Carbon exchange in biological soil crust communities under differential temperatures and soil water contents: implications for global change
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[1] O. Lange. Photosynthesis of Soil-Crust Biota as Dependent on Environmental Factors , 2001 .
[2] U. Karsten,et al. Carotenoids and mycosporine-like amino acid compounds in members of the genus Microcoleus (Cyanobact , 1996 .
[3] Mark E. Miller,et al. Response of desert biological soil crusts to alterations in precipitation frequency , 2004, Oecologia.
[4] J. Belnap,et al. Photosynthesis of green algal soil crust lichens from arid lands in southern Utah, USA: role of water content on light and temperature responses of CO2 exchange , 1997 .
[5] J. Belnap,et al. MICROENVIRONMENTS AND MICROSCALE PRODUCTIVITY OF CYANOBACTERIAL DESERT CRUSTS 1 , 1996 .
[6] O. Lange,et al. Photosynthesis and water relations of lichen soil crusts: field measurements in the coastal fog zone of the Namib Desert , 1994 .
[7] J. Belnap,et al. Carbon and Nitrogen Fixation Differ between Successional Stages of Biological Soil Crusts in the Colorado Plateau and Chihuahuan Desert , 2006 .
[8] S. O. Link,et al. CO2 fluxes of cryptogamic crusts: I. Response to resaturation. , 1993, The New phytologist.
[9] J. Belnap,et al. Biological Soil Crusts: Characteristics and Distribution , 2001 .
[10] Jayne Belnap,et al. Estimates of global cyanobacterial biomass and its distribution , 2003 .
[11] D. Smith,et al. LICHEN PHYSIOLOGY XIII. EFFECTS OF REWETTING DRY LICHENS , 1973 .
[12] T. Green,et al. Photosynthetic Depression at High Thallus Water Contents in Lichens: Concurrent Use of Gas Exchange and Fluorescence Techniques with a Cyanobacterial and a Green Algal Peltigera Species , 1996 .
[13] B. Büdel,et al. Net Photosynthesis Activation of a Desiccated Cyano-bacterium Without Liquid Water in High air Humidity Alone. Experiments with Microcoleus sociatus Isolated from a Desert Soil Crust , 1994 .
[14] T. D. Brock. EFFECT OF WATER POTENTIAL ON A MICROCOLEUS (CYANOPHYCEAE) FROM A DESERT CRUST 1 , 1975 .
[15] J. Belnap,et al. Soil lichen and moss cover and species richness can be highly dynamic: The effects of invasion by the annual exotic grass Bromus tectorum, precipitation, and temperature on biological soil crusts in SE Utah , 2006 .
[16] S. O. Link,et al. CO2 fluxes of cryptogamic crusts: II. Response to dehydration. , 1993, The New phytologist.
[17] H. Mooney,et al. 23 – Estimations of Global Terrestrial Productivity: Converging toward a Single Number? , 2001 .
[18] K. Petersen. A warm and wet little climatic optimum and a cold and dry little ice age in the southern rocky mountains, U.S.A. , 1994 .
[19] O. Lange,et al. Biological Soil Crusts and Ecosystem Nitrogen and Carbon Dynamics , 2001 .
[20] J. Belnap,et al. Photosynthesis of the cyanobacterial soil‐crust lichen Collema tenax from arid lands in southern Utah, USA: role of water content on light and temperature responses of CO2 exchange , 1998 .
[21] D. Smith,et al. ECOLOGICAL PHYSIOLOGY OF THE LICHEN HYPOGYMNIA PHYSODES , 1976 .