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Timothy Colmer
Timothy Colmer
School of Plant Biology, The University of Western Australia
Zweryfikowany adres z uwa.edu.au
Tytuł
Cytowane przez
Cytowane przez
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Salinity tolerance in halophytes
TJ Flowers, TD Colmer
New phytologist, 945-963, 2008
32802008
Long‐distance transport of gases in plants: a perspective on internal aeration and radial oxygen loss from roots
TD Colmer
Plant, Cell & Environment 26 (1), 17-36, 2003
14032003
Flooding tolerance: suites of plant traits in variable environments
TD Colmer, L Voesenek
Functional Plant Biology 36 (8), 665-681, 2009
9862009
Plant salt tolerance: adaptations in halophytes
TJ Flowers, TD Colmer
Annals of botany 115 (3), 327-331, 2015
8722015
Sodium chloride toxicity and the cellular basis of salt tolerance in halophytes
TJ Flowers, R Munns, TD Colmer
Annals of botany 115 (3), 419-431, 2015
8192015
Neglecting legumes has compromised human health and sustainable food production
CH Foyer, HM Lam, HT Nguyen, KHM Siddique, RK Varshney, TD Colmer, ...
Nature plants 2 (8), 1-10, 2016
8002016
Response and adaptation by plants to flooding stress
MB Jackson, TD Colmer
Annals of botany 96 (4), 501-505, 2005
7392005
How plants cope with complete submergence
L Voesenek, TD Colmer, R Pierik, FF Millenaar, AJM Peeters
New phytologist 170 (2), 213-226, 2006
7242006
Use of wild relatives to improve salt tolerance in wheat
TD Colmer, TJ Flowers, R Munns
Journal of experimental botany 57 (5), 1059-1078, 2006
7152006
Aerenchyma and an Inducible Barrier to Radial Oxygen Loss Facilitate Root Aeration in Upland, Paddy and Deep‐water Rice (Oryza sativa L.)
TD Colmer
Annals of Botany 91 (2), 301-309, 2002
5502002
Improving salt tolerance of wheat and barley: future prospects
TD Colmer, R Munns, TJ Flowers
Australian Journal of Experimental Agriculture 45 (11), 1425-1443, 2005
4342005
Short‐term waterlogging has long‐term effects on the growth and physiology of wheat
AI Malik, TD Colmer, H Lambers, TL Setter, M Schortemeyer
New Phytologist 153 (2), 225-236, 2002
4292002
Changes in growth, porosity, and radial oxygen loss from adventitious roots of selected mono‐and dicotyledonous wetland species with contrasting types of aerenchyma
EJW Visser, TD Colmer, C Blom, L Voesenek
Plant, Cell & Environment 23 (11), 1237-1245, 2000
4052000
Osmotic adjustment and energy limitations to plant growth in saline soil
R Munns, JB Passioura, TD Colmer, CS Byrt
New Phytologist 225 (3), 1091-1096, 2020
3972020
Underwater photosynthesis of submerged plants–recent advances and methods
O Pedersen, TD Colmer, K Sand-Jensen
Frontiers in plant science 4, 140, 2013
3692013
Mechanisms of waterlogging tolerance in wheat–a review of root and shoot physiology
M Herzog, GG Striker, TD Colmer, O Pedersen
Plant, cell & environment 39 (5), 1068-1086, 2016
3572016
Salt sensitivity in chickpea
TJ Flowers, PM Gaur, CLL Gowda, L Krishnamurthy, S Samineni, ...
Plant, cell & environment 33 (4), 490-509, 2010
3562010
Salt tolerance in wild Hordeum species is associated with restricted entry of Na+ and Cl into the shoots
AJ Garthwaite, R von Bothmer, TD Colmer
Journal of experimental botany 56 (419), 2365-2378, 2005
3532005
Flooding tolerance in halophytes
TD Colmer, TJ Flowers
New Phytologist 179 (4), 964-974, 2008
3442008
Changes in physiological and morphological traits of roots and shoots of wheat in response to different depths of waterlogging
AI Malik, TD Colmer, H Lambers, M Schortemeyer
Functional Plant Biology 28 (11), 1121-1131, 2001
3112001
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