![Figure](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2018-04/18_172_172_c1.jpg?itok=G0Je8B6d)
Prospects for increasing photosynthesis by overcoming the limitations of Rubisco
Parry, M. A. J.; Madgwick, P. J.; Carvalho, J. F. C.; Andralojc, P. J.
Journal of Agricultural Science
2007, DOI: 10.1017/S0021859606006666
![Figure](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2018-04/17_172_172_c1.jpg?itok=bAV4pgbG)
Proposed carbon dioxide concentrating mechanism in Chlamydomonas reinhardtii
Moroney, James V.; Ynalvez, Ruby A.
Eukaryotic Cell
2007, DOI: 10.1128/EC.00064-07
![Figure](/sites/ripe.illinois.edu/files/styles/news_teaser_square_img_175_175_/public/2018-04/16_172_172_c1.jpg?itok=RlRm_bnj)
Optimizing the distribution of resources between enzymes of carbon metabolism can dramatically increase photosynthetic rate: A numerical simulation using an evolutionary algorithm
Zhu, Xin-Guang; de Sturler, Eric; Long, Stephen P.
Plant Physiology
2007, DOI: 10.1104/pp.107.103713