Plant-Soil Interactions at Low PH: Proceedings of the Second International Symposium on Plant-Soil Interactions at Low P edito da SPRINGER PG

Plant-Soil Interactions at Low PH: Proceedings of the Second International Symposium on Plant-Soil Interactions at Low P

Proceedings of the Second International Symposium on Plant-Soil Interactions at Low Ph, 24-29 June 1990, Beckley West Virginia, USA

Editore:

SPRINGER PG

EAN:

9780792311058

ISBN:

0792311051

Pagine:
1106
Formato:
Hardback
Lingua:
Inglese
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Descrizione Plant-Soil Interactions at Low PH: Proceedings of the Second International Symposium on Plant-Soil Interactions at Low P

Soil acidity is a major limitation to crop production in many parts of the world. Plant growth inhibition results from a combination of factors, including aluminum, manganese, and hydrogen ion toxicities and deficiencies of essential elements, particularly calcium, magnesium, phosphorus, and molybdenum. Agricultural management practices and acid precipitation have increased acid inputs into the ecosystem and heightened concern about soil acidity problems. While application of lime has proved to be effective in ameliorating surface soil acidity in many areas, significant soil acidity problems still exist. Scientists from Alberta, Canada, recognized the need to provide a forum for researchers from different disciplines to exchange information and ideas on solving problems of plant growth in acid soils. As a result of their efforts, the First International Symposium on Plant-Soil Interactions at Low pH was held at Grande Prairie, Alberta, Canada, in July 1987. In many acid soil areas, liming materials are not readily available, the cost may be prohibitive, or subsoil acidity cannot be corrected by surface application of lime. New management approaches involving both the plant and the soil are needed in these situations. Progress has been made in the selection and breeding of acid-tolerant plants. However, continued progress will be limited by our lack of understanding of the physiological and biochemical basis of differential acidity tolerance among plants.

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