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J Inorg Biochem ; 134: 39-48, 2014 May.
Article in English | MEDLINE | ID: mdl-24531533

ABSTRACT

Coffea arabica is a woody species that grows in acid soils, where aluminum is available and may affect growth and productivity. To determine the effect of aluminum on primary root growth of C. arabica cv. Typica, seedlings were exposed over 30 days to different concentrations of AlCl3 (0, 100, 300 and 500 µM) in vitro. The aluminum effect on primary root growth was dose-dependent: low aluminum concentrations (100 and 300 µM) stimulated primary root growth (6.98 ± 0.15 and 6.45 ± 0.17 cm, respectively) compared to the control (0 µM; 5.24 ± 0.17 cm), while high concentrations (500 µM) induced damage to the root tips and inhibition of primary root growth (2.96 ± 0.28 cm). Aluminum (100 µM) also increased the K and Ca contents around 33% and 35% in the coffee roots. It is possible that aluminum toxicity resides in its association with cell nuclei in the meristematic region of the root. Additionally, after 30 days of treatment with aluminum, two different effects could be observed on phospholipase C (PLC) activity. In shoots, aluminum concentrations ≥ 300 µM inhibited more than 50% of PLC activity. In contrast, in roots a contrasting behavior was determined: low (100 µM) and toxic concentrations (500 µM) increased the activity of PLC (100%). These results suggest the possible involvement of the phosphoinositide signal transduction pathway, with the phospholipase C enzyme participating in the beneficial and toxic effects of aluminum in plants.


Subject(s)
Aluminum Compounds/pharmacology , Chlorides/pharmacology , Coffea/drug effects , Plant Roots/drug effects , Plant Shoots/drug effects , Type C Phospholipases/metabolism , Aluminum Chloride , Coffea/growth & development , Coffea/metabolism , Dose-Response Relationship, Drug , Plant Roots/growth & development , Plant Roots/metabolism , Plant Shoots/growth & development , Plant Shoots/metabolism , Potassium/metabolism , Seedlings/drug effects , Seedlings/growth & development , Seedlings/metabolism , Signal Transduction , Sodium/metabolism
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