Impact of nitrogen and phosphorus fertilization on drought responses in Eucalyptus grandis seedlings

Water and nutrients are two of the most important factors controlling the growth of trees. Numerous studies show that fertilization is most effective when trees are not water-stressed and that irrigation is most effective when nutrients are not scarce. The goal of this work was to test the responses...

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Published inForest ecology and management Vol. 212; no. 1; pp. 40 - 49
Main Authors Graciano, Corina, Guiamét, Juan J., Goya, Juan F.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.07.2005
Elsevier
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Abstract Water and nutrients are two of the most important factors controlling the growth of trees. Numerous studies show that fertilization is most effective when trees are not water-stressed and that irrigation is most effective when nutrients are not scarce. The goal of this work was to test the responses of Eucalyptus grandis seedlings to drought as affected by soil type and fertilization with nitrogen (N) or phosphorus (P). Seedlings of E. grandis were planted in pots with two different types of soil: a sandy soil and a clay (black) soil. Plants were fertilized with N or P, and half of them were water-stressed. Fertilization did not affect the growth reduction brought about by drought in the red sands; in the black soil, plants fertilized with P showed a moderate growth increase under drought, compared to non-fertilized plants. Dry mass allocation to roots was decreased by fertilization in water-stressed and well-watered plants in the sandy soil, and in well-watered plants of the black soil, but it increased in water-stressed plants fertilized with N in the black soil. Water use efficiency (WUE), i.e., the grams of water transpired per gram of dry mass accumulated, was not altered by fertilization or water stress in the black soil, although it increased with P fertilization in well-watered plants in the sandy soil. Osmotic adjustment was observed only in plants fertilized with P in the black soil, and in non-fertilized plants in the sandy soil. Osmotic adjustment in water-stressed plants was associated with an increased stomatal conductance. We conclude that water stress tolerance strategies are altered by fertilization depending on soil properties, and that fertilization with P is recommended in black soils even if a moderate drought is likely to occur, but on sandy soils fertilization is recommended only under good water supply.
AbstractList Water and nutrients are two of the most important factors controlling the growth of trees. Numerous studies show that fertilization is most effective when trees are not water-stressed and that irrigation is most effective when nutrients are not scarce. The goal of this work was to test the responses of Eucalyptus grandis seedlings to drought as affected by soil type and fertilization with nitrogen (N) or phosphorus (P). Seedlings of E. grandis were planted in pots with two different types of soil: a sandy soil and a clay (black) soil. Plants were fertilized with N or P, and half of them were water-stressed. Fertilization did not affect the growth reduction brought about by drought in the red sands; in the black soil, plants fertilized with P showed a moderate growth increase under drought, compared to non-fertilized plants. Dry mass allocation to roots was decreased by fertilization in water-stressed and well-watered plants in the sandy soil, and in well-watered plants of the black soil, but it increased in water-stressed plants fertilized with N in the black soil. Water use efficiency (WUE), i.e., the grams of water transpired per gram of dry mass accumulated, was not altered by fertilization or water stress in the black soil, although it increased with P fertilization in well-watered plants in the sandy soil. Osmotic adjustment was observed only in plants fertilized with P in the black soil, and in non-fertilized plants in the sandy soil. Osmotic adjustment in water-stressed plants was associated with an increased stomatal conductance. We conclude that water stress tolerance strategies are altered by fertilization depending on soil properties, and that fertilization with P is recommended in black soils even if a moderate drought is likely to occur, but on sandy soils fertilization is recommended only under good water supply.
Water and nutrients are two of the most important factors controlling the growth of trees. Numerous studies show that fertilization is most effective when trees are not water-stressed and that irrigation is most effective when nutrients are not scarce. The goal of this work was to test the responses of Eucalyptus grandis seedlings to drought as affected by soil type and fertilization with nitrogen (N) or phosphorus (P). Seedlings of E. grandis were planted in pots with two different types of soil: a sandy soil and a clay (black) soil. Plants were fertilized with N or P, and half of them were water-stressed. Fertilization did not affect the growth reduction brought about by drought in the red sands; in the black soil, plants fertilized with P showed a moderate growth increase under drought, compared to non-fertilized plants. Dry mass allocation to roots was decreased by fertilization in water-stressed and well-watered plants in the sandy soil, and in well-watered plants of the black soil, but it increased in water-stressed plants fertilized with N in the black soil. Water use efficiency (WUE), i.e., the grams of water transpired per gram of dry mass accumulated, was not altered by fertilization or water stress in the black soil, although it increased with P fertilization in well-watered plants in the sandy soil. Osmotic adjustment was observed only in plants fertilized with P in the black soil, and in non-fertilized plants in the sandy soil. Osmotic adjustment in water-stressed plants was associated with an increased stomatal conductance. We conclude that water stress tolerance strategies are altered by fertilization depending on soil properties, and that fertilization with P is recommended in black soils even if a moderate drought is likely to occur, but on sandy soils fertilization is recommended only under good water supply.
Author Goya, Juan F.
Guiamét, Juan J.
Graciano, Corina
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  surname: Goya
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Issue 1
Keywords Water use efficiency
Soil/fertilization interactions
Drought
Osmotic adjustment
Pressure–volume curve
Stomatal conductance
Irrigation
Root
Growth
Plant juvenile growth stage
Tolerance
Phosphorus
Nitrogen
Phosphorus fertilization
Water stress
Pressure-volume curve
Soils
Eucalyptus grandis
Plant
Dicotyledones
Angiospermae
Myrtaceae
Nutrient
Spermatophyta
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Snippet Water and nutrients are two of the most important factors controlling the growth of trees. Numerous studies show that fertilization is most effective when...
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SubjectTerms Animal and plant ecology
Animal, plant and microbial ecology
Biological and medical sciences
clay soils
Drought
drought tolerance
dry matter partitioning
Eucalyptus grandis
fertilizer rates
forest plantations
forest trees
Forestry
Fundamental and applied biological sciences. Psychology
irrigation
Irrigation. Drainage
nitrogen
nitrogen fertilizers
nutrient availability
Osmotic adjustment
osmotic pressure
phosphorus
phosphorus fertilizers
Pressure–volume curve
sandy soils
seedlings
soil fertility
Soil tillage. Irrigation. Drainage
Soil/fertilization interactions
Stomatal conductance
Synecology
Terrestrial ecosystems
water stress
Water use efficiency
Title Impact of nitrogen and phosphorus fertilization on drought responses in Eucalyptus grandis seedlings
URI https://dx.doi.org/10.1016/j.foreco.2005.02.057
https://search.proquest.com/docview/14749234
https://search.proquest.com/docview/19407143
https://search.proquest.com/docview/19543222
Volume 212
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