Javascript must be enabled to continue!
Microbial phosphorus limitiation with soil age along a chronosequence on the Galapagos Islands
View through CrossRef
The Galápagos archipelago, a volcanic island chain, is comprised of a series of progressively older islands with increasingly weathered soils away from the volcanic hotspot. Volcanic soils are known for their high phosphate sorption capacity. In this study, we explore differences in soil microbial abundance and activity across a soil age gradient (1.5 to 1070 ka) to understand how soil microorganisms are affected by soil development, shifting soil characteristics and P sorption over extensive periods.Basal respiration, substrate-induced respiration and microbial biomass P decreased with soil development, suggesting increasing nutrient limitation for soil microbes. Also, soil enzymatic stoichiometry revealed a limitation driven mainly by P and not by N or C. C- and N-acquiring exoenzyme activities peaked at 26 ka with lower activities in younger and older soils. Phosphatase activity increased with soil age, indicating microbial P limitation in the older soils. This is only partly in line with  P sorption-desorption characteristics along the studied weathering sequence. Phosphate sorption capacity was high in the 4.3 ka soils likely due to amorphous soil constituents. A change towards 2:1-type crystalline clays after 26 ka of soil weathering led to weaker P sorption and stronger desorption, and acidification and increased P occlusion in Al and Fe (hydr)oxides became an important factor for microbial P limitation in the older soils.Our results reveal striking differences in soil properties on the Galápagos Islands, suggesting relatively little nutrient constraints for soil microbes, despite strong P sorption, in the younger volcanic soils but growing P limitation in the older, highly weathered soils. These observations have important bearings on nutrient cycling and may therefore also affect the evolution of plant and animal species on this unique archipelago.
Title: Microbial phosphorus limitiation with soil age along a chronosequence on the Galapagos Islands
Description:
The Galápagos archipelago, a volcanic island chain, is comprised of a series of progressively older islands with increasingly weathered soils away from the volcanic hotspot.
Volcanic soils are known for their high phosphate sorption capacity.
In this study, we explore differences in soil microbial abundance and activity across a soil age gradient (1.
5 to 1070 ka) to understand how soil microorganisms are affected by soil development, shifting soil characteristics and P sorption over extensive periods.
Basal respiration, substrate-induced respiration and microbial biomass P decreased with soil development, suggesting increasing nutrient limitation for soil microbes.
Also, soil enzymatic stoichiometry revealed a limitation driven mainly by P and not by N or C.
C- and N-acquiring exoenzyme activities peaked at 26 ka with lower activities in younger and older soils.
Phosphatase activity increased with soil age, indicating microbial P limitation in the older soils.
This is only partly in line with  P sorption-desorption characteristics along the studied weathering sequence.
Phosphate sorption capacity was high in the 4.
3 ka soils likely due to amorphous soil constituents.
A change towards 2:1-type crystalline clays after 26 ka of soil weathering led to weaker P sorption and stronger desorption, and acidification and increased P occlusion in Al and Fe (hydr)oxides became an important factor for microbial P limitation in the older soils.
Our results reveal striking differences in soil properties on the Galápagos Islands, suggesting relatively little nutrient constraints for soil microbes, despite strong P sorption, in the younger volcanic soils but growing P limitation in the older, highly weathered soils.
These observations have important bearings on nutrient cycling and may therefore also affect the evolution of plant and animal species on this unique archipelago.
Related Results
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
P0864 Divergence between clinical and biochemical disease activity status in patients with Ulcerative Colitis - Result from the Dutch Initiative on Crohn and Colitis (ICC) Registry
P0864 Divergence between clinical and biochemical disease activity status in patients with Ulcerative Colitis - Result from the Dutch Initiative on Crohn and Colitis (ICC) Registry
Abstract
Background
Endoscopy is the gold standard for assessing treatment effectiveness in ulcerative colitis (UC) patie...
Effects of Soil Conditioners on Absorption of phosphorus by waxy corn and Phosphorus Transformation in High Phosphorus Soils
Effects of Soil Conditioners on Absorption of phosphorus by waxy corn and Phosphorus Transformation in High Phosphorus Soils
In this experiment, the effects of different types of conditioners and their application on the absorption and transformation of phosphorus in high phosphorus soils in facilities w...
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
The status and drivers of soil-available nutrients in plant-recovered soils are not fully understood, limiting our ability to explore the role of soil-available nutrients in soil g...
STRUKTUR KOMUNITAS MIKROBA TANAH DAN IMPLIKASINYA DALAM MEWUJUDKAN SISTEM PERTANIAN BERKELANJUTAN
STRUKTUR KOMUNITAS MIKROBA TANAH DAN IMPLIKASINYA DALAM MEWUJUDKAN SISTEM PERTANIAN BERKELANJUTAN
Soils are made up of organic and an organic material. The organic soil component contains all the living creatures in the soil and the dead ones in various stages of decomposition....
Diversity analysis of soil microbial population abundance before and after planting JunCao “Oasis No. 1” in saline-alkali soil
Diversity analysis of soil microbial population abundance before and after planting JunCao “Oasis No. 1” in saline-alkali soil
Abstract
In order to explore the difference of soil microbial population structure and abundance before and after planting JunCao “Oasis No. 1” in saline-alkali soi...
Fertilizer phosphorus in some Finnish soils
Fertilizer phosphorus in some Finnish soils
In the present paper it is tried to trace the fate of fertilizer phosphorus in soil by comparing the analyses of soils from treated and untreated plots of field trials. This indire...
Soil microbial relative resource limitation exhibited contrasting seasonal patterns along an elevational gradient in Yulong Snow Mountain
Soil microbial relative resource limitation exhibited contrasting seasonal patterns along an elevational gradient in Yulong Snow Mountain
Abstract
Microbial relative resource limitations represented by enzyme stoichiometry reflect the relationship between microbial nutrient requirements and nutrient status in soil,...

