作者
Nicolas Brüggemann, Arthur Gessler, Z Kayler, SG Keel, F Badeck, Matti Barthel, Pascal Boeckx, Nina Buchmann, Enrico Brugnoli, Jürgen Esperschütz, Olga Gavrichkova, Jaleh Ghashghaie, Nuria Gomez-Casanovas, Claudia Keitel, Alexander Knohl, Daniel Kuptz, Sara Palacio, Yann Salmon, Yoshitaka Uchida, Michael Bahn
发表日期
2011/11/28
来源
Biogeosciences
卷号
8
期号
11
页码范围
3457-3489
出版商
Copernicus GmbH
简介
The terrestrial carbon (C) cycle has received increasing interest over the past few decades, however, there is still a lack of understanding of the fate of newly assimilated C allocated within plants and to the soil, stored within ecosystems and lost to the atmosphere. Stable carbon isotope studies can give novel insights into these issues. In this review we provide an overview of an emerging picture of plant-soil-atmosphere C fluxes, as based on C isotope studies, and identify processes determining related C isotope signatures. The first part of the review focuses on isotopic fractionation processes within plants during and after photosynthesis. The second major part elaborates on plant-internal and plant-rhizosphere C allocation patterns at different time scales (diel, seasonal, interannual), including the speed of C transfer and time lags in the coupling of assimilation and respiration, as well as the magnitude and controls of plant-soil C allocation and respiratory fluxes. Plant responses to changing environmental conditions, the functional relationship between the physiological and phenological status of plants and C transfer, and interactions between C, water and nutrient dynamics are discussed. The role of the C counterflow from the rhizosphere to the aboveground parts of the plants, e.g. via CO2 dissolved in the xylem water or as xylem-transported sugars, is highlighted. The third part is centered around belowground C turnover, focusing especially on above- and belowground litter inputs, soil organic matter formation and turnover, production and loss of dissolved organic C, soil respiration and CO2 fixation by soil microbes. Furthermore, plant …
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