DOE OSTI · 3022213
Rewinding evolution in planta: A Rubisco-null platform validates high-performance ancestral enzymes
Abstract
Improving the photosynthetic enzyme Rubisco is a key target for enhancing C3 crop productivity, but progress has been hampered by the difficulty of evaluating engineered variants in planta without interference from the native enzyme. Here, we report the creation of a Rubisco-null Nicotiana tabacum platform by using CRISPR-Cas9 to knock out all 11 nuclear-encoded small subunit (rbcS) genes. Knockout was achieved in a line expressing cyanobacterial Rubisco from the plastid genome, allowing the recovery of viable plants. We then developed a chloroplast expression system for coexpressing both large and small subunits from the plastid genome. We expressed two resurrected ancestral Rubiscos from the Solanaceae family. The resulting transgenic plants were phenotypically normal and accumulated Rubisco to wild-type levels. Importantly, kinetic analyses of the purified ancestral enzymes revealed they possessed a 16 to 20% higher catalytic efficiency (k cat,air /K c,air ) under ambient conditions, driven by a significantly faster turnover rate (k cat,air ). We have demonstrated that our system allows robust in vivo assessment of novel Rubiscos and that ancestral reconstruction is a powerful strategy for identifying superior enzymes to improve photosynthesis in C3 crops.
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Chaudhari, Vishalsingh R. [Cornell University, Ithaca, NY (United States)], Lin, Myat T. [Cornell University, Ithaca, NY (United States); C16 Biosciences, New York, NY (United States)], Hines, Kevin M. [Cornell University, Ithaca, NY (United States); Foundation Medicine, Boston, MA (United States)], Hanson, Maureen R. [Cornell University, Ithaca, NY (United States)] (ORCID:0000000181413058). 2026-01-09. Rewinding evolution in planta: A Rubisco-null platform validates high-performance ancestral enzymes. https://doi.org/10.1073/pnas.2523360123
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