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

Articles citing this paper

Intracellular transport and pathways of carbon flow in plants with crassulacean acid metabolism

Joseph A. M. Holtum A D , J. Andrew C. Smith B and H. Ekkehard Neuhaus C
+ Author Affiliations
- Author Affiliations

A School of Tropical Biology, James Cook University, Townsville, Qld 4811, Australia.

B Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.

C Universität Kaiserslautern, Pflanzenphysiologie, Erwin Schrödinger-Strasse, D-67653 Kaiserslautern, Germany.

D Corresponding author. Email: joseph.holtum@jcu.edu.au

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

F This paper is dedicated to Professor Dr Erwin Latzko on the occasion of his 80th birthday.

Functional Plant Biology 32(5) 429-449 https://doi.org/10.1071/FP04189
Submitted: 17 October 2004  Accepted: 22 February 2005   Published: 27 May 2005



62 articles found in Crossref database.

Klaus Winter – the indefatigable CAM experimentalist
Holtum Joseph A M
Annals of Botany. 2023 132(4). p.563
The Secretory System of Arabidopsis
Bassham Diane C., Brandizzi Federica, Otegui Marisa S., Sanderfoot Anton A.
The Arabidopsis Book. 2008 6 p.e0116
Plant Signaling Molecules (2019)
Ferrari Renata Callegari, Freschi Luciano
Engineering of Crassulacean Acid Metabolism
Schiller Katharina, Bräutigam Andrea
Annual Review of Plant Biology. 2021 72(1). p.77
Clusia (2007)
Lüttge Ulrich
CAM‐physiology and carbon gain of the orchid Phalaenopsis in response to light intensity, light integral and CO2
Hogewoning Sander W., van den Boogaart Stefan A.J., van Tongerlo Evelien, Trouwborst Govert
Plant, Cell & Environment. 2021 44(3). p.762
Potential of Plants from the Genus Agave as Bioenergy Crops
Escamilla-Treviño Luis Lauro
BioEnergy Research. 2012 5(1). p.1
Peeling back the layers of crassulacean acid metabolism: functional differentiation between Kalanchoë fedtschenkoi epidermis and mesophyll proteomes
Abraham Paul E., Hurtado Castano Natalia, Cowan‐Turner Daniel, Barnes Jeremy, Poudel Suresh, Hettich Robert, Flütsch Sabrina, Santelia Diana, Borland Anne M.
The Plant Journal. 2020 103(2). p.869
The Leaf: A Platform for Performing Photosynthesis (2018)
Borland Anne M., Leverett Alistair, Hurtado-Castano Natalia, Hu Rongbin, Yang Xiaohan
Low-level CAM photosynthesis in a succulent-leaved member of the Urticaceae,
Winter Klaus, Garcia Milton, Virgo Aurelio, Smith J. Andrew C.
Functional Plant Biology. 2020 48(7). p.683
2-Hydroxy Acids in Plant Metabolism
Maurino Veronica G., Engqvist Martin K. M.
The Arabidopsis Book. 2015 13 p.e0182
Dietary options and behavior suggested by plant biomarker evidence in an early human habitat
Magill Clayton R., Ashley Gail M., Domínguez-Rodrigo Manuel, Freeman Katherine H.
Proceedings of the National Academy of Sciences. 2016 113(11). p.2874
The pineapple genome and the evolution of CAM photosynthesis
Ming Ray, VanBuren Robert, Wai Ching Man, Tang Haibao, Schatz Michael C, Bowers John E, Lyons Eric, Wang Ming-Li, Chen Jung, Biggers Eric, Zhang Jisen, Huang Lixian, Zhang Lingmao, Miao Wenjing, Zhang Jian, Ye Zhangyao, Miao Chenyong, Lin Zhicong, Wang Hao, Zhou Hongye, Yim Won C, Priest Henry D, Zheng Chunfang, Woodhouse Margaret, Edger Patrick P, Guyot Romain, Guo Hao-Bo, Guo Hong, Zheng Guangyong, Singh Ratnesh, Sharma Anupma, Min Xiangjia, Zheng Yun, Lee Hayan, Gurtowski James, Sedlazeck Fritz J, Harkess Alex, McKain Michael R, Liao Zhenyang, Fang Jingping, Liu Juan, Zhang Xiaodan, Zhang Qing, Hu Weichang, Qin Yuan, Wang Kai, Chen Li-Yu, Shirley Neil, Lin Yann-Rong, Liu Li-Yu, Hernandez Alvaro G, Wright Chris L, Bulone Vincent, Tuskan Gerald A, Heath Katy, Zee Francis, Moore Paul H, Sunkar Ramanjulu, Leebens-Mack James H, Mockler Todd, Bennetzen Jeffrey L, Freeling Michael, Sankoff David, Paterson Andrew H, Zhu Xinguang, Yang Xiaohan, Smith J Andrew C, Cushman John C, Paull Robert E, Yu Qingyi
Nature Genetics. 2015 47(12). p.1435
Progress in Botany Vol. 79 (2017)
Jones Matthew A.
Crassulacean acid metabolism under severe light limitation: a matter of plasticity in the shadows?
Ceusters J., Borland A. M., Godts C., Londers E., Croonenborghs S., Van Goethem D., De Proft M. P.
Journal of Experimental Botany. 2011 62(1). p.283
Elevated nocturnal respiratory rates in the mitochondria of CAM plants: current knowledge and unanswered questions
Leverett Alistair, Borland Anne M
Annals of Botany. 2023 132(4). p.855
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
Diel leaf growth cycles in Clusia spp. are related to changes between C3 photosynthesis and crassulacean acid metabolism during development and during water stress
WALTER ACHIM, CHRIST MAJA M., RASCHER UWE, SCHURR ULRICH, OSMOND BARRY
Plant, Cell & Environment. 2008 31(4). p.484
The Growth and Physiological Characteristics of the Endangered CAM Plant, Nadopungnan (Sedirea japonica), under Drought and Climate Change Scenarios
Song Yeong Geun, Hwang Jung Eun, An Jiae, Kim Pyoung Beom, Park Hyeong Bin, Park Hwan Joon, Kim Seongjun, Lee Chang Woo, Lee Byoung Doo, Kim Nam Young, Lee Kyeong Cheol
Forests. 2022 13(11). p.1823
Diverse Functional Roles of Monosaccharide Transporters and their Homologs in Vascular Plants: A Physiological Perspective
Slewinski Thomas L.
Molecular Plant. 2011 4(4). p.641
A Diel Flux Balance Model Captures Interactions between Light and Dark Metabolism during Day-Night Cycles in C3 and Crassulacean Acid Metabolism Leaves      
Cheung C.Y. Maurice, Poolman Mark G., Fell David. A., Ratcliffe R. George, Sweetlove Lee J.
Plant Physiology. 2014 165(2). p.917
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
Temporal and spatial transcriptomic and microRNA dynamics of CAM photosynthesis in pineapple
Wai Ching M., VanBuren Robert, Zhang Jisen, Huang Lixian, Miao Wenjing, Edger Patrick P., Yim Won C., Priest Henry D., Meyers Blake C., Mockler Todd, Smith J. Andrew C., Cushman John C., Ming Ray
The Plant Journal. 2017 92(1). p.19
Transgenic Perturbation of the Decarboxylation Phase of Crassulacean Acid Metabolism Alters Physiology and Metabolism But Has Only a Small Effect on Growth
Dever Louisa V., Boxall Susanna F., Kneřová Jana, Hartwell James
Plant Physiology. 2015 167(1). p.44
A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier world
Yang Xiaohan, Cushman John C., Borland Anne M., Edwards Erika J., Wullschleger Stan D., Tuskan Gerald A., Owen Nick A., Griffiths Howard, Smith J. Andrew C., De Paoli Henrique C., Weston David J., Cottingham Robert, Hartwell James, Davis Sarah C., Silvera Katia, Ming Ray, Schlauch Karen, Abraham Paul, Stewart J. Ryan, Guo Hao‐Bo, Albion Rebecca, Ha Jungmin, Lim Sung Don, Wone Bernard W. M., Yim Won Cheol, Garcia Travis, Mayer Jesse A., Petereit Juli, Nair Sujithkumar S., Casey Erin, Hettich Robert L., Ceusters Johan, Ranjan Priya, Palla Kaitlin J., Yin Hengfu, Reyes‐García Casandra, Andrade José Luis, Freschi Luciano, Beltrán Juan D., Dever Louisa V., Boxall Susanna F., Waller Jade, Davies Jack, Bupphada Phaitun, Kadu Nirja, Winter Klaus, Sage Rowan F., Aguilar Cristobal N., Schmutz Jeremy, Jenkins Jerry, Holtum Joseph A. M.
New Phytologist. 2015 207(3). p.491
Crassulacean acid metabolism in the Basellaceae (Caryophyllales)
Holtum J. A. M., Hancock L. P., Edwards E. J., Winter K., Leegood R.
Plant Biology. 2018 20(3). p.409
CAM photosynthesis: the acid test
Winter Klaus, Smith J. Andrew C.
New Phytologist. 2022 233(2). p.599
Diurnal modulation of PEPCK decarboxylation activity impacts photosystem II light-energy use in a drought-induced CAM species
Pikart Filipe C., Matiz Alejandra, Alves Frederico R.R., Mercier Helenice
Environmental and Experimental Botany. 2020 173 p.104003
Sedoheptulose accumulation under CO2 enrichment in leaves of Kalanchoë pinnata: a novel mechanism to enhance C and P homeostasis?
Ceusters Johan, Godts Christof, Peshev Darin, Vergauwen Rudy, Dyubankova Natalia, Lescrinier Eveline, De Proft Maurice P., Van den Ende Wim
Journal of Experimental Botany. 2013 64(6). p.1497
Environment or Development? Lifetime Net CO2 Exchange and Control of the Expression of Crassulacean Acid Metabolism inMesembryanthemum crystallinum 
Winter Klaus, Holtum Joseph A.M.
Plant Physiology. 2007 143(1). p.98
Crassulacean acid metabolism in the ZZ plant, Zamioculcas zamiifolia (Araceae)
Holtum Joseph A. M., Winter Klaus, Weeks Mark A., Sexton Timothy R.
American Journal of Botany. 2007 94(10). p.1670
Transcript and metabolite changes during the early phase of abscisic acid-mediated induction of crassulacean acid metabolism in Talinum triangulare
Maleckova Eva, Brilhaus Dominik, Wrobel Thomas J, Weber Andreas P M, Cushman John
Journal of Experimental Botany. 2019 70(22). p.6581
Progress in Botany (2008)
Niewiadomska Ewa, Borland Anne M.
Sensitivity and Regulation of Diel Photosynthesis in Red-Fleshed Pitaya (Hylocereus polyrhizus) Micropropagules under Mannitol-Induced Water Stress/Rehydration Cycle In Vitro
Lee Yu-Chi, Chang Jer-Chia
Horticulturae. 2024 10(3). p.235
Complex analytical approach to characterization of the influence of carbon dioxide concentration on carbohydrate composition in Norway spruce needles
Cabálková Jana, Wahlund Karl-Gustav, Chmelík Josef
Journal of Chromatography A. 2007 1148(2). p.189
Crassulacean acid metabolism: a continuous or discrete trait?
Winter Klaus, Holtum Joseph A. M., Smith J. Andrew C.
New Phytologist. 2015 208(1). p.73
Juvenile tank-bromeliads lacking tanks: do they engage in CAM photosynthesis?
Beltrán J. D., Lasso E., Madriñán S., Virgo A., Winter K.
Photosynthetica. 2013 51(1). p.55
Computational analysis of the productivity potential of CAM
Shameer Sanu, Baghalian Kambiz, Cheung C. Y. Maurice, Ratcliffe R. George, Sweetlove Lee J.
Nature Plants. 2018 4(3). p.165
Progress in Botany (2007)
Osmond Charles Barry
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
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
Evolution of Crassulacean acid metabolism in response to the environment: past, present, and future
Heyduk Karolina
Plant Physiology. 2022 190(1). p.19
Shifting photosynthesis between the fast and slow lane: Facultative CAM and water-deficit stress
Winter Klaus, Holtum Joseph A.M.
Journal of Plant Physiology. 2024 294 p.154185
AnALMT1Gene Cluster Controlling Aluminum Tolerance at theAlt4Locus of Rye (Secale cerealeL.)
Collins N C, Shirley N J, Saeed M, Pallotta M, Gustafson J P
Genetics. 2008 179(1). p.669
Photosynthetic flexibility and ecophysiological plasticity: questions and lessons from Clusia, the only CAM tree, in the neotropics
Lüttge Ulrich
New Phytologist. 2006 171(1). p.7
Effect of plant traits and substrate moisture on the thermal performance of different plant species in vertical greenery systems
Pan Lan, Wei Shen, Lai Po Ying, Chu L.M.
Building and Environment. 2020 175 p.106815
Progress in Botany (2009)
Antony E., Borland A. M.
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
Facultative crassulacean acid metabolism (CAM) plants: powerful tools for unravelling the functional elements of CAM photosynthesis
Winter K., Holtum J. A. M.
Journal of Experimental Botany. 2014 65(13). p.3425
Crassulacean acid metabolism: recent advances and future opportunities
Cushman John C.
Functional Plant Biology. 2005 32(5). p.375
Maltose Processing and Not β-Amylase Activity Curtails Hydrolytic Starch Degradation in the CAM Orchid Phalaenopsis
Ceusters Nathalie, Frans Mario, Van den Ende Wim, Ceusters Johan
Frontiers in Plant Science. 2019 10
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
Light quality affects light harvesting and carbon sequestration during the diel cycle of crassulacean acid metabolism in Phalaenopsis
Zheng Liang, Ceusters Johan, Van Labeke Marie-Christine
Photosynthesis Research. 2019 141(2). p.195
Canopy CO2 exchange of two neotropical tree species exhibiting constitutive and facultative CAM photosynthesis, Clusia rosea and Clusia cylindrica
Winter Klaus, Garcia Milton, Holtum Joseph A. M.
Journal of Experimental Botany. 2009 60(11). p.3167
Proton and anion transport across the tonoplast vesicles in bromeliad species
Pereira Paula Natália, Smith James Andrew Charles, Purgatto Eduardo, Mercier Helenice
Functional Plant Biology. 2017 44(6). p.646
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
Advances in biorenewables-resource-waste systems and modelling
Guo Miao, Wu Chunfei, Chapman Stephen, Yu Xi, Vinestock Tom, Hastings Astley, Smith Pete, Shah Nilay
Carbon Capture Science & Technology. 2023 9 p.100142
Altered Gene Regulatory Networks Are Associated With the Transition From C3 to Crassulacean Acid Metabolism in Erycina (Oncidiinae: Orchidaceae)
Heyduk Karolina, Hwang Michelle, Albert Victor, Silvera Katia, Lan Tianying, Farr Kimberly, Chang Tien-Hao, Chan Ming-Tsair, Winter Klaus, Leebens-Mack Jim
Frontiers in Plant Science. 2019 9
Synthetic biology as it relates to CAM photosynthesis: challenges and opportunities
DePaoli Henrique C., Borland Anne M., Tuskan Gerald A., Cushman John C., Yang Xiaohan
Journal of Experimental Botany. 2014 65(13). p.3381
The Kalanchoë genome provides insights into convergent evolution and building blocks of crassulacean acid metabolism
Yang Xiaohan, Hu Rongbin, Yin Hengfu, Jenkins Jerry, Shu Shengqiang, Tang Haibao, Liu Degao, Weighill Deborah A., Cheol Yim Won, Ha Jungmin, Heyduk Karolina, Goodstein David M., Guo Hao-Bo, Moseley Robert C., Fitzek Elisabeth, Jawdy Sara, Zhang Zhihao, Xie Meng, Hartwell James, Grimwood Jane, Abraham Paul E., Mewalal Ritesh, Beltrán Juan D., Boxall Susanna F., Dever Louisa V., Palla Kaitlin J., Albion Rebecca, Garcia Travis, Mayer Jesse A., Don Lim Sung, Man Wai Ching, Peluso Paul, Van Buren Robert, De Paoli Henrique Cestari, Borland Anne M., Guo Hong, Chen Jin-Gui, Muchero Wellington, Yin Yanbin, Jacobson Daniel A., Tschaplinski Timothy J., Hettich Robert L., Ming Ray, Winter Klaus, Leebens-Mack James H., Smith J. Andrew C., Cushman John C., Schmutz Jeremy, Tuskan Gerald A.
Nature Communications. 2017 8(1).
Carbon acquisition by diatoms
Roberts Karen, Granum Espen, Leegood Richard C., Raven John A.
Photosynthesis Research. 2007 93(1-3). p.79
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