The study was funded by FAPESP via three projects (19/13936-0, 22/05524-7 and 22/00441-6).
The review also discusses the history of sugarcane genetic improvement in Brazil from the arrival of the Portuguese to the currently available varieties. “Despite all the improvement, the genetic engineering strategies applied to sugarcane need to advance further compared to other crops. Moreover, we’ve reached a limit in genetic terms: we’ll have to increase the number of cells or their size for the plant to store more sugar, and this requires sophisticated techniques. Big data, advanced analytical methods, bioinformatics and substantial computational resources, among others, are needed to help improve sugarcane’s physiological performance and yield without expanding crop acreage,” Buckeridge explained.
Challenges ahead
Scientists all over the world who aim to control the behavior of sugarcane with precision and leverage its potential to help cope with the extreme droughts and floods that are part of climate change face two challenges. The first is the need for better genome sequencing. In Brazil, this effort is being led by Diego Pachon, a researcher at the University of São Paulo’s Center for Nuclear Energy in Agriculture (CENA-USP).
Once precise whole genome sequencing of sugarcane is successfully obtained, the next step will be to develop techniques capable of making specific modifications in the genome. The main hope for most scientists resides in CRISPR-Cas9 gene editing, currently being tested by Marcelo Menossi, a researcher at the State University of Campinas’s Institute of Biology (IB-UNICAMP).
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