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TZUNTIL:20260329T010000Z
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DTSTART:20231029T030000
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RDATE:20241027T030000
RDATE:20251026T030000
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DTSTAMP:20260804T131729Z
DESCRIPTION:Global environmental change is shifting the distribution and ab
 undances of species globally\, though the ecosystem consequences of such c
 hanges are poorly understood. Here\, I present a framework that seeks to u
 nify the heterogeneity of plant-microbe-soil interactions in forests\, as 
 a means for predicting the impacts of community change. The Mycorrhizal-As
 sociated Nutrient Economy (MANE) hypothesis predicts that species that ass
 ociate with different types of mycorrhizal fungi possess an integrated sui
 te of nutrient-use traits that lead to the maintenance of biogeochemical s
 yndromes in forests.\nTo test MANE\, we combine observations\, experiments
 \, syntheses and modeling in forest stands across the US\, and examine the
  effects of trait variation and community composition on ecosystem process
 es. We have found support for MANE in many (but not all) temperate forests
  in the United States. Moreover\, we find that MANE dynamics can be detect
 ed by remote sensing and incorporated into large-scale models\, facilitati
 ng the MANE framework as a tool for predicting forest response to global c
 hange. Collectively\, our results suggest that shifts in the relative abun
 dance of AM and ECM trees will likely have profound implications for how f
 orests function and the services that they provide.
DTSTART;TZID=Europe/Berlin:20240613T121500
DTEND;TZID=Europe/Berlin:20240613T134500
LOCATION:H6\, Geo
SUMMARY:Prof. Dr. Richard Phillips\, Department of Biology\, Indiana Univer
 sity (Homepage): Seeing the forest beneath the trees: Mycorrhizal fungi as
  trait integrators of ecosystem processes
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