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Journal of the International Association of Wildland Fire
RESEARCH ARTICLE

The effects of seeding sterile triticale on a native plant community after wildfire in a pinyon pine–mountain mahogany woodland

Benjamin A. Waitman A , Trent M. Draper A and Todd C. Esque A B
+ Author Affiliations
- Author Affiliations

A US Geological Survey, Western Ecological Research Center, Las Vegas Field Station, 160 N Stephanie Street, Henderson, NV 89074, USA.

B Corresponding author. Email: todd_esque@usgs.gov

International Journal of Wildland Fire 18(6) 659-664 https://doi.org/10.1071/WF07157
Submitted: 19 October 2007  Accepted: 16 December 2008   Published: 22 September 2009

Abstract

Post-fire seeding with grasses is a common practice for emergency rehabilitation of burned woodlands. However, most post-seeding monitoring does not address consequences to native flora. In November 2004, the US Forest Service hand-seeded triticale (×Triticosecale Wittm. ex A. Camus), a sterile wheat–rye hybrid, on a small burned area in the Spring Mountains of southern Nevada, United States. A monitoring project using paired plots was designed to quantify the effects of seeding triticale on density and species richness of native annual and perennial plants, cover of perennial plants, and aboveground production of annual plants. We did not find any effects of triticale seeding on annual plant species or most responses of perennial plants. However, the density of woody perennial seedlings was significantly lower 2 years after triticale was added. Although we found a smaller impact from seeding with exotic grass than other studies, quantifiable costs to native vegetation were observed. We caution against the use of non-native grass for seeding in areas with naturally low perennial recruitment.

Additional keywords: Cercocarpus ledifolius var. intermontanus, mitigation measures, Pinus monophyla, rehabilitation, Spring Mountains National Recreational Area, Triticosecale.


Acknowledgements

This work was funded by the US Fish and Wildlife Service, and the research was accomplished in collaboration with the USFS, Humboldt–Toiyabe National Forest, and Spring Mountains National Recreation Area. We thank J. Hurja and the local firefighters who conducted the hand-seeding. For assistance with plot establishment, we thank J. Spencer, J. Lissow, G. Reese, B. Cunningham, and K. Nolte. M. Garnett, J. Yee, K. Phillips, J. Keeley, and two anonymous reviewers provided many helpful comments on an earlier draft of this manuscript. Any use of trade, product or firm names in this publication is for descriptive purposes only and does not imply endorsement by the US government.


References


Barclay AD, Betancourt JL , Allen CD (2004) Effects of seeding ryegrass (Lolium multiflorum) on vegetation recovery following fire in a ponderosa pine (Pinus ponderosa) forest. International Journal of Wildland Fire  13, 183–194.
Crossref | GoogleScholarGoogle Scholar | Beyers JL, Wakeman CD, Wohlgemuth PM, Conard SG (1998) Effects of post-fire grass seeding on native vegetation in southern California chaparral. In ‘Proceedings 19th Annual Forest Vegetation Management Conference: Wildfire Rehabilitation’, 20–22 January 1998, Redding, CA, USA. pp. 52–64. (US Forest Service: Sacramento, CA)

Box GE , Cox DR (1964) An analysis of transformations. Journal of the Royal Statistical Society. Series B. Methodological  26, 211–243.
Conard SG, Beyers JL, Wohlgemuth PM (1995) Impacts of post-fire grass seeding on chaparral systems: what do we know and where do we go from here? In ‘Brushfires in California Wildlands: Ecology and Resource Management’. (Eds JE Keeley, T Scott) pp. 149–161. (International Association of Wildland Fire: Fairfield, WA)

Davis SD, Ewers FW, Sperry JS, Portwood KA, Crocker MC , Adams GC (2002) Shoot dieback during prolonged drought in Ceanothus (Rhamnaceae) chaparral of California: a possible case of hydraulic failure. American Journal of Botany  89, 820–828.
Crossref | GoogleScholarGoogle Scholar | Elzinga CL, Salzer DW, Willoughby JW (1998) Measuring and monitoring plant populations. Bureau of Land Management Technical Reference 1730–1, BLM/RS/ST-98/005+1730. (Denver, CO)

Fowler N (1986) The role of competition in plant communities in arid and semiarid regions. Annual Review of Ecology and Systematics  17, 89–110.
Crossref | GoogleScholarGoogle Scholar | Nadkarni NM, Odion DC (1986) Effects of seeding an exotic grass Lolium multiflorum on native seedling regeneration following fire in a chaparral community. In ‘Proceedings of the Chaparral Ecosystems Research Conference’, 16–17 May 1985, Santa Barbara, CA, USA. (Ed. JJ DeVries) pp. 115–121. (Water Resources Center: Davis, CA)

Noy-Meir I (1973) Desert ecosystems: environment and producers. Annual Review of Ecology and Systematics  4, 25–51.
Crossref | GoogleScholarGoogle Scholar | Pase CP, Brown DE (1982) Interior chaparral. In ‘Biotic Communities of South-western United States and North-western Mexico’. (Ed. DE Brown) Desert Plants, Vol 4, pp. 95–99. (The University of Arizona for Boyce Thompson Southwestern Arboretum: Tucson, AZ)

R Development Core Team (2007) ‘A Language and Environment for Statistical Computing.’ (R Foundation for Statistical Computing: Vienna, Austria) Available at http://www.R-project.org [Verified 1 August 2009]

Reid KD, Wilcox PW, Breshears DD , Macdonald L (1999) Runoff and erosion in a pinyon–juniper woodland. Soil Science Society of America Journal  63, 1869–1879.

CAS | Robichaud PR, Beyers JL, Neary DG (2000) Evaluating the effectiveness of post-fire rehabilitation treatments. USDA Forest Service, Rocky Mountain Research Station, General Technical Report RMRS-GTR-63. (Fort Collins, CO)

Schultz AM, Launchbaugh JL , Biswell HH (1955) Relationship between grass density and brush seedling survival. Ecology  36, 226–238.
Crossref | GoogleScholarGoogle Scholar | Zar JH (1984) ‘Biostatistical Analysis.’ 2nd edn. (Prentice-Hall, Inc: Englewood Cliffs, NJ)