Pinyon-Juniper. Conservation Profile 3,695,000 ha [9,130,000 acres] 13% of state. Key Bird-Habitat Attributes. Hab-16-1

Similar documents
Gray Flycatcher Empidonax wrightii

Stand structure and aridity alter tree mortality risk in Nevada s PJ woodlands

P-J is not just one vegetation type: key variation in structure and disturbance dynamics

Pinyon Jay (Gymnorhinus cyanocephalus)

Utah. White Rock Range Wilderness Study Area Site-Specific Monitoring Guide

EVALUATION OF AND CHEMICAL TREATMENTS TO RESTORE SAGEBRUSH UTAH

Gray Vireo (Vireo vicinior)

Scaling up Cactus Scrub Restoration at the Irvine Ranch

Thorne s Buckwheat (Eriogonum thornei)

Community and Biodiversity Consequences of Drought. Tom Whitham

Mills Rim Restoration and Fuelwood Proposed Action

Evaluating Habitat Restoration Efforts for the Bi-State Sage Grouse Rosemary Frederick

Pinyon-Juniper Ecosystems on the Uncompahgre Plateau: Assessment of our Current Knowledge and Information Needs

Impacts of Climate Change on Pinyon Pine Cone Production

Appendix II - 7. Buffalo Hump and Sand Dunes WSAs. Information and Recommendations

Monitoring the Spread of Magnolia kobus within the Royal Botanical Gardens Nature Sanctuaries. Katherine Moesker October 14, 2015

Oregon Wine Industry Sustainable Showcase. Gregory V. Jones

Introduction Methods

Appendix II Dubois Badlands and Whiskey Mountain WSAs. Information and Recommendations

Junipers of Colorado. Rocky Mountain Juniper

THE ELY CHAIN. Donald R. Cain Bureau of Land Management Ely, Nevada

The 2006 Economic Impact of Nebraska Wineries and Grape Growers

Plant root activity is limited to the soil bulbs Does not require technical expertise to. wetted by the water bottle emitter implement

HISTORY USES AND HEALTH BENEFITS. Figure 31. Nanking cherries

Common Name: VIRGINIA SPIRAEA. Scientific Name: Spiraea virginiana Britton. Other Commonly Used Names: Appalachian spiraea

BLUEBIRDS IN VINEYARDS. K. A. Howard

Sweetbay Magnolia: Are you missing an opportunity?

Pistachio Woodlands of Afghanistan Pistachio:

Coffee Eco-labeling: Profit, Prosperity, & Healthy Nature? Brian Crespi Andre Goncalves Janani Kannan Alexey Kudryavtsev Jessica Stern

GENERAL INFORMATION North America- CA, CO, ID, MT, NV, OR, UT, WA, and WY (USDA).

Work Sample (Minimum) for 10-K Integration Assignment MAN and for suppliers of raw materials and services that the Company relies on.

Colorado State University Viticulture and Enology. Grapevine Cold Hardiness

Barstow woolly sunflower (Eriophyllum mohavense)

Bumble bees: western bumble bee (Bombus occidentalis)

Migratory Soaring Birds Project. SEA & Wind Energy planning

GLOSSARY Last Updated: 10/17/ KL. Terms and Definitions

Tucson Cactus and Succulent Society. Opuntioid Garden Proposal. Tucson Prickly Park

Tremain Hatch Vineyard training & design

IMPOSING WATER DEFICITS TO IMPROVE WINE QUALITY AND REDUCE COSTS

Japanese Knotweed Red Winged Blackbird

THIS REPORT CONTAINS ASSESSMENTS OF COMMODITY AND TRADE ISSUES MADE BY USDA STAFF AND NOT NECESSARILY STATEMENTS OF OFFICIAL U.S.

OREGON WINE COUNTRY PLATES TOURISM PROMOTION DISTRIBUTION GUIDELINES

NORTHERN NAPA COUNTY

Dry Creek Watershed INITIAL SUCCESSES AND CHALLENGES. Red Sesbania Control Project

EFFECTS OF HIGH TEMPERATURE AND CONTROLLED FRUITING ON COTTON YIELD

HARVESTING MAXIMUM VALUE FROM SMALL GRAIN CEREAL FORAGES. George Fohner 1 ABSTRACT

Peach and Nectarine Cork Spot: A Review of the 1998 Season

The role of nitrogen fixation and climbing in competitive interactions between bird vetch and native plants

Results from the 2012 Berry Pricing Survey. Science Bldg., Ithaca, NY 14853

Center for Responsible Travel Transforming the Way the World Travels

FactSheet. Extension. Enhancing Food (Mast) Production for Woodland Wildlife in Ohio. The term mast was probably first used to describe

Skamania-Klickitat County Knotweed Control Project

Sustainable Coffee Challenge FAQ

Joseph G. Alfieri 1, William P. Kustas 1, John H. Prueger 2, Lynn G. McKee 1, Feng Gao 1 Lawrence E. Hipps 3, Sebastian Los 3

J / A V 9 / N O.

Common Name: ALABAMA LEATHER FLOWER. Scientific Name: Clematis socialis Kral. Other Commonly Used Names: none. Previously Used Scientific Names: none

Project leaders: Barbara Bentz and Jim Vandygriff, USDA Forest Service, RMRS, Logan, UT

Plant Profiles: HORT 2242 Landscape Plants II

Conifers of the Pacific Slope: An exploration into the world of ancient plants

Proposal for Establishing a Demonstration Site for Pinyon-Juniper Restoration

The Roles of Social Media and Expert Reviews in the Market for High-End Goods: An Example Using Bordeaux and California Wines

Evergreen Huckleberry Vaccinium ovatum

TAXONOMY. Plant Family. Species Scientific Name. var. nigra (Aiton) Waugh. Sub-species

Long-term survivorship of single-needle pinyon (Pinus monophylla) in mixed-conifer ecosystems of the Great Basin, USA

Forest Health Protection Survey

Common Name: AMERICAN MOUNTAIN-ASH

is pleased to introduce the 2017 Scholarship Recipients

OVERSEEDING EASTERN GAMAGRASS WITH COOL-SEASON GRASSES OR GRASS- LEGUME MIXTURES. Abstract

STEELE SWCD TREE PROGRAM BY THE STEELE COUNTY SWCD OFFICE

Vine Training Systems: What Purposes Do They Serve and What Attributes Are Most Important? Thomas J. Zabadal, MSU Dept.

Session 4: Managing seasonal production challenges. Relationships between harvest time and wine composition in Cabernet Sauvignon.

Bt Corn IRM Compliance in Canada

Porcelain Berry Identification, Ecology, and Control in the UW-Madison Lakeshore Nature Preserve

The Economic Impact of Bird Damage to Select Fruit Crops in New York

Friends of Black Mountain Coordinating Group, 11 August 2013

Ridge. 137 Lot Entitled Subdivision in the City of Plymouth, California Website & Video: Listed at $2,950,000

TABLE OF CONTENTS. Page. Page

Boma Monitoring Data Sheet

Identification & Management of White Pine Blister Rust

CERTIFIED SUSTAINABLE ANNUAL REPORT 2017

LIVE Wines Backgrounder Certified Sustainable Northwest Wines

Forage shrubs for alternative grazing systems

PRIEST RANCH WINES ESTATE FARMED WINES OF UNCOMMON QUALITY AND CHARACTER

Pecan Pollination. Dr. Patrick Conner University of Georgia, Horticulture Department

Lecture #2 Coordinated Phenological Research Networks: Nuts, Bolts, and Roles

Marvin Butler, Rhonda Simmons, and Ralph Berry. Abstract. Introduction

2017 FINANCIAL REVIEW

White Pine Blister Rust in California: Ecology and Conservation

HONDURAS. A Quick Scan on Improving the Economic Viability of Coffee Farming A QUICK SCAN ON IMPROVING THE ECONOMIC VIABILITY OF COFFEE FARMING

1. Continuing the development and validation of mobile sensors. 3. Identifying and establishing variable rate management field trials

Permanent Wildlife Plantings

Current research status and strategic challenges on the black coffee twig borer, Xylosandrus compactus in Uganda

Sunol Field Trip. Local Plant Communities

AMERICAN BEECH NUT / ROB ELLIS / ISTOCKPHOTO.COM

Need not forgetting our White Gold pans at Marsascala

The Courtship of Honeybees, Buckwheat and Watermelon Blossoms

The University of Georgia

Vineyard Site Evaluation For: Beringer

AGRONOMY 375 EXAM III. December 11 and 13, points possible

D Lemmer and FJ Kruger

Transcription:

Pinyon-Juniper habitat on the east slope of Wheeler Peak, White Pine County. Photo by Elisabeth Ammon. Key Bird-Habitat Attributes Stand Structure Ideal Scale for Conservation Action Plant Species Composition Plant Condition Distance to Riparian/Spring Habitats Presence of Cliffs > 30 m [100 ft] Tall Other Features Multi-aged stands with shrub understory (parkland setting), frequent shrubby openings, and occasional dense-canopy stands 1,400 ha [3,500 ac] or more Mixed stands of pinyon pine, juniper spp., mountain mahogany (where these can grow), with multiple species of shrubs (often sagebrush) as understory; forbs and flowering shrubs beneficial Pine nut and juniper berry crops important to birds; old trees provide snags for cavities; localized insect outbreaks pose little threat, but may create problems if widespread Proximity of water-dependent habitat increases value to birds Presence of tall cliffs increases value to birds Abandoned mine shafts increases value to birds; may be gated Estimated Cover in Nevada Landownership Breakdown Priority Bird Species Indicator Species Most Important Conservation Concerns Recovery Time Regions of Greatest Conservation Interest Important Bird Areas (McIvor 2005) Conservation Profile 3,695,000 ha [9,130,000 acres] 13% of state BLM = 64% USFS = 26% Private = 5% Other = 5% Ferruginous Hawk Common Poorwill Gray Flycatcher Gray Vireo Pinyon Jay Virginia s Warbler Green-tailed Towhee Black-chinned Sparrow (Northern Goshawk) (Golden Eagle) (White-throated Swift) Juniper Titmouse Black-throated Gray Warbler Changes in fire intensity / frequency Insect outbreaks Livestock grazing Climate change (changes in precipitation) Urban, suburban, and industrial development Motorized recreation Invasive weeds 75 years White Pine, Lincoln, Lander, Clark, and northern Nye counties Carson Range D.E.M. Bird and Wildlife Sanctuary Goshute Mountains Great Basin National Park Jarbidge Mountains Monitor Valley Mount Grant Northern Snake Range Ruby Mountains Spring Mountains Toiyabe Range Wellington-Pine Grove Hills Hab-16-1

Hab-16-2

Overview Pinyon pine and juniper woodlands currently cover 12% of Nevada, approximately 3.5 million ha [9.1 million ac], accounting for an estimated 15% of their range-wide distribution (Mitchell and Roberts 1999). Nevada contains several juniper species, but Utah juniper (Juniperus osteosperma) is predominant. Of the two species of pinyon pines found within the Great Basin, only the single-leaf pinyon (Pinus monophylla) is known to occur in Nevada (Charlet 1996). Over the past 150 years, pinyon-juniper woodlands throughout the West and in Nevada have expanded into other habitat types and increased in density (Miller et al. 1995, Bauer and Weisberg 2009). The reasons for this range expansion and stand infill are speculated to include altered fire regimes, grazing, natural range expansion, recovery from past impacts, and a changing climate (Romme et al. 2009). Regardless of underlying mechanisms, which are undoubtedly complex, the changes in pinyon-juniper woodlands cause two main concerns to the wildlife manager: 1) the conversion of other high-priority habitat types (e.g., sagebrush) into woodlands, and 2) impacts of increasingly dense stand conditions on pinyon-juniper associated wildlife species, and its possible role in increasing the risk of large-scale destructive fires. Ironically, despite the increased amount of Pinyon-Juniper habitat on the landscape, species such as Pinyon Jay, Western Scrub-Jay, and Mountain Chickadee are undergoing steep and significant population declines in the pinyon-juniper biome (Sauer et al. 2008). As non-migratory seedeaters, these species represent a suite of birds that rely almost exclusively on pinyon-juniper woodlands. Therefore, significant bird conservation concerns exist not only for habitat types that are being encroached upon by pinyon-juniper, but for Pinyon-Juniper habitat itself. From a bird conservation perspective, the ideal pinyon-juniper woodland has a mostly open canopy with a significant shrub understory (Fig. Hab-16-1). Based on Nevada Bird Count data, the Priority bird species associated with pinyon-juniper woodland are more abundant in these types of stands than in predominantly closed-canopy stands. Small groves of high-density trees interspersed in the woodland landscape are tolerated, and may in fact be beneficial for some species or for a subset of life history requirements. More generally, trees of diverse ages should be present within large pinyon-juniper landscapes, with at least some mature, seed-bearing trees (Gillihan 2006). The preferred open canopy structure is most often observed in two situations; 1) old-growth stands on rocky ridges and ravines, and 2) early-mid successional woodland stages that typify the pinyon-juniper expansion zones. Currently, pinyon-juniper management typically focuses on removal of trees in so-called Phase I and II stands, which equate to the early and mid-successional encroachment sites that appear to be most valuable to birds (Miller et al. 2008). The goal of these treatments is often to reclaim sagebrush habitat, but the result of these treatments is often the removal of perhaps the most biologically valuable part of the pinyon-juniper woodland. Phase III stands (late-successional stands with high canopy closure), which are bird-poor and which have the potential to carry fire over long distances, are rarely targeted for tree removal projects because they are less accessible and are not perceived to be a threat to sagebrush. It is our recommendation that the processes that promote woodland infill, the ecology of pinyon-juniper expansion, and the inter-relationship of these factors with fire regimes and fire risk need to be carefully evaluated in order to determine the most beneficial management actions within the pinyon-juniper / sagebrush interface zone. Hab-16-3

Minimally, pinyon-juniper projects seeking to reclaim sagebrush habitat should try to avoid creating sharp habitat edges between reclaimed shrubland and dense, closed-canopy woodland Main Concerns and Challenges The following top seven conservation concerns were identified in our planning sessions for Pinyon-Juniper habitat in Nevada: Changes in fire regimes and intensity Insect outbreaks Livestock, wild horse and burro grazing Change in precipitation and snowmelt related to climate change Urban, suburban, and industrial development Motorized recreation Invasive weeds In the near term, the main challenge associated with managing pinyon-juniper woodlands is that there are different perceptions within the resource management community about the nature of current pinyon-juniper dynamics, different interpretations of desirable condition, and different priorities regarding the most pressing issues to address. Pinyon-Juniper woodland distribution is inherently unstable, given the evolution of dispersal mechanisms (seed caching by birds and rodents) that result in variable local colonization events. The differing opinions about how to best intercede in this system to facilitate beneficial wildlife outcomes and manage fire risk reflect the complexity of the interrelated mechanisms that determine woodland distribution and structure. Interestingly, research on past and current fire regimes shows mixed results, and the notion that low-intensity, frequent fires maintained pinyon-juniper woodlands historically is not necessarily supported (Baker and Shinneman 2004). Instead, fires in pinyon-juniper woodlands were likely severe, with long average return intervals of > 400 years (Baker and Shinneman 2004, Bauer and Weisberg 2009). Therefore, fire exclusion, which is often cited as a factor in pinyon-juniper expansion, likely occurred primarily in adjacent shrublands rather than in woodlands (Bauer and Weisberg 2009). Most of the other conservation concerns tend to be fairly localized in scope and modest in severity. The impacts of climate change, in contrast, are difficult to predict and could be systemic. Growth of pinyon pines decreases with decreased winter/spring precipitation and increased June temperatures, and their regeneration may be threatened by increasingly long droughts (Barger et al. 2009). Prolonged droughts are also considered a significant contributor to insect outbreaks that can kill large stands of trees (Breshears et al. 2005). Hab-16-4

Figure Hab-16-1: Idealized pinyon-juniper woodland landscape to maximize the number of pinyon-juniper associated Priority bird species. Hab-16-5

Habitat Strategies Conservation Strategies Manage at landscape scale (> 1,400 ha [3,500 ac]) with the goal of maintaining predominantly open woodlands with xeric shrub understory, including flowering shrubs and forbs, and a variety of tree ages, including cone-bearing trees. Multiple overstory species (pinyon pine, juniper spp., mountain mahogany), and high plant species richness in the understory, where environmental conditions exist to support them, are particularly desirable for Priority bird species Proximity to water (riparian areas, springs, wet meadows), presence of cliffs > 30 m [100 ft]) tall, or abandoned mines (which may be gated) raise the priority level of a site for bird conservation When implementing pinyon-juniper control measures, creation of sharp woodland edges should be avoided. Instead, feathering of the woodland / shrubland edge preferred, with the goal of creating a varied transition zones is recommended. Treatments that generate patchiness within dense extensive stands would likely benefit most Priority species Maintain grazing and OHV use at levels that do not permanently impact the shrub and forb understory or cause soils to be unnaturally exposed The majority of priority bird species nest between May 1 and July 15, and some of them are particularly sensitive to nest disturbance. This is the time period when disturbances should be avoided whenever possible In the southern regions of Nevada (primarily Clark, Lincoln, and Nye counties), protect old-growth stands on rocky ridges and ravines, and at the interface with Joshua Tree woodlands from impacts to habitat integrity in order to preserve Gray Vireo and Black-chinned Sparrow strongholds. Research, Planning, and Monitoring Strategies Encourage experimental treatments of mid-elevation pinyon-juniper that is overgrown to determine whether open woodlands with sufficient shrub understory can be restored in the interior of woodlands, away from the pinyon-sagebrush edge Monitor effects of pinyon-juniper treatments for effectiveness and bird responses, and monitor habitat variables important to Priority species Continue long-term monitoring of landbirds statewide through the Nevada Bird Count Public Outreach Strategies Promote public appreciation of healthy pinyon-juniper woodlands, their bird community, aesthetics of trees, sustainable pine nut harvest, importance of native understory vegetation, and threats from off-road vehicle recreation and weed invasion. Hab-16-6