Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Transcriptional profiles of organellar metabolite transporters during induction of crassulacean acid metabolism in Mesembryanthemum crystallinum

Shin Kore-eda A , Chiyuki Noake A , Masahisa Ohishi A , Jun-ichi Ohnishi A and John C. Cushman B C
+ Author Affiliations
- Author Affiliations

A Department of Biochemistry and Molecular Biology, Saitama University, Saitama City, 338-8570, Japan.

B Department of Biochemistry and Molecular Biology, University of Nevada, Reno, NV, 89557-0014, USA.

C Corresponding author. Email: jcushman@unr.edu

D This paper originates from a presentation at the IVth International Congress on Crassulacean Acid Metabolism, Tahoe City, California, USA, July–August 2004

Functional Plant Biology 32(5) 451-466 https://doi.org/10.1071/FP04188
Submitted: 15 October 2004  Accepted: 3 March 2005   Published: 27 May 2005



24 articles found in Crossref database.

Diurnal expression of five protein phosphatase type 2C genes in the common ice plant, Mesembryanthemum crystallinum
Sato Ko, Ohsato Hiroaki, Izumi Shunsuke, Miyazaki Saori, Bohnert Hans J., Moriyama Hiromitsu, Fukuhara Toshiyuki
Functional Plant Biology. 2007 34(7). p.581
Intracellular transport and pathways of carbon flow in plants with crassulacean acid metabolism
Holtum Joseph A. M., Smith J. Andrew C., Neuhaus H. Ekkehard
Functional Plant Biology. 2005 32(5). p.429
Isolation and Characterization of Mutants of Common Ice Plant Deficient in Crassulacean Acid Metabolism    
Cushman John C., Agarie Sakae, Albion Rebecca L., Elliot Stewart M., Taybi Tahar, Borland Anne M.
Plant Physiology. 2008 147(1). p.228
Large-scale mRNA expression profiling in the common ice plant, Mesembryanthemum crystallinum, performing C3 photosynthesis and Crassulacean acid metabolism (CAM)
Cushman John C., Tillett Richard L., Wood Joshua A., Branco Joshua M., Schlauch Karen A.
Journal of Experimental Botany. 2008 59(7). p.1875
Progress in Botany (2009)
Antony E., Borland A. M.
The photosynthetic plasticity of crassulacean acid metabolism: an evolutionary innovation for sustainable productivity in a changing world
Borland Anne M., Barrera Zambrano V. Andrea, Ceusters Johan, Shorrock Katherine
New Phytologist. 2011 191(3). p.619
Laying the Foundation for Crassulacean Acid Metabolism (CAM) Biodesign: Expression of the C4 Metabolism Cycle Genes of CAM in Arabidopsis
Lim Sung Don, Lee Sojeong, Choi Won-Gyu, Yim Won Cheol, Cushman John C.
Frontiers in Plant Science. 2019 10
How to resolve the enigma of diurnal malate remobilisation from the vacuole in plants with crassulacean acid metabolism?
Ceusters Nathalie, Borland Anne M., Ceusters Johan
New Phytologist. 2021 229(6). p.3116
Characterization of the Plastidic Phosphate Translocators in the Inducible Crassulacean Acid Metabolism PlantMesembryanthemum crystallinum
KORE-EDA Shin, NOZAWA Akira, OKADA Yusuke, TAKASHI Kazuki, AZAD Muhammad Abul Kalam, OHNISHI Jun-ichi, NISHIYAMA Yoshitaka, TOZAWA Yuzuru
Bioscience, Biotechnology, and Biochemistry. 2013 77(7). p.1511
Defining Mechanisms of C3 to CAM Photosynthesis Transition toward Enhancing Crop Stress Resilience
Tan Bowen, Chen Sixue
International Journal of Molecular Sciences. 2023 24(17). p.13072
Isolation and Characterization of a Polyubiquitin Gene and Its Promoter Region fromMesembryanthemum crystallinum
AZAD Muhammad Abul Kalam, MORITA Kunio, OHNISHI Jun-ichi, KORE-EDA Shin
Bioscience, Biotechnology, and Biochemistry. 2013 77(3). p.551
Crassulacean acid metabolism: recent advances and future opportunities
Cushman John C.
Functional Plant Biology. 2005 32(5). p.375
Multiple isoforms of phosphoenolpyruvate carboxylase in the Orchidaceae (subtribe Oncidiinae): implications for the evolution of crassulacean acid metabolism
Silvera Katia, Winter Klaus, Rodriguez B. Leticia, Albion Rebecca L., Cushman John C.
Journal of Experimental Botany. 2014 65(13). p.3623
Evolution along the crassulacean acid metabolism continuum
Silvera Katia, Neubig Kurt M., Whitten W. Mark, Williams Norris H., Winter Klaus, Cushman John C.
Functional Plant Biology. 2010 37(11). p.995
Exploiting the potential of plants with crassulacean acid metabolism for bioenergy production on marginal lands
Borland A. M., Griffiths H., Hartwell J., Smith J. A. C.
Journal of Experimental Botany. 2009 60(10). p.2879
Connecting salt stress signalling pathways with salinity‐induced changes in mitochondrial metabolic processes in C3 plants
Che‐Othman M. Hafiz, Millar A. Harvey, Taylor Nicolas L.
Plant, Cell & Environment. 2017 40(12). p.2875
Progress in Botany (2007)
Osmond Charles Barry
Engineering crassulacean acid metabolism to improve water-use efficiency
Borland Anne M., Hartwell James, Weston David J., Schlauch Karen A., Tschaplinski Timothy J., Tuskan Gerald A., Yang Xiaohan, Cushman John C.
Trends in Plant Science. 2014 19(5). p.327
Leaf carbohydrates influence transcriptional and post-transcriptional regulation of nocturnal carboxylation and starch degradation in the facultative CAM plant, Mesembryanthemum crystallinum
Taybi Tahar, Cushman John C., Borland Anne M.
Journal of Plant Physiology. 2017 218 p.144
Genomics-Assisted Crop Improvement (2007)
Pareek Ashwani, Singla-Pareek Sneh L., Sopory Sudhir K., Grover Anil
Orchestration of carbohydrate processing for crassulacean acid metabolism
Borland Anne M, Guo Hao-Bo, Yang Xiaohan, Cushman John C
Current Opinion in Plant Biology. 2016 31 p.118
Transcriptomic and metabolite analyses of Cabernet Sauvignon grape berry development
Deluc Laurent G, Grimplet Jérôme, Wheatley Matthew D, Tillett Richard L, Quilici David R, Osborne Craig, Schooley David A, Schlauch Karen A, Cushman John C, Cramer Grant R
BMC Genomics. 2007 8(1).
Two Members of the Aluminum-Activated Malate Transporter Family,SlALMT4andSlALMT5, are Expressed during Fruit Development, and the Overexpression ofSlALMT5Alters Organic Acid Contents in Seeds in Tomato (Solanum lycopersicum)
Sasaki Takayuki, Tsuchiya Yoshiyuki, Ariyoshi Michiyo, Nakano Ryohei, Ushijima Koichiro, Kubo Yasutaka, Mori Izumi C., Higashiizumi Emi, Galis Ivan, Yamamoto Yoko
Plant and Cell Physiology. 2016 57(11). p.2367
The physiology of ex vitro pineapple (Ananas comosus L. Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions: proteomic and transcriptomic profiles
Aragón C., Pascual P., González J., Escalona M., Carvalho L., Amancio S.
Plant Cell Reports. 2013 32(11). p.1807

Committee on Publication Ethics


Abstract Export Citation Get Permission