Role of light fraction soil organic matter in the phosphorus nutrition of Eucalyptus globulus seedlings

Different fractions of soil organic matter (SOM) may contribute to varying degrees to phosphorus (P) recycling and supply. This study investigated the potential for light fraction SOM to contribute to plant P nutrition using a bioassay with Eucalyptus globulus (Labill.) seedlings. Light fraction SOM...

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Published inPlant and soil Vol. 280; no. 1/2; pp. 127 - 134
Main Authors O'Hara, C.P., Bauhus, J., Smethurst, P.J.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer 01.02.2006
Springer Nature B.V
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Abstract Different fractions of soil organic matter (SOM) may contribute to varying degrees to phosphorus (P) recycling and supply. This study investigated the potential for light fraction SOM to contribute to plant P nutrition using a bioassay with Eucalyptus globulus (Labill.) seedlings. Light fraction SOM, which has been subject to only limited decomposition, was isolated from bulk soil using a density floatation procedure. Seedlings were grown in sand with a P-free nutrient solution and either light fraction SOM from five different native eucalypt forest plots as a source of added P or in sand with no added light SOM (controls). Growth (dry matter accumulation) and P acquisition by seedlings of four of the treatments grown with light fraction organic matter was 2–3 times greater than that of control seedlings. Daily rates of P acquisition ranged from 0.13 μg P day-1 (control) to 0.29–0.50 μg P day-1 for seedlings grown with added organic matter. Whilst the study indicates that light fraction SOM can contribute to the P nutrition of eucalypt seedlings, accordingly, further research into the nutritional role of light fraction SOM is warranted.
AbstractList Different fractions of soil organic matter (SOM) may contribute to varying degrees to phosphorus (P) recycling and supply. This study investigated the potential for light fraction SOM to contribute to plant P nutrition using a bioassay with Eucalyptus globulus (Labill.) seedlings. Light fraction SOM, which has been subject to only limited decomposition, was isolated from bulk soil using a density floatation procedure. Seedlings were grown in sand with a P-free nutrient solution and either light fraction SOM from five different native eucalypt forest plots as a source of added P or in sand with no added light SOM (controls). Growth (dry matter accumulation) and P acquisition by seedlings of four of the treatments grown with light fraction organic matter was 2–3 times greater than that of control seedlings. Daily rates of P acquisition ranged from 0.13 μg P day-1 (control) to 0.29–0.50 μg P day-1 for seedlings grown with added organic matter. Whilst the study indicates that light fraction SOM can contribute to the P nutrition of eucalypt seedlings, accordingly, further research into the nutritional role of light fraction SOM is warranted.
Different fractions of soil organic matter (SOM) may contribute to varying degrees to phosphorus (P) recycling and supply. This study investigated the potential for light fraction SOM to contribute to plant P nutrition using a bioassay with Eucalyptus globulus (Labill.) seedlings. Light fraction SOM, which has been subject to only limited decomposition, was isolated from bulk soil using a density floatation procedure. Seedlings were grown in sand with a P-free nutrient solution and either light fraction SOM from five different native eucalypt forest plots as a source of added P or in sand with no added light SOM (controls). Growth (dry matter accumulation) and P acquisition by seedlings of four of the treatments grown with light fraction organic matter was 2-3 times greater than that of control seedlings. Daily rates of P acquisition ranged from 0.13 μg P day^sup -1^ (control) to 0.29-0.50 μg P day^sup -1^ for seedlings grown with added organic matter. Whilst the study indicates that light fraction SOM can contribute to the P nutrition of eucalypt seedlings, accordingly, further research into the nutritional role of light fraction SOM is warranted.[PUBLICATION ABSTRACT]
Author O'Hara, C.P.
Bauhus, J.
Smethurst, P.J.
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Issue 1/2
Keywords Organic matter
Eucalyptus globulus
Plant juvenile growth stage
soil organic matter
Dicotyledones
Light fraction
Angiospermae
Myrtaceae
Hardwood forest tree
Soil science
Chemical composition
Non metal
Soil chemistry
Fractionation
Nutrition
Forest tree
Phosphorus
Ecology
Woody plant
Sporophyte
Seedlings
Group VA element
Soils
Forestry
Spermatophyta
Soil plant relation
Language English
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Snippet Different fractions of soil organic matter (SOM) may contribute to varying degrees to phosphorus (P) recycling and supply. This study investigated the...
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SubjectTerms Agricultural soils
Agronomy. Soil science and plant productions
Animal and plant ecology
Animal, plant and microbial ecology
Autoecology
Bioassays
Biological and medical sciences
Chemical, physicochemical, biochemical and biological properties
Dry matter
dry matter accumulation
Eucalyptus globulus
Forest soils
Fractionation
Fundamental and applied biological sciences. Psychology
General agronomy. Plant production
Light
Nitrogen
nutrient availability
Nutrition
Organic matter
Organic phosphorus
Organic soils
Phosphorus
Physics, chemistry, biochemistry and biology of agricultural and forest soils
Plant nutrition
plant response
Planting density
Plants and fungi
Sand
seedling growth
Seedlings
Soil biochemistry
soil nutrients
Soil organic matter
Soil science
soil-plant interactions
Soil-plant relationships. Soil fertility
Soil-plant relationships. Soil fertility. Fertilization. Amendments
Soils
uptake mechanisms
Title Role of light fraction soil organic matter in the phosphorus nutrition of Eucalyptus globulus seedlings
URI https://www.jstor.org/stable/24125238
https://www.proquest.com/docview/751135124
https://www.proquest.com/docview/47130164
Volume 280
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