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 in | Plant and soil Vol. 280; no. 1/2; pp. 127 - 134 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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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. |
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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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CitedBy_id | crossref_primary_10_1007_s40333_015_0008_1 crossref_primary_10_1080_00103624_2015_1103253 crossref_primary_10_1016_j_apsoil_2010_12_004 crossref_primary_10_1016_j_scitotenv_2018_07_416 crossref_primary_10_3923_rjf_2015_6_21 crossref_primary_10_1016_j_catena_2019_104091 crossref_primary_10_1007_s11104_017_3478_4 crossref_primary_10_1007_s00374_008_0326_y crossref_primary_10_1007_s11104_017_3394_7 crossref_primary_10_1016_j_catena_2015_10_017 crossref_primary_10_1007_s11368_011_0440_6 crossref_primary_10_1016_j_foreco_2019_01_051 crossref_primary_10_1080_15226514_2014_922923 crossref_primary_10_1016_j_apgeochem_2010_12_001 |
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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 |
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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 |
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