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Proceedings of the National Academy of Sciences of the United States of America|November 17, 2020
Biophysical analysis of the structural evolution of substrate specificity in RuBisCOSaroj Poudel, Douglas H Pike, Hagai Raanan, et al.FEMS Microbiology Reviews|June 24, 2021
Reading and surviving the harsh conditions in desert biological soil crust: the cyanobacterial viewpointHai-Feng Xu, Hagai Raanan, Guo-Zheng Dai, et al.Environmental Microbiology|August 9, 2016
What distinguishes cyanobacteria able to revive after desiccation from those that cannot: the genome aspectOmer Murik, Nadav Oren, Yoram Shotland, et al.Biochimica Et Biophysica Acta|February 21, 2016
Towards clarifying what distinguishes cyanobacteria able to resurrect after desiccation from those that cannot: The photosynthetic aspectHagai Raanan, Nadav Oren, Haim Treves, et al.FEMS Microbiology Ecology|November 5, 2016
Cyanobacterial populations in biological soil crusts of the northwest Negev Desert, Israel-effects of local conditions and disturbanceMartin Hagemann, Manja Henneberg, Vincent J M N L Felde, et al.Journal of the American Chemical Society|August 25, 2018
Minimal Heterochiral de Novo Designed 4Fe-4S Binding Peptide Capable of Robust Electron TransferJ Dongun Kim, Douglas H Pike, Alexei M Tyryshkin, et al.The New Phytologist|February 9, 2016
The mechanisms whereby the green alga Chlorella ohadii, isolated from desert soil crust, exhibits unparalleled photodamage resistanceHaim Treves, Hagai Raanan, Isaac Kedem, et al.Biochimica Et Biophysica Acta|July 20, 2015
An easily reversible structural change underlies mechanisms enabling desert crust cyanobacteria to survive desiccationLeeat Bar-Eyal, Ido Eisenberg, Adam Faust, et al.Environmental Microbiology|March 27, 2015
Three-dimensional structure and cyanobacterial activity within a desert biological soil crustHagai Raanan, Vincent J M N L Felde, Stephan Peth, et al.Pageof 2