Arid
DOI10.1007/s00248-001-1013-9
Temporal variation in community composition, pigmentation, and F-v/F-m of desert cyanobacterial soil crusts
Bowker, MA; Reed, SC; Belnap, J; Phillips, SL
通讯作者Bowker, MA
来源期刊MICROBIAL ECOLOGY
ISSN0095-3628
出版年2002
卷号43期号:1页码:13-25
英文摘要

Summers on the Colorado Plateau (USA) are typified by harsh conditions such as high temperatures, brief soil hydration periods, and high UV and visible radiation. We investigated whether community composition, physiological status, and pigmentation might vary in biological soil crusts as a result of such conditions. Representative surface cores were sampled at the ENE, WSW, and top microaspects of 20 individual soil crust pedicels at a single site in Canyonlands National Park, Utah, in spring and fall of 1999. Frequency of cyanobacterial taxa, pigment concentrations, and dark adapted quantum yield (F-v/F-m) were measured for each core. The frequency of major cyanobacterial taxa was lower in the fall compared to spring. The less-pigmented cyanobacterium Microcoleus vaginatus showed significant mortality when not in the presence of Nostoc spp. and Scytonema myochrous (Dillw.) Agardh. (both synthesizers of UV radiation-linked pigments) but had little or no mortality when these species were abundant. We hypothesize that the sunscreen pigments produced by Nostoc and Scytonema in the surface of crusts protect other, less-pigmented taxa. When fall and spring samples were compared, overall cyanobacterial frequency was lower in fall, while sunscreen pigment concentrations, chlorophyll a concentration, and F-v/F-m were higher in fall. The ratio of cyanobacterial frequency/chlorophyll a concentrations was 2-3 times lower in fall than spring. Because chlorophyll a is commonly used as a surrogate measure of soil cyanobacterial biomass, these results indicate that seasonality needs to be taken into consideration. In the fall sample, most pigments associated with UV radiation protection or repair were at their highest concentrations on pedicel tops and WSW microaspects, and at their lowest concentrations on ENE microaspects. We suggest that differential pigment concentrations between microaspects are induced by varying UV radiation dosage at the soil surface on these different microaspects.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000174896300002
WOS关键词UV-ABSORBING COMPOUNDS ; ULTRAVIOLET-RADIATION ; B RADIATION ; CHLOROPHYLL FLUORESCENCE ; MICROBIOTIC CRUSTS ; COLORADO PLATEAU ; SHEATH PIGMENT ; NOSTOC-COMMUNE ; PHYTOPLANKTON ; CAROTENOIDS
WOS类目Ecology ; Marine & Freshwater Biology ; Microbiology
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Microbiology
来源机构United States Geological Survey
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/143393
作者单位(1)USGS, BRD, Canyonlands Field Stn, Moab, UT 84532 USA
推荐引用方式
GB/T 7714
Bowker, MA,Reed, SC,Belnap, J,et al. Temporal variation in community composition, pigmentation, and F-v/F-m of desert cyanobacterial soil crusts[J]. United States Geological Survey,2002,43(1):13-25.
APA Bowker, MA,Reed, SC,Belnap, J,&Phillips, SL.(2002).Temporal variation in community composition, pigmentation, and F-v/F-m of desert cyanobacterial soil crusts.MICROBIAL ECOLOGY,43(1),13-25.
MLA Bowker, MA,et al."Temporal variation in community composition, pigmentation, and F-v/F-m of desert cyanobacterial soil crusts".MICROBIAL ECOLOGY 43.1(2002):13-25.
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