Arid
DOI10.1016/j.geomorph.2013.04.031
Geomorphic controls on biological soil crust distribution: A conceptual model from the Mojave Desert (USA)
Williams, Amanda J.1,2; Buck, Brenda J.1; Soukup, Deborah A.1; Merkler, Douglas J.3
通讯作者Williams, Amanda J.
来源期刊GEOMORPHOLOGY
ISSN0169-555X
EISSN1872-695X
出版年2013
卷号195页码:99-109
英文摘要

Biological soil crusts (BSCs) are bio-sedimentary features that play critical geomorphic and ecological roles in arid environments. Extensive mapping, surface characterization, GIS overlays, and statistical analyses explored relationships among BSCs, geomorphology, and soil characteristics in a portion of the Mojave Desert (USA). These results were used to develop a conceptual model that explains the spatial distribution of BSCs. In this model, geologic and geomorphic processes control the ratio of fine sand to rocks, which constrains the development of three surface cover types and biogeomorphic feedbacks across intermontane basins. (1) Cyanobacteria crusts grow where abundant fine sand and negligible rocks form saltating sand sheets. Cyanobacteria facilitate moderate sand sheet activity that reduces growth potential of mosses and lichens. (2) Extensive tall moss-lichen pinnacled crusts are favored on early to late Holocene surfaces composed of mixed rock and fine sand. Moss-lichen crusts induce a dust capture feedback mechanism that promotes further crust propagation and forms biologically-mediated vesicular (Av) horizons. The presence of thick biogenic vesicular horizons supports the interpretation that BSCs are long-lived surface features. (3) Low to moderate density moss-lichen crusts grow on early Holocene and older geomorphic surfaces that display high rock cover and negligible surficial fine sand. Desert pavement processes and abiotic vesicular horizon formation dominate these surfaces and minimize bioturbation potential. The biogeomorphic interactions that sustain these three surface cover trajectories support unique biological communities and soil conditions, thereby sustaining ecological stability. The proposed conceptual model helps predict BSC distribution within intermontane basins to identify biologically sensitive areas, set reference conditions for ecological restoration, and potentially enhance arid landscape models, as scientists address impacts of climate change and anthropogenic disturbances. (C) 2013 Elsevier B.V. All rights reserved.


英文关键词Biological soil crust Soil-geomorphology Pedogenesis Vesicular (Av) horizon Ecology Biogeomorphology
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000321084800008
WOS关键词CIMA-VOLCANIC-FIELD ; QUATERNARY CLIMATIC CHANGES ; NEGEV-DESERT ; TRAMPLING DISTURBANCE ; HYDRAULIC-PROPERTIES ; PEDOGENIC PROCESSES ; MICROBIOTIC CRUSTS ; COLORADO PLATEAU ; AIRBORNE DUST ; NEVADA
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/177384
作者单位1.Univ Nevada, Dept Geosci, Las Vegas, NV 89154 USA;
2.Univ Nevada, Sch Life Sci, Las Vegas, NV 89154 USA;
3.USDA NRCS, Las Vegas, NV 89120 USA
推荐引用方式
GB/T 7714
Williams, Amanda J.,Buck, Brenda J.,Soukup, Deborah A.,et al. Geomorphic controls on biological soil crust distribution: A conceptual model from the Mojave Desert (USA)[J],2013,195:99-109.
APA Williams, Amanda J.,Buck, Brenda J.,Soukup, Deborah A.,&Merkler, Douglas J..(2013).Geomorphic controls on biological soil crust distribution: A conceptual model from the Mojave Desert (USA).GEOMORPHOLOGY,195,99-109.
MLA Williams, Amanda J.,et al."Geomorphic controls on biological soil crust distribution: A conceptual model from the Mojave Desert (USA)".GEOMORPHOLOGY 195(2013):99-109.
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