Community Composition and Photosynthesis by Photoautotrophs under Quartz Pebbles, Southern Mojave Desert

Schlesinger WH, Pippen JS, Wallenstein MD, Hofmockel KS, Klepeis DM, Mahall BE, Smith SD. 2003. Community Composition and Photosynthesis by Photoautotrophs under Quartz Pebbles, Southern Mojave Desert. Ecology. 84(12):3222-3231

We used 16s rDNA sequences to identify novel species of cyanobacteria beneath translucent quartz pebbles in the desert pavement on an alluvial piedmont of the Coxcomb Mountains in the southern Mojave Desert, California, USA. Transmission of light, as measured with an integrating sphere, was about 0.08% beneath the thickest pieces of quartz (25 mm) harboring these hypolithic autotrophs. The photosynthetic rate ranged from 0.1 to 1.0 μmol· m-2·s-1 in the linear range of its response to light (PAR of 0-50 μmol· m-2·s-1), over which the apparent quantum-use efficiency was 0.019. Light-saturated rates of 1.7-2.7 μmol· m-2·s-1 were recorded at light intensities of 200-400 μmol· m-2·s-1. The hypolithic community had an upper thermal tolerance of $>90^{\textdegree)C$ in laboratory conditions. The quartz pebbles confer a modest greenhouse effect that may be important for photosynthetic activity during cool, wet, wintertime periods that prevail in the Mojave Desert.

Type
Journal Article
Authors
Schlesinger, William; Pippen, Jeffrey; Wallenstein, Matthew; Hofmockel, Kirsten; Klepeis, Debra; Mahall, Bruce; Smith, S.
Units
JOTR
Keywords
Absence (Biodiversity), Cyanobacteria, desert pavement, diaphanous rock, Greenhouse Effect, hypolithic autotrophs, light extinction, Mojave Desert, molecular identification, Photosynthesis, Presence (Biodiversity), quantum-use efficiency, Taxa Links To References, thermal tolerance, Vascular Plants (Plantae)

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