4.5 Article

Strawberry recovers from iron chlorosis after foliar application of a grass-clipping extract

Journal

JOURNAL OF PLANT NUTRITION AND SOIL SCIENCE
Volume 174, Issue 3, Pages 473-479

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jpln.201000215

Keywords

ferric chelate-reductase; foliar treatment; Fragaria x ananassa; iron allocation; iron content

Funding

  1. FCT [PTDC/AGR-ALI/66065/2006]
  2. Caixa de Credito Agricola Mutuo from Algarve
  3. Fundação para a Ciência e a Tecnologia [PTDC/AGR-ALI/66065/2006] Funding Source: FCT

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Bare-root transplants of strawberry (Fragaria x ananassa Duch. cv. Selva) were transferred to nutrient solutions with or without iron. After 35 d of growth, plants in the solution without iron became chlorotic and had morphological changes in roots typical of iron-deficiency chlorosis (IDC). Acidification of the nutrient solution was also observed. We tested a grass-clipping extract to correct IDC in strawberry plants by foliar application to some chlorotic plants. We also assessed the effects of this product on plant growth, Fe allocation, as well as morphological and physiological parameters related with IDC. After the second spray, leaf chlorophyll increased in the youngest expanded leaves. The total content of iron in plants increased from 1.93 mg to 2.37 mg per plant after three sprays, accounting for 80% of the total iron supplied by the extract. Newly formed roots from sprayed plants had a normal morphology (no subapical swollen zone) but a higher ferric chelate-reductase (FC-R; EC 1.16.1.17) activity per root apex compared with roots from plants grown with iron or untreated chlorotic plants. Acidification of the nutrient solution continued in sprayed recovered plants. The results suggest an uncoupling of the regulation of morphological and physiological mechanisms related to IDC: FC-R activity seems to be controlled by roots on their own or together with shoots, while morphological changes in roots are apparently regulated only by the level of iron in shoots.

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