Primary Convener: Caitlin Hicks Pries, Dartmouth College, Department of Biological Sciences, Hanover, NH, United States
Convener: Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States
Primary Liaison: Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States
Chairs: Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States and Richard P Phillips, Indiana University, Department of Biology, Bloomington, IN, United States
OSPA Liaison: Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States
10:00
Effects of Root Exudation on Soil Carbon Formation and Loss: Insights from Artificial Root-Soil Systems (671874)
Bonnie Grace Waring, Imperial College London, London, SW7, United Kingdom, Guopeng Liang, Utah State University, Logan, UT, United States and John M Stark, Utah State University, Department of Biology, and the Ecology Center, Logan, UT, United States
10:08
Mycorrhizal associations influence soil nitrogen dynamics via effects on soil acid-base chemistry and N cycling microbial communities (696842)
Richard P Phillips1, Matthew Craig1,2, Guigang Lin3, Ryan M Mushinski4,5, Xugao Wang6, De-Hui Zeng6 and Jonathan D. Raff7, (1)Indiana University Bloomington, Department of Biology, Bloomington, IN, United States, (2)Oak Ridge National Laboratory, Environmental Sciences Division and Climate Change Science Institute, Oak Ridge, TN, United States, (3)Institute of Applied Ecology, Chinese Academy of Sciences, Key Laboratory of Forest Ecology and Management, Shenyang, China, (4)Indiana University, Department of Biology, Bloomington, IN, United States, (5)University of Warwick, Coventry, United Kingdom, (6)CAS Chinese Academy of Sciences, Key Laboratory of Forest Ecology and Management, Institute of Applied Ecology, Shenyang, China, (7)Indiana University, O'Neill School of Public and Environmental Affairs, Bloomington, IN, United States
10:24
Soil Organic Matter Fractions Reflect the Mycorrhizal Associations and Foliar Chemistry of Dominant Tree Species in a Northern Temperate Forest (708252)
Ashley Lang, Indiana University Bloomington, Biology, Bloomington, IN, United States, Amelia Fitch, Dartmouth College, Department of Biological Sciences, Hanover, NH, United States, Fiona Jevon, Yale University, School of Forestry and Environmental Studies, New Haven, CT, United States, Jaclyn Matthes, Wellesley College, Wellesley, MA, United States, Matt Ayres, Dartmouth College, Hanover, NH, United States and Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States
10:28
Fungal community, not substrate quality, drives soil microbial function in Northeast temperate forests (767414)
Amelia Fitch, Dartmouth College, Department of Biological Sciences, Hanover, NH, United States, Ashley Lang, Dartmouth College, Graduate Program in Ecology, Evolution, Environment and Society, Hanover, NH, United States, Emily Whalen, University of New Hampshire Main Campus, Durham, United States, Kevin Geyer, Young Harris College, Department of Biology, Young Harris, GA, United States and Caitlin Hicks Pries, Dartmouth College Life Sciences Center, room 349 78, Hanover, NH, United States
10:32
Initial Wood Substrate Composition, more so than Fungal or Oomycete Endophyte Communities, Explain Decay Trajectories Across Woody Species (769654)
Marissa R Lee, North Carolina State University Raleigh, Raleigh, NC, United States, Amy Zanne, The George Washington University, Washington, DC, United States, Will Cornwell, University of New South Wales, Sydney, Australia, Jeff Powell, University of Western Sydney, Penrith, Australia, Jessica Rigg, Elizabeth Macarthur Agricultural Institute, NSW Department of Primary Industries, Meanagle, Australia, Kylie Brice, University of Western Sydney, Hawkesbury, Australia, Brad Oberle, New College of Florida, Sarasota, FL, United States and Shawn D Mansfield, University of British Columbia, Vancouver, Canada
10:40
Microbial respiration and temperature effects shape the in situ belowground CO2 efflux of the root-soil microbiome of 8 temperate hardwood tree species. (773182)
James Aaron Hogan1, Jessy L. Labbe2, Jennifer Franklin3, Kevin P. Hoyt4, Oscar J. Valverde-Barrantes5, Chris Baraloto1 and Jeff Warren6, (1)Florida International University, Department of Biological Sciences, Miami, FL, United States, (2)Oak Ridge National Lab, Bioscience Division, Oak Ridge, TN, United States, (3)University of Tennessee, Department of Forestry, Wildlife & Fisheries, Knoxville, TN, United States, (4)UT Forest Resources AgResearch and Education Center, Oak Ridge, United States, (5)Florida International University, Department of Biological Sciences, Miami, United States, (6)Oak Ridge National Laboratory, Environmental Sciences Division and Climate Change Science Institute, Oak Ridge, TN, United States
10:48
Soil microbial activity is resistant to recreational camping disturbance in a Prosopis dominated semiarid savanna (666861)
Sudan Kariuki1, Rachel E Gallery2,3, Jed P Sparks1, Mitchel P McClaran2 and Randy Gimblett2, (1)Cornell University, Ecology and Evolutionary Biology, Ithaca, NY, United States, (2)University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States, (3)University of Arizona, Ecology and Evolutionary Biology, Tucson, AZ, United States