A multi-scale classification of vegetation dynamics in arid lands: What is the right scale for models, monitoring, and restoration?
Measurements of vegetation and soil dynamics used to anticipate (or reverse) catastrophic transitions in arid and semi-arid rangelands are often difficult to interpret. This situation is due, in part, to a lack of empirically based conceptual models that incorporate the effects of multiple processes...
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Veröffentlicht in: | Journal of arid environments 2006-04, Vol.65 (2), p.296-318 |
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creator | Bestelmeyer, B.T. Trujillo, D.A. Tugel, A.J. Havstad, K.M. |
description | Measurements of vegetation and soil dynamics used to anticipate (or reverse) catastrophic transitions in arid and semi-arid rangelands are often difficult to interpret. This situation is due, in part, to a lack of empirically based conceptual models that incorporate the effects of multiple processes, scale, spatio-temporal pattern, and soils. Using observations of multi-temporal data from the Chihuahuan Desert, we describe a new approach to classifying vegetation dynamics based on multiple scales of vegetation and soil pattern as well as cross-scale interactions. We propose the existence of six types of mechanisms driving vegetation change including (1) stability, (2) size oscillation of plants, (3) loss and reestablishment of plants within functional groups, (4) loss of one plant functional group and replacement by another, (5) spatial reorganization of vegetation patches, and (6) cascading transitions that spread from small to broad scales. We provide evidence for the existence of these mechanisms, the species involved, and the geomorphic components on which they are observed in the Chihuahuan Desert. These mechanisms highlight the kinds of multi-scale observations that are needed to detect or interpret change and emphasize the importance of soil surface properties for interpreting vegetation change. The classification is potentially general across arid and semi-arid ecosystems and links spatial and temporal patterns in vegetation with ecological and geomorphic processes, monitoring, and restoration strategies. |
doi_str_mv | 10.1016/j.jaridenv.2005.06.028 |
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This situation is due, in part, to a lack of empirically based conceptual models that incorporate the effects of multiple processes, scale, spatio-temporal pattern, and soils. Using observations of multi-temporal data from the Chihuahuan Desert, we describe a new approach to classifying vegetation dynamics based on multiple scales of vegetation and soil pattern as well as cross-scale interactions. We propose the existence of six types of mechanisms driving vegetation change including (1) stability, (2) size oscillation of plants, (3) loss and reestablishment of plants within functional groups, (4) loss of one plant functional group and replacement by another, (5) spatial reorganization of vegetation patches, and (6) cascading transitions that spread from small to broad scales. We provide evidence for the existence of these mechanisms, the species involved, and the geomorphic components on which they are observed in the Chihuahuan Desert. These mechanisms highlight the kinds of multi-scale observations that are needed to detect or interpret change and emphasize the importance of soil surface properties for interpreting vegetation change. 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This situation is due, in part, to a lack of empirically based conceptual models that incorporate the effects of multiple processes, scale, spatio-temporal pattern, and soils. Using observations of multi-temporal data from the Chihuahuan Desert, we describe a new approach to classifying vegetation dynamics based on multiple scales of vegetation and soil pattern as well as cross-scale interactions. We propose the existence of six types of mechanisms driving vegetation change including (1) stability, (2) size oscillation of plants, (3) loss and reestablishment of plants within functional groups, (4) loss of one plant functional group and replacement by another, (5) spatial reorganization of vegetation patches, and (6) cascading transitions that spread from small to broad scales. We provide evidence for the existence of these mechanisms, the species involved, and the geomorphic components on which they are observed in the Chihuahuan Desert. These mechanisms highlight the kinds of multi-scale observations that are needed to detect or interpret change and emphasize the importance of soil surface properties for interpreting vegetation change. The classification is potentially general across arid and semi-arid ecosystems and links spatial and temporal patterns in vegetation with ecological and geomorphic processes, monitoring, and restoration strategies.</description><subject>arid lands</subject><subject>Chihuahuan Desert</subject><subject>Geomorphology</subject><subject>landscape ecology</subject><subject>plant communities</subject><subject>plant ecology</subject><subject>Soil quality</subject><subject>spatial variation</subject><subject>State-and-transition models</subject><subject>temporal variation</subject><subject>Thresholds</subject><issn>0140-1963</issn><issn>1095-922X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2006</creationdate><recordtype>article</recordtype><recordid>eNqFkEFv1DAQhS1EJZaFvwA-cWrSGSdxEi5QVaVFqtQDVHCzvM5416skLrZ3pZ7543gJnHt6Hum9N-OPsXcIJQLKi32518ENNB9LAdCUIEsQ3Qu2Quibohfi50u2AqyhwF5Wr9jrGPcAiE1TrdjvSz4dxuSKaPRI3Iw6Rmed0cn5mXvLj7SltEzD06wnZyJ3Mz9t5KOeh_iR_9jpxF3kaUc8uO0u8aXM-sAnP9AYz7POLvng5u05zykeKObxb--nN-zM6jHS23-6Zg9frr9f3RZ39zdfry7vClPJNhWdrptq0MZ0m7rprcam10Si1ba3WTuxyW_ZWV1tht5uTN0gokTq6nYAqbtqzT4svY_B_zrkA9TkoqExf4P8ISpsEcSJ0ZrJxWiCjzGQVY_BTTo8KQR1Yq726j9zdWKuQKrMPAffL0GrvdLb4KJ6-CYAK0BohRR1dnxeHJkKHR0FFY2j2dDgApmkBu-eW_IHlLOaKQ</recordid><startdate>20060401</startdate><enddate>20060401</enddate><creator>Bestelmeyer, B.T.</creator><creator>Trujillo, D.A.</creator><creator>Tugel, A.J.</creator><creator>Havstad, K.M.</creator><general>Elsevier Ltd</general><scope>FBQ</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7SN</scope><scope>C1K</scope></search><sort><creationdate>20060401</creationdate><title>A multi-scale classification of vegetation dynamics in arid lands: What is the right scale for models, monitoring, and restoration?</title><author>Bestelmeyer, B.T. ; Trujillo, D.A. ; Tugel, A.J. ; Havstad, K.M.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c367t-8a453dacc8b459fa159aee27af9fee282b27a68fa3bd9fbc4511161e847d06a83</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2006</creationdate><topic>arid lands</topic><topic>Chihuahuan Desert</topic><topic>Geomorphology</topic><topic>landscape ecology</topic><topic>plant communities</topic><topic>plant ecology</topic><topic>Soil quality</topic><topic>spatial variation</topic><topic>State-and-transition models</topic><topic>temporal variation</topic><topic>Thresholds</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Bestelmeyer, B.T.</creatorcontrib><creatorcontrib>Trujillo, D.A.</creatorcontrib><creatorcontrib>Tugel, A.J.</creatorcontrib><creatorcontrib>Havstad, K.M.</creatorcontrib><collection>AGRIS</collection><collection>CrossRef</collection><collection>Ecology Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><jtitle>Journal of arid environments</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Bestelmeyer, B.T.</au><au>Trujillo, D.A.</au><au>Tugel, A.J.</au><au>Havstad, K.M.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>A multi-scale classification of vegetation dynamics in arid lands: What is the right scale for models, monitoring, and restoration?</atitle><jtitle>Journal of arid environments</jtitle><date>2006-04-01</date><risdate>2006</risdate><volume>65</volume><issue>2</issue><spage>296</spage><epage>318</epage><pages>296-318</pages><issn>0140-1963</issn><eissn>1095-922X</eissn><abstract>Measurements of vegetation and soil dynamics used to anticipate (or reverse) catastrophic transitions in arid and semi-arid rangelands are often difficult to interpret. This situation is due, in part, to a lack of empirically based conceptual models that incorporate the effects of multiple processes, scale, spatio-temporal pattern, and soils. Using observations of multi-temporal data from the Chihuahuan Desert, we describe a new approach to classifying vegetation dynamics based on multiple scales of vegetation and soil pattern as well as cross-scale interactions. We propose the existence of six types of mechanisms driving vegetation change including (1) stability, (2) size oscillation of plants, (3) loss and reestablishment of plants within functional groups, (4) loss of one plant functional group and replacement by another, (5) spatial reorganization of vegetation patches, and (6) cascading transitions that spread from small to broad scales. We provide evidence for the existence of these mechanisms, the species involved, and the geomorphic components on which they are observed in the Chihuahuan Desert. These mechanisms highlight the kinds of multi-scale observations that are needed to detect or interpret change and emphasize the importance of soil surface properties for interpreting vegetation change. The classification is potentially general across arid and semi-arid ecosystems and links spatial and temporal patterns in vegetation with ecological and geomorphic processes, monitoring, and restoration strategies.</abstract><pub>Elsevier Ltd</pub><doi>10.1016/j.jaridenv.2005.06.028</doi><tpages>23</tpages></addata></record> |
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source | Elsevier ScienceDirect Journals |
subjects | arid lands Chihuahuan Desert Geomorphology landscape ecology plant communities plant ecology Soil quality spatial variation State-and-transition models temporal variation Thresholds |
title | A multi-scale classification of vegetation dynamics in arid lands: What is the right scale for models, monitoring, and restoration? |
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