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Plant Physiology|September 5, 2014
The origin and early evolution of rootsPaul Kenrick, Christine Strullu-DerrienCurrent Biology : CB|December 4, 2019
The Rhynie chertChristine Strullu-Derrien, Paul Kenrick, Andrew H KnollCurrent Biology : CB|January 22, 2019
Testate Amoebae in the 407-Million-Year-Old Rhynie ChertChristine Strullu-Derrien, Paul Kenrick, Tomasz Goral, et al.The New Phytologist|March 25, 2018
The origin and evolution of mycorrhizal symbioses: from palaeomycology to phylogenomicsChristine Strullu-Derrien, Marc-André Selosse, Paul Kenrick, et al.Current Opinion in Plant Biology|April 24, 2018
Fossil filamentous microorganisms associated with plants in early terrestrial environmentsChristine Strullu-DerrienGeobiology|February 11, 2021
Cryptogamic ground covers as analogues for early terrestrial biospheres: Initiation and evolution of biologically mediated proto-soilsRia L Mitchell, Christine Strullu-Derrien, Dan Sykes, et al.Plos One|December 16, 2016
A New Chytridiomycete Fungus Intermixed with Crustacean Resting Eggs in a 407-Million-Year-Old Continental Freshwater EnvironmentChristine Strullu-Derrien, Tomasz Goral, Joyce E Longcore, et al.The New Phytologist|April 23, 2014
Fungal associations in Horneophyton ligneri from the Rhynie Chert (c. 407 million year old) closely resemble those in extant lower land plants: novel insights into ancestral plant-fungus symbiosesChristine Strullu-Derrien, Paul Kenrick, Silvia Pressel, et al.Geobiology|February 13, 2023
Terrestrial surface stabilisation by modern analogues of the earliest land plants: A multi-dimensional imaging studyRia L Mitchell, Paul Kenrick, Silvia Pressel, et al.Pageof 5