Resilience of riparian vegetation composition and diversity following cessation of livestock grazing in northeastern Oregon

Author:

Kauffman J BooneORCID,Coleman Greg,Otting Nick,Lytjen Danna,Nagy Dana,Beschta Robert L.

Abstract

AbstractRiparian ecosystem restoration has been accomplished through exclusion of livestock using corridor fencing along hundreds of kilometers of streams in the western USA, for the benefit of riparian-obligate wildlife and endangered fishes. Yet few studies have evaluated shifts in the vegetation composition and diversity following the cessation of livestock impacts. We sampled riparian vegetation composition along 11-paired grazed and ungrazed (exclosed) stream reaches in northeastern Oregon, USA. Exclosure ages ranged from 2 to >30 years and grazing treatments varied from light grazing every one out of three years to heavy season-long grazing. Species richness and diversity was higher in the ungrazed reaches (p =0.002). The abundance of native sedges (Carex spp.) and broad-leaved forbs were also significantly (p < 0.05) greater in ungrazed areas. In contrast, exotic species adapted to grazing such as Poa pratensis and Trifolium repens were more abundant in grazed stream reaches. The prevalence of hydrophytic species significantly increased (p ≤ 0.01) in ungrazed reaches, (based on wetland species indicator scores), indicating that wetland-dominated communities within the ungrazed stream reaches were replacing ones adapted to drier environments. The increased abundance of facultative and wetland-obligate species in ungrazed reaches compared to grazed reaches suggests that livestock grazing exacerbates those climate change effects also leading to warmer and drier conditions. Further, riparian-obligate shrub cover along the streambank was higher in 7 of 8 exclosures that were older than 5 years. As a restoration approach the inherent resilience of riparian ecosystems exhibited in ungrazed riparian zones suggest positive feedbacks to other beneficial ecosystem processes such as increased species and habitat diversity, increased carbon sequestration, enhanced allochthonous inputs and greater sediment retention, that would affect the aquatic and terrestrial biota, water quality, and stream morphology.

Publisher

Cold Spring Harbor Laboratory

Reference41 articles.

1. Naiman RJ , Decamps H , McClain ME . Riparian: ecology, conservation, and management of streamside communities. Elsevier, San Francisco, CA. 2005.

2. Scale perspectives on avian diversity in western riparian ecosystems;Conservation Biology,1994

3. Kauffman JB , Mahrt M , Mahrt LA , Edge WD . Wildlife communities and habitats of riparian ecosystems. In: Wildlife Habitats and Species Associations within Oregon and Washington: Building a Common Understanding for Management. Oregon State University Press, Corvallis, OR. 2001

4. Cumulative Effects of Riparian Disturbances along High Desert Trout Streams of the John Day Basin, Oregon

5. Stream channel adjustments following elimination of cattle grazing;McDowell;Journal of the American Water Resources Association,1997

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