Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest

Research highlights: Estimates of fine root production using ingrowth cores are strongly influenced by decomposed roots in the cores during the incubation period and should be accounted for when calculating fine root production (FRP). Background and Objectives: The ingrowth core method is often used...

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Main Authors: Ayumi Katayama, Lip Khoon Kho, Naoki Makita, Tomonori Kume, Kazuho Matsumoto, Mizue Ohashi
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Forests
Subjects:
NPP
Online Access:http://www.mdpi.com/1999-4907/10/1/36
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spelling doaj-7b824d56ae944599b819b6da6b93d4ad2020-11-25T00:46:11ZengMDPI AGForests1999-49072019-01-011013610.3390/f10010036f10010036Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical RainforestAyumi Katayama0Lip Khoon Kho1Naoki Makita2Tomonori Kume3Kazuho Matsumoto4Mizue Ohashi5Kyushu University Forest, Kyushu University, Fukuoka 8112415, JapanTropical Peat Research Institute, Biological Research Division, Malaysian Palm Oil Board, Selangor 43000, MalaysiaFaculty of Science, Shinshu University, Matsumoto 3908621, JapanKyushu University Forest, Kyushu University, Fukuoka 8112415, JapanFaculty of Agriculture, University of the Ryukyus, Okinawa 9030129, JapanSchool of Human Science and Environment, University of Hyogo, Himeji 6700092, JapanResearch highlights: Estimates of fine root production using ingrowth cores are strongly influenced by decomposed roots in the cores during the incubation period and should be accounted for when calculating fine root production (FRP). Background and Objectives: The ingrowth core method is often used to estimate fine root production; however, decomposed roots are often overlooked in estimates of FRP. Uncertainty remains on how long ingrowth cores should be installed and how FRP should be calculated in tropical forests. Here, we aimed to estimate FRP by taking decomposed fine roots into consideration. Specifically, we compared FRP estimates at different sampling intervals and using different calculation methods in a tropical rainforest in Borneo. Materials and Methods: Ingrowth cores were installed with root litter bags and collected after 3, 6, 12 and 24 months. FRP was estimated based on (1) the difference in biomass at different sampling times (differential method) and (2) sampled biomass at just one sampling time (simple method). Results: Using the differential method, FRP was estimated at 447.4 ± 67.4 g m−2 year−1 after 12 months, with decomposed fine roots accounting for 25% of FRP. Using the simple method, FRP was slightly higher than that in the differential method after 12 months (516.3 ± 45.0 g m−2 year−1). FRP estimates for both calculation methods using data obtained in the first half of the year were much higher than those using data after 12-months of installation, because of the rapid increase in fine root biomass and necromass after installation. Conclusions: Therefore, FRP estimates vary with the timing of sampling, calculation method and presence of decomposed roots. Overall, the ratio of net primary production (NPP) of fine roots to total NPP in this study was higher than that previously reported in the Neotropics, indicating high belowground carbon allocation in this forest.http://www.mdpi.com/1999-4907/10/1/36biomasscalculation methodnecromassNPPproductionsampling interval
collection DOAJ
language English
format Article
sources DOAJ
author Ayumi Katayama
Lip Khoon Kho
Naoki Makita
Tomonori Kume
Kazuho Matsumoto
Mizue Ohashi
spellingShingle Ayumi Katayama
Lip Khoon Kho
Naoki Makita
Tomonori Kume
Kazuho Matsumoto
Mizue Ohashi
Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
Forests
biomass
calculation method
necromass
NPP
production
sampling interval
author_facet Ayumi Katayama
Lip Khoon Kho
Naoki Makita
Tomonori Kume
Kazuho Matsumoto
Mizue Ohashi
author_sort Ayumi Katayama
title Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
title_short Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
title_full Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
title_fullStr Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
title_full_unstemmed Estimating Fine Root Production from Ingrowth Cores and Decomposed Roots in a Bornean Tropical Rainforest
title_sort estimating fine root production from ingrowth cores and decomposed roots in a bornean tropical rainforest
publisher MDPI AG
series Forests
issn 1999-4907
publishDate 2019-01-01
description Research highlights: Estimates of fine root production using ingrowth cores are strongly influenced by decomposed roots in the cores during the incubation period and should be accounted for when calculating fine root production (FRP). Background and Objectives: The ingrowth core method is often used to estimate fine root production; however, decomposed roots are often overlooked in estimates of FRP. Uncertainty remains on how long ingrowth cores should be installed and how FRP should be calculated in tropical forests. Here, we aimed to estimate FRP by taking decomposed fine roots into consideration. Specifically, we compared FRP estimates at different sampling intervals and using different calculation methods in a tropical rainforest in Borneo. Materials and Methods: Ingrowth cores were installed with root litter bags and collected after 3, 6, 12 and 24 months. FRP was estimated based on (1) the difference in biomass at different sampling times (differential method) and (2) sampled biomass at just one sampling time (simple method). Results: Using the differential method, FRP was estimated at 447.4 ± 67.4 g m−2 year−1 after 12 months, with decomposed fine roots accounting for 25% of FRP. Using the simple method, FRP was slightly higher than that in the differential method after 12 months (516.3 ± 45.0 g m−2 year−1). FRP estimates for both calculation methods using data obtained in the first half of the year were much higher than those using data after 12-months of installation, because of the rapid increase in fine root biomass and necromass after installation. Conclusions: Therefore, FRP estimates vary with the timing of sampling, calculation method and presence of decomposed roots. Overall, the ratio of net primary production (NPP) of fine roots to total NPP in this study was higher than that previously reported in the Neotropics, indicating high belowground carbon allocation in this forest.
topic biomass
calculation method
necromass
NPP
production
sampling interval
url http://www.mdpi.com/1999-4907/10/1/36
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