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Mark Waters
Mark Waters
Senior Lecturer, School of Molecular Sciences, University of Western Australia
Verified email at uwa.edu.au - Homepage
Title
Cited by
Cited by
Year
GLK transcription factors coordinate expression of the photosynthetic apparatus in Arabidopsis
MT Waters, P Wang, M Korkaric, RG Capper, NJ Saunders, JA Langdale
The plant cell 21 (4), 1109-1128, 2009
6232009
Strigolactone signaling and evolution
MT Waters, C Gutjahr, T Bennett, DC Nelson
Annual Review of Plant Biology 68, 291-322, 2017
5812017
Specialisation within the DWARF14 protein family confers distinct responses to karrikins and strigolactones in Arabidopsis
MT Waters, DC Nelson, A Scaffidi, GR Flematti, YK Sun, KW Dixon, ...
Development, 2012
5442012
F-box protein MAX2 has dual roles in karrikin and strigolactone signaling in Arabidopsis thaliana
DC Nelson, A Scaffidi, EA Dun, MT Waters, GR Flematti, KW Dixon, ...
Proceedings of the National Academy of Sciences 108 (21), 8897-8902, 2011
4692011
Strigolactone hormones and their stereoisomers signal through two related receptor proteins to induce different physiological responses in Arabidopsis
A Scaffidi, MT Waters, YK Sun, BW Skelton, KW Dixon, EL Ghisalberti, ...
Plant physiology 165 (3), 1221-1232, 2014
3042014
The making of a chloroplast
MT Waters, JA Langdale
The EMBO Journal 28 (19), 2861-2873, 2009
2822009
LATERAL BRANCHING OXIDOREDUCTASE acts in the final stages of strigolactone biosynthesis in Arabidopsis
PB Brewer, K Yoneyama, F Filardo, E Meyers, A Scaffidi, T Frickey, ...
Proceedings of the National Academy of Sciences 113 (22), 6301-6306, 2016
2672016
The Arabidopsis Ortholog of Rice DWARF27 Acts Upstream of MAX1 in the Control of Plant Development by Strigolactones
MT Waters, PB Brewer, JD Bussell, SM Smith, CA Beveridge
Plant Physiology 159 (3), 1073-1085, 2012
2672012
GLK transcription factors regulate chloroplast development in a cell‐autonomous manner
MT Waters, EC Moylan, JA Langdale
The Plant Journal 56 (3), 432-444, 2008
2552008
ORE1 balances leaf senescence against maintenance by antagonizing G2‐like‐mediated transcription
M Rauf, M Arif, H Dortay, LP Matallana‐Ramírez, MT Waters, H Gil Nam, ...
EMBO reports 14 (4), 382-388, 2013
1862013
A Selaginella moellendorffii Ortholog of KARRIKIN INSENSITIVE2 Functions in Arabidopsis Development but Cannot Mediate Responses to Karrikins or Strigolactones
MT Waters, A Scaffidi, SLY Moulin, YK Sun, GR Flematti, SM Smith
The Plant Cell 27 (7), 1925-1944, 2015
1392015
The karrikin response system of Arabidopsis
MT Waters, A Scaffidi, YK Sun, GR Flematti, SM Smith
The Plant Journal 79 (4), 623-631, 2014
1332014
Stromule formation is dependent upon plastid size, plastid differentiation status and the density of plastids within the cell
MT Waters, RG Fray, KA Pyke
The Plant Journal 39 (4), 655-667, 2004
1332004
Karrikin and Cyanohydrin Smoke Signals Provide Clues to New Endogenous Plant Signaling Compounds
GR Flematti, MT Waters, A Scaffidi, DJ Merritt, EL Ghisalberti, KW Dixon, ...
Molecular Plant 6 (1), 29-37, 2013
1252013
Carlactone‐independent seedling morphogenesis in Arabidopsis
A Scaffidi, MT Waters, EL Ghisalberti, KW Dixon, GR Flematti, SM Smith
The Plant Journal 76 (1), 1-9, 2013
1202013
KAI2-and MAX2-mediated responses to karrikins and strigolactones are largely independent of HY5 in Arabidopsis seedlings
MT Waters, SM Smith
Molecular Plant 6 (1), 63-75, 2013
1192013
Stereospecificity in strigolactone biosynthesis and perception
GR Flematti, A Scaffidi, MT Waters, SM Smith
Planta 243, 1361-1373, 2016
1102016
Structure–function analysis of SMAX1 reveals domains that mediate its karrikin-induced proteolysis and interaction with the receptor KAI2
A Khosla, N Morffy, Q Li, L Faure, SH Chang, J Yao, J Zheng, ML Cai, ...
Plant Cell 32 (8), 2639-2659, 2020
962020
Exploring the molecular mechanism of karrikins and strigolactones
A Scaffidi, MT Waters, CS Bond, KW Dixon, SM Smith, EL Ghisalberti, ...
Bioorganic & medicinal chemistry letters 22 (11), 3743-3746, 2012
942012
Karrikin‐KAI2 signalling provides Arabidopsis seeds with tolerance to abiotic stress and inhibits germination under conditions unfavourable to seedling establishment
L Wang, MT Waters, SM Smith
New Phytologist 219 (2), 605-618, 2018
842018
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