Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes
Abstract Mass loss and nutrient release during litter decomposition drive biogeochemical cycling in terrestrial ecosystems. However, the relationship between the litter decomposition process and the decomposition stage, precipitation, and litter quality has rarely been addressed, precluding our unde...
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doaj-4e984448ca2d474ca38da9149c36fde82021-04-02T12:06:14ZengWileyEcology and Evolution2045-77582020-04-011073367338210.1002/ece3.6129Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimesNingning Du0Wenrao Li1Liping Qiu2Yanjiang Zhang3Xiaorong Wei4Xingchang Zhang5College of Natural Resources and Environment Northwest A&F University Yangling ChinaState Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau Northwest A&F University Yangling ChinaState Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau Northwest A&F University Yangling ChinaCollege of Natural Resources and Environment Northwest A&F University Yangling ChinaState Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau Northwest A&F University Yangling ChinaCollege of Natural Resources and Environment Northwest A&F University Yangling ChinaAbstract Mass loss and nutrient release during litter decomposition drive biogeochemical cycling in terrestrial ecosystems. However, the relationship between the litter decomposition process and the decomposition stage, precipitation, and litter quality has rarely been addressed, precluding our understanding of how litter decomposition regulates nutrient cycling in various ecosystems and their responses to climate change. In this study, we measured mass loss as well as carbon and nutrient releases during the decomposition of 16 types of leaf litter under three precipitation treatments over 12 months in a common garden experiment (i.e., using standardized soil and climatic conditions). Sixteen types of leaves were divided into three functional groups (evergreen, deciduous, and herbaceous). The objectives were to understand the effects of decomposition stages and precipitation regimes on litter decomposition and to examine the relationship between this effect and chemical properties. The mass loss and release of nitrogen and potassium were significantly higher in the 6‐ to 12‐month stage of decomposition (high temperature and humidity) than in the 0‐ to 6‐month stage. Phosphorus was relatively enriched in evergreen leaves after 6 months of decomposition. The rates of mass loss and nutrient release were significantly greater in herbaceous than in deciduous and evergreen leaves. Increasing precipitation from 400 to 800 mm accelerated mass loss and potassium release but decreased phosphorus release in the 0‐ to 6‐month stage of decomposition. These results highlighted the contribution to and complexity of litter chemical properties in litter decomposition.https://doi.org/10.1002/ece3.6129functional groupin situ decompositionleaf chemical propertiesnutrient releaseprecipitation regime |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ningning Du Wenrao Li Liping Qiu Yanjiang Zhang Xiaorong Wei Xingchang Zhang |
spellingShingle |
Ningning Du Wenrao Li Liping Qiu Yanjiang Zhang Xiaorong Wei Xingchang Zhang Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes Ecology and Evolution functional group in situ decomposition leaf chemical properties nutrient release precipitation regime |
author_facet |
Ningning Du Wenrao Li Liping Qiu Yanjiang Zhang Xiaorong Wei Xingchang Zhang |
author_sort |
Ningning Du |
title |
Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
title_short |
Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
title_full |
Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
title_fullStr |
Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
title_full_unstemmed |
Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
title_sort |
mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes |
publisher |
Wiley |
series |
Ecology and Evolution |
issn |
2045-7758 |
publishDate |
2020-04-01 |
description |
Abstract Mass loss and nutrient release during litter decomposition drive biogeochemical cycling in terrestrial ecosystems. However, the relationship between the litter decomposition process and the decomposition stage, precipitation, and litter quality has rarely been addressed, precluding our understanding of how litter decomposition regulates nutrient cycling in various ecosystems and their responses to climate change. In this study, we measured mass loss as well as carbon and nutrient releases during the decomposition of 16 types of leaf litter under three precipitation treatments over 12 months in a common garden experiment (i.e., using standardized soil and climatic conditions). Sixteen types of leaves were divided into three functional groups (evergreen, deciduous, and herbaceous). The objectives were to understand the effects of decomposition stages and precipitation regimes on litter decomposition and to examine the relationship between this effect and chemical properties. The mass loss and release of nitrogen and potassium were significantly higher in the 6‐ to 12‐month stage of decomposition (high temperature and humidity) than in the 0‐ to 6‐month stage. Phosphorus was relatively enriched in evergreen leaves after 6 months of decomposition. The rates of mass loss and nutrient release were significantly greater in herbaceous than in deciduous and evergreen leaves. Increasing precipitation from 400 to 800 mm accelerated mass loss and potassium release but decreased phosphorus release in the 0‐ to 6‐month stage of decomposition. These results highlighted the contribution to and complexity of litter chemical properties in litter decomposition. |
topic |
functional group in situ decomposition leaf chemical properties nutrient release precipitation regime |
url |
https://doi.org/10.1002/ece3.6129 |
work_keys_str_mv |
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