Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands

Introductions of mammalian herbivores to remote islands without predators provide a natural experiment to ask how temporal and spatial variation in herbivory intensity alter feedbacks between plant and soil processes. We investigated ecosystem effects resulting from introductions of Rangifer tarandu...

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Main Authors: Ricca, MA, Miles, AK, Van Vuren, DH, Eviner, VT
Format: Article in Journal/Newspaper
Language:unknown
Published: eScholarship, University of California 2016
Subjects:
Online Access:https://escholarship.org/uc/item/4vt8f0g8
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spelling ftcdlib:oai:escholarship.org/ark:/13030/qt4vt8f0g8 2023-05-15T14:18:08+02:00 Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands Ricca, MA Miles, AK Van Vuren, DH Eviner, VT 2016-03-01 application/pdf https://escholarship.org/uc/item/4vt8f0g8 unknown eScholarship, University of California qt4vt8f0g8 https://escholarship.org/uc/item/4vt8f0g8 public Ecosphere, vol 7, iss 3 Alaska Aleutian alternative state caribou irruption isotope mineralization nitrogen plant Rangifer tarandus reindeer soil Ecological Applications Ecology Zoology article 2016 ftcdlib 2021-06-20T14:23:13Z Introductions of mammalian herbivores to remote islands without predators provide a natural experiment to ask how temporal and spatial variation in herbivory intensity alter feedbacks between plant and soil processes. We investigated ecosystem effects resulting from introductions of Rangifer tarandus (hereafter "Rangifer") to native mammalian predator- and herbivore-free islands in the Aleutian archipelago of Alaska. We hypothesized that the maritime tundra of these islands would experience either: (1) accelerated ecosystem processes mediated by positive feedbacks between increased graminoid production and rapid nitrogen cycling; or (2) decelerated processes mediated by herbivory that stimulated shrub domination and lowered soil fertility We measured summer plant and soil properties across three islands representing a chronosequence of elapsed time post-Rangifer introduction (Atka: ∼100 yr; Adak: ∼50; Kagalaska: ∼0), with distinct stages of irruptive population dynamics of Rangifer nested within each island (Atka: irruption, K-overshoot, decline, K-re-equilibration; Adak: irruption, K-overshoot; Kagalaska: initial introduction). We also measured Rangifer spatial use within islands (indexed by pellet group counts) to determine how ecosystem processes responded to spatial variation in herbivory. Vegetation community response to herbivory varied with temporal and spatial scale. When comparing temporal effects using the island chronosequence, increased time since herbivore introduction led to more graminoids and fewer dwarf-shrubs, lichens, and mosses. Slow-growing Cladonia lichens that are highly preferred winter forage were decimated on both long-term Rangifer-occupied islands. In addition, linear relations between more concentrated Rangifer spatial use and reductions in graminoid and forb biomass within islands added spatial heterogeneity to long-term patterns identified by the chronosequence. These results support, in part, the hypothesis that Rangifer population persistence on islands is facilitated by successful exploitation of graminoid biomass as winter forage after palatable lichens are decimated. However, the shift from shrubs to graminoids was expected to enhance rates of nitrogen cycling yet rates of net N-mineralization, NH+4 pools, and soil δ15N declined markedly along the chronosequence and were weakly associated with spatial use within islands. Overall plant and soil patterns were disrupted but responded differently to intermediate (50 yr) and long-term (100 yr) herbivory, and were correlated with distinct stages of irruptive population dynamics. Copyright: Article in Journal/Newspaper Archipelago Rangifer tarandus Subarctic Tundra Alaska University of California: eScholarship Adak ENVELOPE(59.561,59.561,66.502,66.502) Atka ENVELOPE(151.789,151.789,60.835,60.835)
institution Open Polar
collection University of California: eScholarship
op_collection_id ftcdlib
language unknown
topic Alaska
Aleutian
alternative state
caribou
irruption
isotope
mineralization
nitrogen
plant
Rangifer tarandus
reindeer
soil
Ecological Applications
Ecology
Zoology
spellingShingle Alaska
Aleutian
alternative state
caribou
irruption
isotope
mineralization
nitrogen
plant
Rangifer tarandus
reindeer
soil
Ecological Applications
Ecology
Zoology
Ricca, MA
Miles, AK
Van Vuren, DH
Eviner, VT
Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
topic_facet Alaska
Aleutian
alternative state
caribou
irruption
isotope
mineralization
nitrogen
plant
Rangifer tarandus
reindeer
soil
Ecological Applications
Ecology
Zoology
description Introductions of mammalian herbivores to remote islands without predators provide a natural experiment to ask how temporal and spatial variation in herbivory intensity alter feedbacks between plant and soil processes. We investigated ecosystem effects resulting from introductions of Rangifer tarandus (hereafter "Rangifer") to native mammalian predator- and herbivore-free islands in the Aleutian archipelago of Alaska. We hypothesized that the maritime tundra of these islands would experience either: (1) accelerated ecosystem processes mediated by positive feedbacks between increased graminoid production and rapid nitrogen cycling; or (2) decelerated processes mediated by herbivory that stimulated shrub domination and lowered soil fertility We measured summer plant and soil properties across three islands representing a chronosequence of elapsed time post-Rangifer introduction (Atka: ∼100 yr; Adak: ∼50; Kagalaska: ∼0), with distinct stages of irruptive population dynamics of Rangifer nested within each island (Atka: irruption, K-overshoot, decline, K-re-equilibration; Adak: irruption, K-overshoot; Kagalaska: initial introduction). We also measured Rangifer spatial use within islands (indexed by pellet group counts) to determine how ecosystem processes responded to spatial variation in herbivory. Vegetation community response to herbivory varied with temporal and spatial scale. When comparing temporal effects using the island chronosequence, increased time since herbivore introduction led to more graminoids and fewer dwarf-shrubs, lichens, and mosses. Slow-growing Cladonia lichens that are highly preferred winter forage were decimated on both long-term Rangifer-occupied islands. In addition, linear relations between more concentrated Rangifer spatial use and reductions in graminoid and forb biomass within islands added spatial heterogeneity to long-term patterns identified by the chronosequence. These results support, in part, the hypothesis that Rangifer population persistence on islands is facilitated by successful exploitation of graminoid biomass as winter forage after palatable lichens are decimated. However, the shift from shrubs to graminoids was expected to enhance rates of nitrogen cycling yet rates of net N-mineralization, NH+4 pools, and soil δ15N declined markedly along the chronosequence and were weakly associated with spatial use within islands. Overall plant and soil patterns were disrupted but responded differently to intermediate (50 yr) and long-term (100 yr) herbivory, and were correlated with distinct stages of irruptive population dynamics. Copyright:
format Article in Journal/Newspaper
author Ricca, MA
Miles, AK
Van Vuren, DH
Eviner, VT
author_facet Ricca, MA
Miles, AK
Van Vuren, DH
Eviner, VT
author_sort Ricca, MA
title Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
title_short Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
title_full Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
title_fullStr Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
title_full_unstemmed Impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
title_sort impacts of introduced rangifer on ecosystem processes of maritime tundra on subarctic islands
publisher eScholarship, University of California
publishDate 2016
url https://escholarship.org/uc/item/4vt8f0g8
long_lat ENVELOPE(59.561,59.561,66.502,66.502)
ENVELOPE(151.789,151.789,60.835,60.835)
geographic Adak
Atka
geographic_facet Adak
Atka
genre Archipelago
Rangifer tarandus
Subarctic
Tundra
Alaska
genre_facet Archipelago
Rangifer tarandus
Subarctic
Tundra
Alaska
op_source Ecosphere, vol 7, iss 3
op_relation qt4vt8f0g8
https://escholarship.org/uc/item/4vt8f0g8
op_rights public
_version_ 1766289844767555584