Arid
DOI10.1007/s10531-014-0681-y
Simulated climate change reduced the capacity of lichen-dominated biocrusts to act as carbon sinks in two semi-arid Mediterranean ecosystems
Ladron de Guevara, Monica1; Lazaro, Roberto1; Quero, Jose L.2; Ochoa, Victoria3; Gozalo, Beatriz3; Berdugo, Miguel3; Ucles, Olga1; Escolar, Cristina3; Maestre, Fernando T.3
通讯作者Ladron de Guevara, Monica
来源期刊BIODIVERSITY AND CONSERVATION
ISSN0960-3115
EISSN1572-9710
出版年2014
卷号23期号:7页码:1787-1807
英文摘要

The importance of biological soil crusts (biocrusts) for the biogeochemistry of drylands is widely recognized. However, there are significant gaps in our knowledge about how climate change will affect these organisms and the processes depending on them. We conducted a manipulative full factorial experiment in two representative dryland ecosystems from central (Aranjuez) and southeastern (Sorbas) Spain to evaluate how precipitation, temperature and biocrust cover affected the assimilation and net C balance of biocrusts. Chlorophyll fluorescence, net photosynthesis and dark respiration were measured in situ bimonthly during a year. We also conducted daily cycle measurements of net photosynthesis in winter and at the end of spring. In Sorbas, warming reduced the fixation of atmospheric C in biocrust-dominated microsites throughout the year. In Aranjuez, there was an interaction between the three factors evaluated; during winter, net photosynthesis was significantly greater in high biocrust cover plots under natural conditions and in the rainfall exclusion treatment. During the daily surveys, rainfall exclusion and warming reduced C fixation in Sorbas and in Aranjuez respectively. The effects of the treatments evaluated varied with the rainfall and non-rainfall water inputs (NRWIs) registered before the measurements. Our results suggest that changes in NRWI regimes as consequence of warming could have a greater impact on the C balance of biocrusts than changes in rainfall amounts. They also indicate that climate change may reduce the photosynthetic ability of lichens, with a consequent reduction of their dominance in biocrust communities at the mid to long term. This could reduce the ability of dryland ecosystems to fix atmospheric C.


英文关键词Warming Rain exclusion Lichens Gas exchange Chlorophyll fluorescence Semi-arid land
类型Article
语种英语
国家Spain
收录类别SCI-E
WOS记录号WOS:000338132300011
WOS关键词BIOLOGICAL SOIL CRUSTS ; WATER-CONTENT ; CO2 EXCHANGE ; NEGEV DESERT ; CHLOROPHYLL FLUORESCENCE ; TEMPERATURE RESPONSES ; SOUTHERN UTAH ; SAND DUNES ; ARID LANDS ; DEW
WOS类目Biodiversity Conservation ; Ecology ; Environmental Sciences
WOS研究方向Biodiversity & Conservation ; Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181039
作者单位1.CSIC, Dept Desertificac & Geoecol, Estn Expt Zonas Aridas, La Canada De San Urbano 04120, Almeria, Spain;
2.Univ Cordoba, Dept Ingn Forestal, Escuela Tecn Super Ingn Agron & Montes, E-14071 Cordoba, Spain;
3.Univ Rey Juan Carlos, Dept Biol & Geol, Area Biodiversidad & Conservac, Escuela Super Ciencias Expt & Tecnol, Mostoles 28933, Spain
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GB/T 7714
Ladron de Guevara, Monica,Lazaro, Roberto,Quero, Jose L.,et al. Simulated climate change reduced the capacity of lichen-dominated biocrusts to act as carbon sinks in two semi-arid Mediterranean ecosystems[J],2014,23(7):1787-1807.
APA Ladron de Guevara, Monica.,Lazaro, Roberto.,Quero, Jose L..,Ochoa, Victoria.,Gozalo, Beatriz.,...&Maestre, Fernando T..(2014).Simulated climate change reduced the capacity of lichen-dominated biocrusts to act as carbon sinks in two semi-arid Mediterranean ecosystems.BIODIVERSITY AND CONSERVATION,23(7),1787-1807.
MLA Ladron de Guevara, Monica,et al."Simulated climate change reduced the capacity of lichen-dominated biocrusts to act as carbon sinks in two semi-arid Mediterranean ecosystems".BIODIVERSITY AND CONSERVATION 23.7(2014):1787-1807.
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