The Experts below are selected from a list of 297 Experts worldwide ranked by ideXlab platform

Karine Gagnon - One of the best experts on this subject based on the ideXlab platform.

  • Data from: Mimicry of emergent traits amplifies coastal restoration success
    2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Data from: Mimicry of emergent traits amplifies coastal restoration success. Nature Communications In this study, we experimentally tested how mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures can increase restoration success. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitated seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitated marsh grasses by reducing stem movement. This dataset contains data of Plant performance of the experimental plots, sediment movement data of seagrass plots, and stem movement data of the flume experiment.

  • Mimicry of emergent traits amplifies coastal restoration success.
    Nature communications, 2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Restoration is becoming a vital tool to counteract coastal ecosystem degradation. Modifying transPlant designs of habitat-forming organisms from dispersed to clumped can amplify coastal restoration yields as it generates self-facilitation from emergent traits, i.e. traits not expressed by individuals or small clones, but that emerge in clumped individuals or large clones. Here, we advance restoration science by mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitate seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitate marsh grasses by reducing stem movement. Mimicking key emergent traits may allow upscaling of restoration in many ecosystems that depend on self-facilitation for persistence, by constraining biological material requirements and implementation costs.

Ralph J.m. Temmink - One of the best experts on this subject based on the ideXlab platform.

  • Data from: Mimicry of emergent traits amplifies coastal restoration success
    2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Data from: Mimicry of emergent traits amplifies coastal restoration success. Nature Communications In this study, we experimentally tested how mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures can increase restoration success. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitated seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitated marsh grasses by reducing stem movement. This dataset contains data of Plant performance of the experimental plots, sediment movement data of seagrass plots, and stem movement data of the flume experiment.

  • Mimicry of emergent traits amplifies coastal restoration success.
    Nature communications, 2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Restoration is becoming a vital tool to counteract coastal ecosystem degradation. Modifying transPlant designs of habitat-forming organisms from dispersed to clumped can amplify coastal restoration yields as it generates self-facilitation from emergent traits, i.e. traits not expressed by individuals or small clones, but that emerge in clumped individuals or large clones. Here, we advance restoration science by mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitate seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitate marsh grasses by reducing stem movement. Mimicking key emergent traits may allow upscaling of restoration in many ecosystems that depend on self-facilitation for persistence, by constraining biological material requirements and implementation costs.

Nicole Esteban - One of the best experts on this subject based on the ideXlab platform.

  • Data from: Mimicry of emergent traits amplifies coastal restoration success
    2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Data from: Mimicry of emergent traits amplifies coastal restoration success. Nature Communications In this study, we experimentally tested how mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures can increase restoration success. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitated seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitated marsh grasses by reducing stem movement. This dataset contains data of Plant performance of the experimental plots, sediment movement data of seagrass plots, and stem movement data of the flume experiment.

  • Mimicry of emergent traits amplifies coastal restoration success.
    Nature communications, 2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Restoration is becoming a vital tool to counteract coastal ecosystem degradation. Modifying transPlant designs of habitat-forming organisms from dispersed to clumped can amplify coastal restoration yields as it generates self-facilitation from emergent traits, i.e. traits not expressed by individuals or small clones, but that emerge in clumped individuals or large clones. Here, we advance restoration science by mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitate seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitate marsh grasses by reducing stem movement. Mimicking key emergent traits may allow upscaling of restoration in many ecosystems that depend on self-facilitation for persistence, by constraining biological material requirements and implementation costs.

Christine Angelini - One of the best experts on this subject based on the ideXlab platform.

  • Data from: Mimicry of emergent traits amplifies coastal restoration success
    2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Data from: Mimicry of emergent traits amplifies coastal restoration success. Nature Communications In this study, we experimentally tested how mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures can increase restoration success. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitated seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitated marsh grasses by reducing stem movement. This dataset contains data of Plant performance of the experimental plots, sediment movement data of seagrass plots, and stem movement data of the flume experiment.

  • Mimicry of emergent traits amplifies coastal restoration success.
    Nature communications, 2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Restoration is becoming a vital tool to counteract coastal ecosystem degradation. Modifying transPlant designs of habitat-forming organisms from dispersed to clumped can amplify coastal restoration yields as it generates self-facilitation from emergent traits, i.e. traits not expressed by individuals or small clones, but that emerge in clumped individuals or large clones. Here, we advance restoration science by mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitate seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitate marsh grasses by reducing stem movement. Mimicking key emergent traits may allow upscaling of restoration in many ecosystems that depend on self-facilitation for persistence, by constraining biological material requirements and implementation costs.

Sabine M. Engel - One of the best experts on this subject based on the ideXlab platform.

  • Data from: Mimicry of emergent traits amplifies coastal restoration success
    2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Data from: Mimicry of emergent traits amplifies coastal restoration success. Nature Communications In this study, we experimentally tested how mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures can increase restoration success. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitated seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitated marsh grasses by reducing stem movement. This dataset contains data of Plant performance of the experimental plots, sediment movement data of seagrass plots, and stem movement data of the flume experiment.

  • Mimicry of emergent traits amplifies coastal restoration success.
    Nature communications, 2020
    Co-Authors: Ralph J.m. Temmink, Marjolijn J. A. Christianen, Gregory S. Fivash, Christine Angelini, Christoffer Boström, K. Didderen, Sabine M. Engel, Nicole Esteban, Jeffrey Gaeckle, Karine Gagnon
    Abstract:

    Restoration is becoming a vital tool to counteract coastal ecosystem degradation. Modifying transPlant designs of habitat-forming organisms from dispersed to clumped can amplify coastal restoration yields as it generates self-facilitation from emergent traits, i.e. traits not expressed by individuals or small clones, but that emerge in clumped individuals or large clones. Here, we advance restoration science by mimicking key emergent traits that locally suppress physical stress using biodegradable establishment Structures. Experiments across (sub)tropical and temperate seagrass and salt marsh systems demonstrate greatly enhanced yields when individuals are transPlanted within Structures mimicking emergent traits that suppress waves or sediment mobility. Specifically, belowground mimics of dense root mats most facilitate seagrasses via sediment stabilization, while mimics of aboveground Plant Structures most facilitate marsh grasses by reducing stem movement. Mimicking key emergent traits may allow upscaling of restoration in many ecosystems that depend on self-facilitation for persistence, by constraining biological material requirements and implementation costs.