The Size And The Age Of The Metabolically Active Carbon In Tree Roots

PLANT CELL AND ENVIRONMENT(2021)

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摘要
Little is known about the sources and age of C respired by tree roots. Previous research in stems identified two functional pools of non-structural carbohydrates (NSC): an "active" pool supplied directly from canopy photo-assimilates supporting metabolism and a "stored" pool used when fresh C supplies are limited. We compared the C isotope composition of water-soluble NSC and respired CO2 for aspen roots (Populus tremula hybrids) cut off from fresh C supply after stem-girdling or prolonged incubation of excised roots. We used bomb radiocarbon to estimate the time elapsed since C fixation for respired CO2, water-soluble NSC and structural a-cellulose. While freshly excised roots (mostly <2.9 mm in diameter) respired CO2 fixed <1 year previously, the age increased to 1.6-2.9 year within a week after root excision. Freshly excised roots from trees girdled similar to 3 months ago had respiration rates and NSC stocks similar to un-girdled trees but respired older C (similar to 1.2 year). We estimate that over 3 months NSC in girdled roots must be replaced 5-7 times by reserves remobilized from root-external sources. Using a mixing model and observed correlations between Delta C-14 of water-soluble C and alpha-cellulose, we estimate similar to 30% of C is "active" (similar to 5 mg C g(-1)).
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关键词
fine roots, girdling, isotopic fractionation, nonstructural carbohydrates, phosphoenolpyruvate carboxylase (PEPC), radiocarbon (C-14), respiration, storage dynamics, tree carbon dynamics, delta C-13
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