Riparian Vegetation Communities of the American Pacific Northwest are Tied to Multi-Scale Environmental Filters

被引:20
|
作者
Hough-Snee, N. [1 ,2 ]
Roper, B. B. [2 ,3 ]
Wheaton, J. M. [2 ,4 ]
Lokteff, R. L. [1 ,2 ]
机构
[1] USDA Forest Serv, Forest Sci Lab, PIBO Effectiveness Monitoring Program, Logan, UT USA
[2] Utah State Univ, Dept Watershed Sci, Logan, UT 84322 USA
[3] USDA Forest Serv, Forest Sci Lab, Stream & Aquat Ecol Unit, Logan, UT USA
[4] Utah State Univ, US & Intermt Ctr River Restorat & Rehabil, Logan, UT 84322 USA
关键词
riparian ecology; riparian vegetation; environmental filters; assembly rules; Columbia River Basin; OLYMPIC NATIONAL-PARK; HEADWATER STREAMS; PLANT-COMMUNITIES; CLIMATE-CHANGE; RIVER; DISTURBANCE; LANDSCAPE; TRAITS; PRECIPITATION; ASSEMBLAGES;
D O I
10.1002/rra.2815
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Riparia surrounding low-order streams are dynamic environments that often support distinct biodiversity. Because of their connection to nearby uplands, riparian vegetation communities at these streams respond to many environmental filtersclimatic, physical, chemical or biotic factorsthat restrict what species can occur at a given location from within larger regional species pools. In this study, we examined how environmental filters originating at the landscape, watershed and reach scales correspond to riparian plant community composition across the interior Columbia and upper Missouri River basins, USA. We correlated riparian vegetation to environmental filters, identified unique communities and partitioned the variance within riparian vegetation data among filters originating at different scales. Riparian vegetation composition was strongly correlated to landscape-scale filters including elevation, precipitation and temperature. Watershed-scale filters such as grazing and reach filters indicative of fluvial setting were also correlated to vegetation composition, often differentiating communities with similar landscape settings. We identified 10 distinct vegetation communities. Forested communities occurred at higher elevation, moderate gradient reaches with high mean annual precipitation. Shrub-forb systems corresponded to fluvial and watershed disturbances and occurred within climates that could preclude forest establishment. Meadows corresponded to high water tables and/or high grazing activity. Variance partitioning showed that landscape-scale filters explained the most variance within vegetation communities. Global change will alter many of the environmental filters that drive vegetation. Vegetation change may occur rapidly if local filters (e.g. fluvial process) change rapidly or may occur more slowly if larger-order filters (e.g. climate) change slowly and without influencing local hydrogeomorphic filters. By identifying filter-vegetation relationships at large spatial scales, hypotheses can be constructed on how riparian vegetation communities may change under future environmental conditions. Published 2014. This article is a U.S. Government work and is in the public domain in the USA.
引用
收藏
页码:1151 / 1165
页数:15
相关论文
共 50 条
  • [41] Use of multi-sensor, multi-scale and temporal data for segmenting vegetation
    Berroir, JP
    Bouzidi, S
    Herlin, I
    IMAGE AND SIGNAL PROCESSING FOR REMOTE SENSING III, 1996, 2955 : 96 - 105
  • [42] Partitioning the multi-scale effects of human activity on the occurrence of riparian forest birds
    Fletcher, Robert J.
    Hutto, Richard L.
    LANDSCAPE ECOLOGY, 2008, 23 (06) : 727 - 739
  • [43] Partitioning the multi-scale effects of human activity on the occurrence of riparian forest birds
    Robert J. Fletcher
    Richard L. Hutto
    Landscape Ecology, 2008, 23 : 727 - 739
  • [44] Quantifying freshwater-induced fragmentation of submerged aquatic vegetation communities using a multi-scale landscape ecology approach
    Santos, Rolando O.
    Lirman, Diego
    Serafy, Joseph E.
    MARINE ECOLOGY PROGRESS SERIES, 2011, 427 : 233 - 246
  • [45] Fast Multi-Scale Detection of Relevant Communities in Large-Scale Networks
    Le Martelot, Erwan
    Hankin, Chris
    COMPUTER JOURNAL, 2013, 56 (09): : 1136 - 1150
  • [46] Multi-Scale Transects of Three North American Drylines
    White, Loren D.
    Lu, Duanjun
    ATMOSPHERE, 2020, 11 (08)
  • [47] Multi-scale analysis for environmental dispersion in wetland flow
    Wu, Zi
    Li, Z.
    Chen, G. Q.
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2011, 16 (08) : 3168 - 3178
  • [48] Temporal multi-scale environmental actions for concrete structures
    Gu, X. (gxl@tongji.edu.cn), 2012, Science Press (40):
  • [49] Contributions of salmon-derived nitrogen to riparian vegetation in the northwest Pacific region (vol 11, pg 377, 2006)
    Nagasaka, Akiko
    Nagasaka, Yu
    Ito, Kinuko
    Mano, Tsutomu
    Yamanaka, Masami
    Katayama, Atushi
    Sato, Yoshikazu
    Grankin, Andrey L.
    Zdorikov, Andrey I.
    Boronov, Gennady A.
    JOURNAL OF FOREST RESEARCH, 2006, 11 (06) : 475 - 476
  • [50] Analysis and Application of the Multi-scale Characteristics of Vegetation Temperature Condition Index
    Wang P.
    Feng M.
    Mei S.
    Li L.
    Zhang S.
    Jing Y.
    2018, Editorial Board of Medical Journal of Wuhan University (43): : 915 - 921