Efficient Gene Stacking in Rice Using the GAANTRY System

Genetic engineering of rice provides a means for improving rice grain quality and yield, and the introduction and expression of multiple genes can produce new traits that would otherwise be difficult to obtain through conventional breeding. GA A NTRY (Gene Assembly in Agrobacterium by Nucleic acid T...

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Veröffentlicht in:Rice (New York, N.Y.) N.Y.), 2021-02, Vol.14 (1), p.17-17, Article 17
Hauptverfasser: Hathwaik, Leyla T., Horstman, James, Thomson, James G., Thilmony, Roger
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Sprache:eng
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Zusammenfassung:Genetic engineering of rice provides a means for improving rice grain quality and yield, and the introduction and expression of multiple genes can produce new traits that would otherwise be difficult to obtain through conventional breeding. GA A NTRY (Gene Assembly in Agrobacterium by Nucleic acid Transfer using Recombinase technologY) was previously shown to be a precise and robust system to stably stack ten genes (28 kilobases (kb)) within an Agrobacterium virulence plasmid Transfer-DNA (T-DNA) and obtain high-quality Arabidopsis and potato transgenic events. To determine whether the GA A NTRY system can be used to engineer a monocotyledonous crop, two new T-DNA constructs, carrying five (16.9 kb) or eleven (37.4 kb) cargo sequences were assembled and transformed into rice. Characterization of 53 independent transgenic events demonstrated that more than 50% of the plants carried all of the desired cargo sequences and exhibited the introduced traits. Additionally, more than 18% of the lines were high-quality events containing a single copy of the introduced transgenes and were free of sequences from outside of the T-DNA. Therefore, GA A NTRY provides a simple, precise and versatile tool for transgene stacking in rice and potentially other cereal grain crops.
ISSN:1939-8425
1939-8433
1934-8037
DOI:10.1186/s12284-021-00460-5