficiency E107 consumed apoplastic iron in roots more efficiently than Sparkle Four days after suspending iron supply (16th DAT), there were about 120 and 300nmolg-1 FW of apoplastic iron left, 150 and 20nmolg-1 FW h-1 of iron reducing activity in roots of E107 and Sparke plants respectively This suggested that depletion of apoplastic iron in roots was according with the strength of root responses to iron deficiency

     

/

返回文章
返回