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Contribution of forest floor fractions to carbon storage and abundance patterns of arbuscular mycorrhizal fungal colonisation in a tropical montane forest


Citation

V., Jeyanny and M. H., Ahmad Husni and B., Siva Kumar and K., Wan Rasidah and W. C., Suhaimi (2016) Contribution of forest floor fractions to carbon storage and abundance patterns of arbuscular mycorrhizal fungal colonisation in a tropical montane forest. Southern Forests: a Journal of Forest Science, 78 (4). pp. 315-319. ISSN 2070-2620; ESSN: 2070-2639

Abstract

Forest floor carbon stocks, which include different components of litter, hemic and sapric materials, have not been empirically quantified in tropical montane forest, although they influence soil carbon (C) pools. To date, the contribution of arbuscular mycorrhizae in C sequestration potentials in tropical montane forests have not been clearly investigated. This study determined the amount of C stocks in the different decomposing layers of forest floor, mainly litter, hemic and sapric materials. The abundance of arbuscular mycorrhizal root colonisation differed among forest floor fractions. Forest floor was measured for depth, area density, dry mass and carbon fraction separately in Sungai Kial Forest Reserve, Pahang, Malaysia to calculate C stocks. Percentages of root colonisation in the hemic and sapric materials were investigated. The results showed that forest floor C stocks were significantly higher in hemic (5 Mg C ha−1) and sapric (7.7 Mg C ha−1) compared with the litter fragments (1.5 Mg C ha−1). Mycorrhizal root colonisation was significantly higher (75%) in the toeslope compared with the summit area in the hemic materials. Segregation of forest floor layers provided greater accuracy in forest floor C stocks reporting.


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carbon stocks, high altitudes, mycorrhizal associations, organic layer, tropics.pdf

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Additional Metadata

Item Type: Article
Divisions: Faculty of Agriculture
DOI Number: https://doi.org/10.2989/20702620.2016.1225186
Publisher: Taylor & Francis
Keywords: Carbon stocks; High altitudes; Mycorrhizal associations; Organic layer; Tropics
Depositing User: Mohd Hafiz Che Mahasan
Date Deposited: 04 Oct 2017 09:51
Last Modified: 04 Oct 2017 09:51
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.2989/20702620.2016.1225186
URI: http://psasir.upm.edu.my/id/eprint/55379
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