Michael Groszmann (@turboplants) 's Twitter Profile
Michael Groszmann

@turboplants

Plant molecular biologist @PlantSci_ANU. Exploring innovative ways to improve plant performance in a changing environment. #aquaporins #photosynthesis #hybrids

ID: 1259834348804562946

linkhttps://scholar.google.com.au/citations?user=yBrkjzQAAAAJ&hl=en&oi=ao calendar_today11-05-2020 13:15:01

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Michael Groszmann (@turboplants) 's Twitter Profile Photo

Great to get a Plant Physiology 'On the Inside' summary bit.ly/37Hgm9i, of our recent Plant Phys paper where we uncovered an important role for the Peptide Hormone Receptor CEPR1 in controlling seed size and yield. ANU Division of Plant Sciences ARC CoETP

Michael Groszmann (@turboplants) 's Twitter Profile Photo

The first of our upcoming publications on #aquaporins - gatekeepers that control traffic of vital substrates in and out of plant cells. Media summary bit.ly/2AUNQ7M. Paper BMC here: rdcu.be/b4QcO ANU Division of Plant Sciences ARC CoETP The RIPE Project

The first of our upcoming publications on #aquaporins -  gatekeepers that control traffic of vital substrates in and out of plant cells.  Media summary  bit.ly/2AUNQ7M. Paper <a href="/BioMedCentral/">BMC</a> here: rdcu.be/b4QcO <a href="/PlantSci_ANU/">ANU Division of Plant Sciences</a> <a href="/leaf2field/">ARC CoETP</a> <a href="/RIPEproject/">The RIPE Project</a>
Michael Groszmann (@turboplants) 's Twitter Profile Photo

Exploring gibberellin as a novel target to control #wildradish in crops. bit.ly/3f4P1AR and scimex.org/newsfeed/resea…. New insights into GA reproductive development and characteristics of GA metabolic and signaling proteins. Involved ANU Division of Plant Sciences CSIRO Sciences and Engineering at University of Tasmania

Exploring gibberellin as a novel target to control #wildradish in crops. bit.ly/3f4P1AR and scimex.org/newsfeed/resea…. New insights into GA reproductive development and characteristics of GA metabolic and signaling proteins. Involved <a href="/PlantSci_ANU/">ANU Division of Plant Sciences</a> <a href="/CSIRO/">CSIRO</a> <a href="/Sciences_UTAS/">Sciences and Engineering at University of Tasmania</a>
ARC CoETP (@leaf2field) 's Twitter Profile Photo

Centre Scientists Elena Martin Avila, Spencer Whitney and team, have traveled back on time to fix #Rubisco limitations and improve #photosynthesis, which could lead to a major increase in crop production, read The Plant Cell paper bit.ly/2ZUegiH Image: Charles Tambiah.

Centre Scientists <a href="/E_MartinAvila/">Elena Martin Avila</a>, Spencer Whitney and team, have traveled back on time to fix #Rubisco limitations and improve #photosynthesis, which could lead to a major increase in crop production, read <a href="/ThePlantCell/">The Plant Cell</a> paper bit.ly/2ZUegiH Image: Charles Tambiah.
Michael Groszmann (@turboplants) 's Twitter Profile Photo

Great to have been involved in this latest #aquaporin manuscript published in Plant Cell & Environment: onlinelibrary.wiley.com/doi/abs/10.111…. Shows changes in phosphorylation state causes switching between greater water or ion permeability. ANU Division of Plant Sciences ARC CoETP Plant Energy Biology

Great to have been involved in this latest #aquaporin manuscript published in <a href="/PlantCellEnvir/">Plant Cell & Environment</a>: onlinelibrary.wiley.com/doi/abs/10.111…. Shows changes in phosphorylation state causes switching between greater water or ion permeability. <a href="/PlantSci_ANU/">ANU Division of Plant Sciences</a> <a href="/leaf2field/">ARC CoETP</a> <a href="/PlantEnergyBiol/">Plant Energy Biology</a>