Bromus tectorum L. dominates sites of large-scale disturbance, while Poa pratensis L. dominates the sites of small-scale disturbance in the Festuca/Symphoricarpos habitat type in eastern Washington (USA). The role of incident irradiation in influencing these distributions was examined using field and glasshouse experiments. Glasshouse grown swards of B. tectorum growing beneath an established canopy of P. pratensis displayed larger biomass and higher survival when exposed to supplemental light versus controls. Neither mean plant height nor the skewness in the individual biomass distribution were significantly different between the supplemental light and control plots. Maximum net photosynthesis for P. pratensis and B. tectorum was 11.5 and 14.87 mg CO·dm·h, respectively. For Poa, light utilization efficiency was greater, although light compensation point was lower than that exhibited by Bromus. These photosynthetic characteristics along with the seasonal pattern of light transmission through the meadow steppe canopy may largely account for the successful establishment of P. pratensis in small sites of disturbance with little light, while restricting the establishment of B. tectorum to patches with more irradiance.
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http://dx.doi.org/10.1007/BF00377187 | DOI Listing |
In much of the northern Great Basin of the western United States, rangelands, and semi-arid ecosystems invaded by exotic annual grasses such as cheatgrass () and medusahead () are experiencing an increasingly short fire cycle, which is compounding and persistent. Improving and expanding ground-based field methods for measuring the above-ground biomass (AGB) may enable more sample collections across a landscape and over succession regimes and better harmonize with other remote sensing techniques. Developments and increased adoption of unoccupied aerial systems (UAS) and instrumentation for vegetation monitoring enable greater understanding of vegetation in many ecosystems.
View Article and Find Full Text PDFFront Microbiol
December 2024
Department of Forestry and Rangeland Stewardship, Colorado State University, Fort Collins, CO, United States.
Land stewards in dryland ecosystems across the western U.S. face challenges to manage the exotic grass (cheatgrass), which is a poor forage, is difficult to remove, and increases risk of catastrophic fire.
View Article and Find Full Text PDFPlants (Basel)
November 2024
College of Grassland Science, Xinjiang Agricultural University, Urümqi 830052, China.
, a winter annual plant, produces dimorphic diaspores: complex diaspores with multi-awns and simple diaspores with one awn. However, there is no information available about the role of awns and the germination characteristics of dimorphic diaspores. Dispersal germination and awns hygroscopicity of the dimorphic diaspores were assessed.
View Article and Find Full Text PDFEcol Appl
December 2024
Fort Keogh Livestock and Range Research Laboratory, United States Department of Agriculture-Agricultural Research Service, Miles City, Montana, USA.
In arid and semiarid systems of western North America, the most damaging invasive plants are winter annuals. These plants are destroying wildlife habitat, reducing livestock production, and increasing wildfires. Monitoring these plants for lasting population changes is challenging because their abundances vary widely from year to year.
View Article and Find Full Text PDFbioRxiv
September 2024
Department of Biology, Pennsylvania State University; University Park, PA, USA.
Local adaptation may facilitate range expansion during invasions, but the mechanisms promoting destructive invasions remain unclear. Cheatgrass (), native to Eurasia and Africa, has invaded globally, with particularly severe impacts in western North America. We sequenced 307 genotypes and conducted controlled experiments.
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