Structural complexity characterizes fine‐scale forest conditions used by Pacific martens

Author:

Delheimer Matthew S.1ORCID,Moriarty Katie M.2ORCID,Munro Holly L.3ORCID,Early Desiree A.4,Hamm Keith A.4ORCID,Green Rebecca E.5

Affiliation:

1. USDA Forest Service Pacific Southwest Research Station 2480 Carson Road Placerville CA 95667 USA

2. National Council for Air and Stream Improvement, Inc. 2438 NW Professional Drive Corvallis OR 97330 USA

3. National Council for Air and Stream Improvement, Inc. 180 E Green Street Athens GA 30602 USA

4. Green Diamond Resource Company PO Box 68 Korbel CA 95550 USA

5. USDA Forest Service Pacific Southwest Research Station 2081 E. Sierra Avenue Fresno CA 93710 USA

Abstract

AbstractWhen wildlife species exhibit unexpected associations with vegetation, replication of studies in different locales can illuminate whether patterns of use are consistent or divergent. Our objective was to describe fine‐scale forest conditions used by Pacific martens (Martes caurina) at 2 study sites in northern California that differed in forest composition and past timber harvest. We identified denning and resting locations of radio‐marked martens and sampled structure‐ and plot‐level vegetation using standardized forest inventory methods between 2009–2021. Woody structures used by martens were significantly larger than randomly available structures across types (e.g., live tree, snag, log) and at both study sites. Den and rest structures occurred in areas characterized by higher numbers of logs and snags, lower numbers of live trees and stumps, larger diameter live trees and logs, and greater variation in live tree and log diameter. Features of denning and resting locations were largely consistent across study sites and were generally representative of fine‐scale forest heterogeneity and increased structural complexity, conditions that martens have been widely associated with at broader spatial scales (i.e., home range or landscape). The spatial occurrence of denning and resting locations may indicate that fine‐scale structural complexity facilitates marten foraging while reducing predation risk. Our work offers timely and directed information that can guide forest management in the context of increased landscape change.

Funder

U.S. Forest Service

U.S. Fish and Wildlife Service

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics,Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

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