Matthew J Germino
I am a Supervisory Research Ecologist at the Forest and Rangeland Ecosystem Science Center in Boise, Idaho
I am interested in plant-soil-environment relationships, with a focus on forest and rangelands; post-fire rehabilitation and restoration, invasive species, integrating science and adaptive land management.
Professional Experience
2011 - Present: USGS, Forest and Rangeland Ecosystem Science Center, Supervisory Research Ecologist, Boise, Idaho
Education and Certifications
Ph.D., Botany, University of Wyoming. Laramie, WY (2000)
M.S., Botany, University of Wyoming, Laramie, WY (1996)
B.S., Environmental Science, University of Massachusetts, Amherst, MA (1994)
Science and Products
FIREss: Fire, Invasives, and Rehabilitation of Shrub-Steppe Rangelands
If you are unable to access or download a product, email fresc_outreach@usgs.gov a request, including the full citation, or call (541) 750-1030.
If you are unable to access or download a product, email fresc_outreach@usgs.gov a request, including the full citation, or call (541) 750-1030.
Spatial models can improve the experimental design of field-based transplant gardens by preventing bias due to neighborhood crowding Spatial models can improve the experimental design of field-based transplant gardens by preventing bias due to neighborhood crowding
Plant community trajectories following livestock exclusion for conservation vary and hinge on initial invasion and soil-biocrust conditions in shrub steppe Plant community trajectories following livestock exclusion for conservation vary and hinge on initial invasion and soil-biocrust conditions in shrub steppe
Post-fire seed dispersal of a wind-dispersed shrub declined with distance to seed source, yet had high levels of unexplained variation Post-fire seed dispersal of a wind-dispersed shrub declined with distance to seed source, yet had high levels of unexplained variation
Modeling of fire spread in sagebrush steppe using FARSITE: An approach to improving input data and simulation accuracy Modeling of fire spread in sagebrush steppe using FARSITE: An approach to improving input data and simulation accuracy
The effects of cheatgrass invasion on US Great Basin carbon storage depend on interactions between plant community composition, precipitation seasonality, and soil climate regime The effects of cheatgrass invasion on US Great Basin carbon storage depend on interactions between plant community composition, precipitation seasonality, and soil climate regime
Intra-site sources of restoration variability in severely invaded rangeland: Strong temporal effects of herbicide-weather interactions; weak spatial effects of plant-community patch type and litter Intra-site sources of restoration variability in severely invaded rangeland: Strong temporal effects of herbicide-weather interactions; weak spatial effects of plant-community patch type and litter
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.
To request an interview, contact fresc_outreach@usgs.gov or call (541) 750-1030.
Science and Products
FIREss: Fire, Invasives, and Rehabilitation of Shrub-Steppe Rangelands
If you are unable to access or download a product, email fresc_outreach@usgs.gov a request, including the full citation, or call (541) 750-1030.
If you are unable to access or download a product, email fresc_outreach@usgs.gov a request, including the full citation, or call (541) 750-1030.
Spatial models can improve the experimental design of field-based transplant gardens by preventing bias due to neighborhood crowding Spatial models can improve the experimental design of field-based transplant gardens by preventing bias due to neighborhood crowding
Plant community trajectories following livestock exclusion for conservation vary and hinge on initial invasion and soil-biocrust conditions in shrub steppe Plant community trajectories following livestock exclusion for conservation vary and hinge on initial invasion and soil-biocrust conditions in shrub steppe
Post-fire seed dispersal of a wind-dispersed shrub declined with distance to seed source, yet had high levels of unexplained variation Post-fire seed dispersal of a wind-dispersed shrub declined with distance to seed source, yet had high levels of unexplained variation
Modeling of fire spread in sagebrush steppe using FARSITE: An approach to improving input data and simulation accuracy Modeling of fire spread in sagebrush steppe using FARSITE: An approach to improving input data and simulation accuracy
The effects of cheatgrass invasion on US Great Basin carbon storage depend on interactions between plant community composition, precipitation seasonality, and soil climate regime The effects of cheatgrass invasion on US Great Basin carbon storage depend on interactions between plant community composition, precipitation seasonality, and soil climate regime
Intra-site sources of restoration variability in severely invaded rangeland: Strong temporal effects of herbicide-weather interactions; weak spatial effects of plant-community patch type and litter Intra-site sources of restoration variability in severely invaded rangeland: Strong temporal effects of herbicide-weather interactions; weak spatial effects of plant-community patch type and litter
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.
To request an interview, contact fresc_outreach@usgs.gov or call (541) 750-1030.