BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world
The proposed Biology Integration Institute will bring together two major research institutions in the Upper Midwest—the University of Minnesota (UMN) and University of Wisconsin-Madison (UW)—to investigate the causes and consequences of plant biodiversity across scales in a rapidly changing world—fr...
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Pensoft Publishers
2021-02-01
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Series: | Research Ideas and Outcomes |
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Online Access: | https://riojournal.com/article/63850/download/pdf/ |
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doaj-400540457cf4457ea3017fb2b540b808 |
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record_format |
Article |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jeannine Cavender-Bares Peter Reich Philip Townsend Arindam Banerjee Ethan Butler Ankur Desai Amanda Gevens Sarah Hobbie Forest Isbell Etienne Laliberté José Eduardo Meireles Holly Menninger Ryan Pavlick Jesús Pinto-Ledezma Caitlin Potter Meredith Schuman Nathan Springer Artur Stefanski Pankaj Trivedi Amy Trowbridge Laura Williams Charles Willis Ya Yang |
spellingShingle |
Jeannine Cavender-Bares Peter Reich Philip Townsend Arindam Banerjee Ethan Butler Ankur Desai Amanda Gevens Sarah Hobbie Forest Isbell Etienne Laliberté José Eduardo Meireles Holly Menninger Ryan Pavlick Jesús Pinto-Ledezma Caitlin Potter Meredith Schuman Nathan Springer Artur Stefanski Pankaj Trivedi Amy Trowbridge Laura Williams Charles Willis Ya Yang BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world Research Ideas and Outcomes biodiversity biological scale global change pla |
author_facet |
Jeannine Cavender-Bares Peter Reich Philip Townsend Arindam Banerjee Ethan Butler Ankur Desai Amanda Gevens Sarah Hobbie Forest Isbell Etienne Laliberté José Eduardo Meireles Holly Menninger Ryan Pavlick Jesús Pinto-Ledezma Caitlin Potter Meredith Schuman Nathan Springer Artur Stefanski Pankaj Trivedi Amy Trowbridge Laura Williams Charles Willis Ya Yang |
author_sort |
Jeannine Cavender-Bares |
title |
BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world |
title_short |
BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world |
title_full |
BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world |
title_fullStr |
BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world |
title_full_unstemmed |
BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world |
title_sort |
bii-implementation: the causes and consequences of plant biodiversity across scales in a rapidly changing world |
publisher |
Pensoft Publishers |
series |
Research Ideas and Outcomes |
issn |
2367-7163 |
publishDate |
2021-02-01 |
description |
The proposed Biology Integration Institute will bring together two major research institutions in the Upper Midwest—the University of Minnesota (UMN) and University of Wisconsin-Madison (UW)—to investigate the causes and consequences of plant biodiversity across scales in a rapidly changing world—from genes and molecules within cells and tissues to communities, ecosystems, landscapes and the biosphere. The Institute focuses on plant biodiversity, defined broadly to encompass the heterogeneity within life that occurs from the smallest to the largest biological scales. A premise of the Institute is that life is envisioned as occurring at different scales nested within several contrasting conceptions of biological hierarchies, defined by the separate but related fields of physiology, evolutionary biology and ecology. The Institute will emphasize the use of ‘spectral biology’—detection of biological properties based on the interaction of light energy with matter—and process-oriented predictive models to investigate the processes by which biological components at one scale give rise to emergent properties at higher scales. Through an iterative process that harnesses cutting edge technologies to observe a suite of carefully designed empirical systems—including the National Ecological Observatory Network (NEON) and some of the world’s longest running and state-of-the-art global change experiments—the Institute will advance biological understanding and theory of the causes and consequences of changes in biodiversity and at the interface of plant physiology, ecology and evolution.INTELLECTUAL MERITThe Institute brings together a diverse, gender-balanced and highly productive team with significant leadership experience that spans biological disciplines and career stages and is poised to integrate biology in new ways. Together, the team will harness the potential of spectral biology, experiments, observations and synthetic modeling in a manner never before possible to transform understanding of how variation within and among biological scales drives plant and ecosystem responses to global change over diurnal, seasonal and millennial time scales. In doing so, it will use and advance state-of-the-art theory. The institute team posits that the designed projects will unearth transformative understanding and biological rules at each of the various scales that will enable an unprecedented capacity to discern the linkages between physiological, ecological and evolutionary processes in relation to the multi-dimensional nature of biodiversity in this time of massive planetary change. A strength of the proposed Institute is that it leverages prior federal investments in research and formalizes partnerships with foreign institutions heavily invested in related biodiversity research. Most of the planned projects leverage existing research initiatives, infrastructure, working groups, experiments, training programs, and public outreach infrastructure, all of which are already highly synergistic and collaborative, and will bring together members of the overall research and training team.BROADER IMPACTSA central goal of the proposed Institute is to train the next generation of diverse integrative biologists. Post-doctoral, graduate student and undergraduate trainees, recruited from non-traditional and underrepresented groups, including through formal engagement with Native American communities, will receive a range of mentoring and training opportunities. Annual summer training workshops will be offered at UMN and UW as well as training experiences with the Global Change and Biodiversity Research Priority Program (URPP-GCB) at the University of Zurich (UZH) and through the Canadian Airborne Biodiversity Observatory (CABO). The Institute will engage diverse K-12 audiences, the general public and Native American communities through Market Science modules, Minute Earth videos, a museum exhibit and public engagement and educational activities through the Bell Museum of Natural History, the Cedar Creek Ecosystem Science Reserve (CCESR) and the Wisconsin Tribal Conservation Association. |
topic |
biodiversity biological scale global change pla |
url |
https://riojournal.com/article/63850/download/pdf/ |
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doaj-400540457cf4457ea3017fb2b540b8082021-09-28T14:28:59ZengPensoft PublishersResearch Ideas and Outcomes2367-71632021-02-01715310.3897/rio.7.e6385063850BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing worldJeannine Cavender-Bares0Peter Reich1Philip Townsend2Arindam Banerjee3Ethan Butler4Ankur Desai5Amanda Gevens6Sarah Hobbie7Forest Isbell8Etienne Laliberté9José Eduardo Meireles10Holly Menninger11Ryan Pavlick12Jesús Pinto-Ledezma13Caitlin Potter14Meredith Schuman15Nathan Springer16Artur Stefanski17Pankaj Trivedi18Amy Trowbridge19Laura Williams20Charles Willis21Ya Yang22University of MinnesotaUniversity of MinnesotaUniversity of WisconsinUniversity of Illinois Urbana-ChampaignUniversity of MinnesotaUniversity of WisconsinUniversity of WisconsinUniversity of MinnesotaUniversity of MinnesotaUniversité de Montréal and Jardin botanique de MontréalUniversity of MaineUniversity of MinnesotaJet Propulsion LaboratoryUniversity of MinnesotaUniversity of Minnesota and Cedar Creek Ecosystem Science ReserveUniversity of ZurichUniversity of MinnesotaUniversity of MinnesotaColorado State UniversityUniversity of WisconsinUniversity of MinnesotaUniversity of MinnesotaUniversity of MinnesotaThe proposed Biology Integration Institute will bring together two major research institutions in the Upper Midwest—the University of Minnesota (UMN) and University of Wisconsin-Madison (UW)—to investigate the causes and consequences of plant biodiversity across scales in a rapidly changing world—from genes and molecules within cells and tissues to communities, ecosystems, landscapes and the biosphere. The Institute focuses on plant biodiversity, defined broadly to encompass the heterogeneity within life that occurs from the smallest to the largest biological scales. A premise of the Institute is that life is envisioned as occurring at different scales nested within several contrasting conceptions of biological hierarchies, defined by the separate but related fields of physiology, evolutionary biology and ecology. The Institute will emphasize the use of ‘spectral biology’—detection of biological properties based on the interaction of light energy with matter—and process-oriented predictive models to investigate the processes by which biological components at one scale give rise to emergent properties at higher scales. Through an iterative process that harnesses cutting edge technologies to observe a suite of carefully designed empirical systems—including the National Ecological Observatory Network (NEON) and some of the world’s longest running and state-of-the-art global change experiments—the Institute will advance biological understanding and theory of the causes and consequences of changes in biodiversity and at the interface of plant physiology, ecology and evolution.INTELLECTUAL MERITThe Institute brings together a diverse, gender-balanced and highly productive team with significant leadership experience that spans biological disciplines and career stages and is poised to integrate biology in new ways. Together, the team will harness the potential of spectral biology, experiments, observations and synthetic modeling in a manner never before possible to transform understanding of how variation within and among biological scales drives plant and ecosystem responses to global change over diurnal, seasonal and millennial time scales. In doing so, it will use and advance state-of-the-art theory. The institute team posits that the designed projects will unearth transformative understanding and biological rules at each of the various scales that will enable an unprecedented capacity to discern the linkages between physiological, ecological and evolutionary processes in relation to the multi-dimensional nature of biodiversity in this time of massive planetary change. A strength of the proposed Institute is that it leverages prior federal investments in research and formalizes partnerships with foreign institutions heavily invested in related biodiversity research. Most of the planned projects leverage existing research initiatives, infrastructure, working groups, experiments, training programs, and public outreach infrastructure, all of which are already highly synergistic and collaborative, and will bring together members of the overall research and training team.BROADER IMPACTSA central goal of the proposed Institute is to train the next generation of diverse integrative biologists. Post-doctoral, graduate student and undergraduate trainees, recruited from non-traditional and underrepresented groups, including through formal engagement with Native American communities, will receive a range of mentoring and training opportunities. Annual summer training workshops will be offered at UMN and UW as well as training experiences with the Global Change and Biodiversity Research Priority Program (URPP-GCB) at the University of Zurich (UZH) and through the Canadian Airborne Biodiversity Observatory (CABO). The Institute will engage diverse K-12 audiences, the general public and Native American communities through Market Science modules, Minute Earth videos, a museum exhibit and public engagement and educational activities through the Bell Museum of Natural History, the Cedar Creek Ecosystem Science Reserve (CCESR) and the Wisconsin Tribal Conservation Association.https://riojournal.com/article/63850/download/pdf/biodiversitybiological scaleglobal changepla |