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A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier world

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dc.contributor.author Yang, Xiaohan en
dc.contributor.author Cushman, John C. en
dc.contributor.author Borland, Anne M. en
dc.contributor.author Edwards, Erika J. en
dc.contributor.author Wullschleger, Stan D. en
dc.contributor.author Tuskan, Gerald A. en
dc.contributor.author Owen, Nick A. en
dc.contributor.author Griffiths, Howard en
dc.contributor.author Smith, J. A. en
dc.contributor.author De Paoli, Henrique C. en
dc.contributor.author Weston, David J. en
dc.contributor.author Cottingham, Robert en
dc.contributor.author Hartwell, James en
dc.contributor.author Davis, Sarah C. en
dc.contributor.author Silvera, Katia en
dc.contributor.author Ming, Ray en
dc.contributor.author Schlauch, Karen en
dc.contributor.author Abraham, Paul en
dc.contributor.author Stewart, J. R. en
dc.contributor.author Guo, Hao-Bo en
dc.contributor.author Albion, Rebecca en
dc.contributor.author Ha, Jungmin en
dc.contributor.author Lim, Sung Don en
dc.contributor.author Wone, Bernard W. M. en
dc.contributor.author Yim, Won Cheol en
dc.contributor.author Garcia, Travis en
dc.contributor.author Mayer, Jesse A. en
dc.contributor.author Petereit, Juli en
dc.contributor.author Nair, Sujithkumar S. en
dc.contributor.author Casey, Erin en
dc.contributor.author Hettich, Robert L. en
dc.contributor.author Ceusters, Johan en
dc.contributor.author Ranjan, Priya en
dc.contributor.author Palla, Kaitlin J. en
dc.contributor.author Yin, Hengfu en
dc.contributor.author Reyes-García, Casandra en
dc.contributor.author Andrade, José Luis en
dc.contributor.author Freschi, Luciano en
dc.contributor.author Beltrán, Juan D. en
dc.contributor.author Dever, Louisa V. en
dc.contributor.author Boxall, Susanna F. en
dc.contributor.author Waller, Jade en
dc.contributor.author Davies, Jack en
dc.contributor.author Bupphada, Phaitun en
dc.contributor.author Kadu, Nirja en
dc.contributor.author Winter, Klaus en
dc.contributor.author Sage, Rowan F. en
dc.contributor.author Aguilar, Cristobal N. en
dc.contributor.author Schmutz, Jeremy en
dc.contributor.author Jenkins, Jerry en
dc.contributor.author Holtum, Joseph A. M. en
dc.date.accessioned 2015-07-13T12:29:40Z
dc.date.available 2015-07-13T12:29:40Z
dc.date.issued 2015
dc.identifier.citation Yang, Xiaohan, Cushman, John C., Borland, Anne M., Edwards, Erika J., Wullschleger, Stan D., Tuskan, Gerald A., Owen, Nick A., Griffiths, Howard, Smith, J. A., De Paoli, Henrique C., Weston, David J., Cottingham, Robert, Hartwell, James, Davis, Sarah C., Silvera, Katia, Ming, Ray, Schlauch, Karen, Abraham, Paul, Stewart, J. R., Guo, Hao-Bo, Albion, Rebecca, Ha, Jungmin, Lim, Sung Don, Wone, Bernard W. M., Yim, Won Cheol et al. 2015. "<a href="https%3A%2F%2Frepository.si.edu%2Fhandle%2F10088%2F26677">A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier world</a>." <em>New Phytologist</em>. 207 (3):491&ndash;504. <a href="https://doi.org/10.1111/nph.13393">https://doi.org/10.1111/nph.13393</a> en
dc.identifier.issn 0028-646X
dc.identifier.uri http://hdl.handle.net/10088/26677
dc.description.abstract Crassulacean acid metabolism (CAM) is a specialized mode of photosynthesis that features nocturnal CO2 uptake, facilitates increased water-use efficiency (WUE), and enables CAM plants to inhabit water-limited environments such as semi-arid deserts or seasonally dry forests. Human population growth and global climate change now present challenges for agricultural production systems to increase food, feed, forage, fiber, and fuel production. One approach to meet these challenges is to increase reliance on CAM crops, such as Agave and Opuntia, for biomass production on semi-arid, abandoned, marginal, or degraded agricultural lands. Major research efforts are now underway to assess the productivity of CAM crop species and to harness the WUE of CAM by engineering this pathway into existing food, feed, and bioenergy crops. An improved understanding of CAM has potential for high returns on research investment. To exploit the potential of CAM crops and CAM bioengineering, it will be necessary to elucidate the evolution, genomic features, and regulatory mechanisms of CAM. Field trials and predictive models will be required to assess the productivity of CAM crops, while new synthetic biology approaches need to be developed for CAM engineering. Infrastructure will be needed for CAM model systems, field trials, mutant collections, and data management. en
dc.relation.ispartof New Phytologist en
dc.title A roadmap for research on crassulacean acid metabolism (CAM) to enhance sustainable food and bioenergy production in a hotter, drier world en
dc.type Journal Article en
dc.identifier.srbnumber 136531
dc.identifier.doi 10.1111/nph.13393
rft.jtitle New Phytologist
rft.volume 207
rft.issue 3
rft.spage 491
rft.epage 504
dc.description.SIUnit STRI en
dc.description.SIUnit Peer-reviewed en
dc.description.SIUnit si-federal en
dc.description.SIUnit Research Associate en
dc.description.SIUnit Fellow en
dc.description.SIUnit Post-doc en
dc.citation.spage 491
dc.citation.epage 504


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