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Animal Sciences

Brigham Young University

Germination

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Larson2023_Slow Release Of Ga3_Data, Alexandra J.S. Larson, Maureen Cartwright, Whitney D. Jones, Katrina Luce, Mei Chen, Kate Petersen, Shannon V. Nelson, David J. Michaelis, Matthew D. Madsen Oct 2023

Larson2023_Slow Release Of Ga3_Data, Alexandra J.S. Larson, Maureen Cartwright, Whitney D. Jones, Katrina Luce, Mei Chen, Kate Petersen, Shannon V. Nelson, David J. Michaelis, Matthew D. Madsen

ScholarsArchive Data

This file contains the data description for the Larson2023_Slow-release of GA3 Hormone… Supplementary File.

The excel file contains four worksheets: 1) Palmer’s germination, 2) Palmer’s biomass, 3) germination other species, 4) biomass other species. Blank cells indicate either no coating was used or there was no plant.

1) “Palmer’s germination” and “germination other species” A) Temp (o C): germination chamber temperature setting B) Species: common name of penstemon species tested (“germination other species” only) C) Treatment: seed coating treatment D) Final Germination percentage: percent of seed that germinated. E) FGP: final germination percent in decimal form F) Time to 50% …


Secondary Dormancy And Summer Conditions Influence Outcomes In The Pyrenophora Semeniperda - Bromus Tectorum Pathosystem, Katie Karen Hawkins Jul 2014

Secondary Dormancy And Summer Conditions Influence Outcomes In The Pyrenophora Semeniperda - Bromus Tectorum Pathosystem, Katie Karen Hawkins

Theses and Dissertations

Variable mortality of Pyrenophora semeniperda–infected Bromus tectorum seeds has been referred to as a “race for survival.” Dormant seeds are highly susceptible to P. semeniperda infection. While much is known about primary dormancy little is known about secondary dormancy in B. tectorum seeds. Dormancy status is not the only variable determining outcomes within the Bromus - Pyrenophora pathosystem. Varying temperature and intermittent hydration may strongly influence germination outcomes of B. tectorum in the presence of P. semeniperda. While it has long been assumed that B. tectorum seeds are infected by P. semeniperda in the fall it was recently suggested that …


Wet-Thermal Time And Plant Available Water In The Seedbeds And Root Zones Across The Sagebrush Steppe Ecosystem Of The Great Basin, Nathan Lyle Cline Mar 2014

Wet-Thermal Time And Plant Available Water In The Seedbeds And Root Zones Across The Sagebrush Steppe Ecosystem Of The Great Basin, Nathan Lyle Cline

Theses and Dissertations

Following wildfires, plant materials are direct-seeded to limit erosion and annual weed invasion. Seedlings often fail to establish because selected plant materials are not always well adapted to local soil moisture and temperature conditions. In an effort to help improve plant materials selection and to evaluate sites potential revegetation, we have worked toward developing methodology to predict germination and root growth based on site specific soil moisture and temperature conditions. First, we characterized the seedbed environment of 24 sagebrush (Artemisia spp.) steppe sites throughout the Intermountain West to determine the wet-thermal time of five temperature ranges relevant to germination …


The Bromus Tectorum-Pyrenophora Semeniperda Pathosystem, Heather Finch Jun 2013

The Bromus Tectorum-Pyrenophora Semeniperda Pathosystem, Heather Finch

Theses and Dissertations

Variable mortality of Pyrenophora semeniperda--infected Bromus tectorum seeds has been referred to as a "race for survival", stating that seeds that germinate quickly are more likely to escape pathogen-caused mortality. Dormancy status is not the only variable determining outcomes within the Bromus-Pyrenophora pathosystem. Varying temperature and exposure to water may strongly influence germination outcomes of B. tectorum when in the presence of P. semeniperda. Low water potentials characteristic of semi-arid soils are often over-looked in the context of seed pathogens, and are ecologically relevant- especially for plant species that inhabit intermittently dry environments. To adequately characterize the Bromus tectorum-Pyrenophora semeniperda …


Plant-Soil Feedbacks And Subalpine Fir Facilitation In Aspen-Conifer Forests, Joshua R. Buck Mar 2012

Plant-Soil Feedbacks And Subalpine Fir Facilitation In Aspen-Conifer Forests, Joshua R. Buck

Theses and Dissertations

This thesis includes two studies. The first study examined changes in soil characteristics as a result of prolonged conifer dominance in successional aspen-conifer forests. Changing disturbance patterns in aspen-conifer forests appear to be altering successional dynamics that favors conifer expansion in aspen forests. The primary objective of this paper was to identify how increasing conifer dominance that develops in later successional stages alters forest soil characteristics. Soil measurements were collected along a stand composition gradient: aspen dominated, aspen-conifer mix, conifer dominated and open meadow, which includes the range of conditions that exists through the stages of secondary succession in aspen-conifer …


Beneficial Fungal Interactions Resulting In Accelerated Germination Of Astragalus Utahensis, A Hard-Seeded Legume, Sean D. Eldredge Dec 2007

Beneficial Fungal Interactions Resulting In Accelerated Germination Of Astragalus Utahensis, A Hard-Seeded Legume, Sean D. Eldredge

Theses and Dissertations

Seed germination is pivotal in the life cycle of native plants in a restorative context because initiation of the metabolic processes critical to establishment is key to survival in such a competitive environment. Dormancy characteristics of some native plants including the subject species, Astragalus utahensis, have evolved mechanisms to control germination in order to maintain a seed bank and ensure germination at the right time under optimal conditions. In vitro germination studies confirm beneficial interactions between Alternaria and Aspergillus fungi and Astragalus utahensis seed. Inoculated seed trials (1.0 x 106 spores/mL) exhibited a highly significant difference in percent germination between …