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Michelle R. Leishman

Michelle R. Leishman

D-Index & Metrics

Ecology and Evolution

D-Index
66
Citations
25310
World Ranking
1652
National Ranking
132

Overview

Michelle R. Leishman is affiliated with Macquarie University in Australia. Their research primarily spans the fields of Environmental Science and Agricultural and Biological Sciences, with significant contributions in related subfields such as Plant Science, Global and Planetary Change, Ecology, Nature and Landscape Conservation, and Atmospheric Science.

The scientist's work addresses several main topics including Ecology and Vegetation Dynamics Studies, Plant Water Relations and Carbon Dynamics, Plant responses to elevated CO2, Urban Green Space and Health, Plant and animal studies, Species Distribution and Climate Change, and Polar Research and Ecology.

Leishman has published frequently in a range of scientific journals and venues. The most common publications appear in:

  • Urban forestry & urban greening
  • Antarctic Science
  • Global Change Biology
  • Urban Ecosystems
  • Landscape and Urban Planning

Recent papers by the scientist include:

  • Extreme heat increases stomatal conductance and drought-induced mortality risk in vulnerable plant species, 2021, Global Change Biology
  • A Simple Method for Simulating Drought Effects on Plants, 2020, Frontiers in Plant Science
  • Small vegetated patches greatly reduce urban surface temperature during a summer heatwave in Adelaide, Australia, 2021, Landscape and Urban Planning
  • The global spectrum of plant form and function: enhanced species-level trait dataset, 2022, Scientific Data
  • Can we integrate ecological approaches to improve plant selection for green infrastructure?, 2022, Urban forestry & urban greening

The scientist has collaborated extensively with other researchers. Frequent coauthors include:

  • Anthony Manea
  • Alessandro Ossola
  • Samiya Tabassum
  • Ariningsun Cinantya
  • Johannes J. Le Roux

Best Publications

  • TRY - a global database of plant traits

    J. Kattge;S. Díaz;S. Lavorel;I. C. Prentice

  • Three keys to the radiation of angiosperms into freezing environments

    Amy E. Zanne;David C. Tank;William K. Cornwell;Jonathan M. Eastman

  • The Evolutionary ecology of seed size

    Michelle R. Leishman;Ian J. Wright;Angela T. Moles;Mark Westoby

  • Global climatic drivers of leaf size.

    Ian J. Wright;Ning Dong;Ning Dong;Vincent Maire;Vincent Maire;I. Colin Prentice;I. Colin Prentice

  • Global patterns in plant height

    Angela T. Moles;David I. Warton;Laura Warman;Nathan G. Swenson

  • Comparative ecology of seed size and dispersal

    Mark Westoby;Michelle Leishman;Janice Lord

  • Invasion success of exotic plants in natural ecosystems: the role of disturbance, plant attributes and freedom from herbivores

    Janet C Lake;Michelle R Leishman

  • Comparative evolutionary ecology of seed size

    Mark Westoby;Enrique Jurado;Michelle Leishman

  • On misinterpreting the phylogenetic correction

    Mark Westoby;Michelle R. Leishman;Janice M. Lord

  • The role of seed size in seedling establishment in dry soil conditions--experimental evidence from semi-arid species.

    Michelle R. Leishman;Mark Westoby

  • Global patterns in seed size

    Angela T Moles;Angela T Moles;David D Ackerly;John C Tweddle;John C Tweddle;John B Dickie

  • Leaf trait relationships of native and invasive plants: community- and global-scale comparisons.

    Michelle R. Leishman;Tammy Haslehurst;Adrian Ares;Zdravko Baruch

  • Which is a better predictor of plant traits: temperature or precipitation?

    Angela T. Moles;Sarah E. Perkins;Shawn W. Laffan;Habacuc Flores-Moreno

  • Small-seeded species produce more seeds per square metre of canopy per year, but not per individual per lifetime

    Angela T. Moles;Daniel S. Falster;Michelle R. Leishman;Mark Westoby

  • Different climatic envelopes among invasive populations may lead to underestimations of current and future biological invasions

    Linda J. Beaumont;Linda J. Beaumont;Rachael V. Gallagher;Wilfried Thuiller;Paul O. Downey

  • The role of large seed size in shaded conditions: experimental evidence

    M. R. Leishman;M. Westoby

  • Does the seed size/number trade-off model determine plant community structure? An assessment of the model mechanisms and their generality

    Michelle R. Leishman

  • Correlates of seed size variation: A comparison among five temperate floras

    Michelle R. Leishman;Mark Westoby;Enrique Jurado

  • Do invasive alien plants benefit more from global environmental change than native plants

    Yanjie Liu;Yanjie Liu;Ayub M. O. Oduor;Ayub M. O. Oduor;Zhen Zhang;Anthony Manea

  • Is plant ecology more siliceous than we realise

    Julia Cooke;Michelle R. Leishman

  • Predicting dispersal spectra: A minimal set of hypotheses based on plant attributes

    Lesley Hughes;Michael Dunlop;Kristine French;Michelle R. Leishman

Frequent Co-Authors

Rachael V. Gallagher
Rachael V. Gallagher Macquarie University
Mark Westoby
Mark Westoby Macquarie University
Lesley Hughes
Lesley Hughes Macquarie University
Angela T. Moles
Angela T. Moles University of New South Wales
Kirstie Fryirs
Kirstie Fryirs Macquarie University
Linda J. Beaumont
Linda J. Beaumont Macquarie University
Ian J. Wright
Ian J. Wright Western Sydney University
Peter B. Reich
Peter B. Reich University of Minnesota
Amy E. Zanne
Amy E. Zanne University of Miami
William K. Cornwell
William K. Cornwell University of New South Wales

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