López-Millán A F, Morales F, Abadía A, Abadía J
Departamento de Nutrición Vegetal, Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Apdo. 202, E-50080 Zaragoza, Spain.
J Exp Bot. 2001 Jul;52(360):1489-98. doi: 10.1093/jexbot/52.360.1489.
Experiments have been carried out with field-grown pear trees to investigate the effect of iron chlorosis on the composition of the leaf apoplast. Iron deficiency was associated with an increase in the leaf apoplastic pH from the control values of 5.5-5.9 to 6.5-6.6, as judged from direct pH measurements in apoplastic fluid obtained by centrifugation and fluorescence of leaves incubated with 5-CF. The major organic acids found in leaf apoplastic fluid of iron-deficient and iron-sufficient pear leaves were malate, citrate and ascorbate. The total concentration of organic acids was 2.9 mM in the controls and increased to 5.5 mM in Fe-deficient leaves. The total apoplastic concentration of inorganic cations (Ca, K and Mg) increased with Fe deficiency from 15 to 20 mM. The total apoplastic concentration of inorganic anions (Cl-, NO3-, SO4(2-) and HPO4(2-)) did not change with Fe deficiency. Iron concentrations decreased from 4 to 1.6 microM with Fe deficiency. The major Fe species predicted to exist in the apoplast was FeCitOH in both Fe-sufficient and deficient leaves. Organic acids in whole leaf homogenates increased from 20 to 40 nmol x m(-2) with Fe deficiency. The accumulation of organic anions in the Fe-deficient leaves does not appear to be associated to an increased C fixation in leaves, but rather it seems to be a consequence of C transport via xylem.
已对田间种植的梨树进行实验,以研究缺铁黄化对叶片质外体成分的影响。通过离心获得的质外体汁液的直接pH测量以及用5 - CF孵育的叶片荧光判断,缺铁与叶片质外体pH从对照值5.5 - 5.9增加到6.5 - 6.6有关。缺铁和铁充足的梨树叶质外体汁液中发现的主要有机酸是苹果酸、柠檬酸和抗坏血酸。对照中有机酸的总浓度为2.9 mM,缺铁叶片中增加到5.5 mM。无机阳离子(Ca、K和Mg)的质外体总浓度随着缺铁从15 mM增加到20 mM。无机阴离子(Cl-、NO3-、SO4(2-)和HPO4(2-))的质外体总浓度不会因缺铁而改变。铁浓度随着缺铁从4 microM降至1.6 microM。在铁充足和缺铁的叶片中,预计存在于质外体中的主要铁物种都是FeCitOH。缺铁时,全叶匀浆中的有机酸从20 nmol x m(-2)增加到40 nmol x m(-2)。缺铁叶片中有机阴离子的积累似乎与叶片中碳固定增加无关,而似乎是通过木质部进行碳运输的结果。