Development of a dedicated Golden Gate Assembly platform (RtGGA) for Rhodotorula toruloides

Author:

Bonturi NemaillaORCID,Pinheiro Marina JulioORCID,de Oliveira Paola Monteiro,Rusadze Eka,Eichinger Tobias,Liudžiūtė Gintare,De Biaggi Juliano SabedottiORCID,Brauer Age,Remm MaidoORCID,Miranda Everson Alves,Ledesma-Amaro RodrigoORCID,Lahtvee Petri-JaanORCID

Abstract

AbstractRhodotorula toruloides is a potential chassis to microbial cell factories as this yeast can metabolise different substrates into a diverse range of natural products, but the lack of efficient synthetic biology tools hinders its applicability. In this study, the modular, versatile and efficient Golden Gate DNA assembly system was adapted to the first basidiomycete, an oleaginous yeast R. toruloides (RtGGA). R. toruloides CCT 0783 was sequenced, and used for the RtGGA design. The DNA fragments were assembled with predesigned 4-nt overhangs and a library of standardized parts was created containing promoters, genes, terminators, insertional regions, and resistance genes. The library was combined to create cassettes for the characterization of promoters strength and to overexpress the carotenoid production pathway. A variety of reagents, plasmids, and strategies were used and the RtGGA proved to be robust. The RtGGA was used to build three versions of the carotenoid overexpression cassette were built by using different promoter combinations. The cassettes were transformed into R. toruloides and the three new strains were characterized. Total carotenoid concentration increased by 41%. The dedicated GGA platform fills a gap in the advanced genome engineering toolkit for R. toruloides, enabling the efficient design of complex metabolic pathways.

Publisher

Cold Spring Harbor Laboratory

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. RHODOTORULA TORULOIDES AS A BIOFACTORY OF CAROTENOIDS, LIPIDS, AND ENZYMES;Microbial Fermentations in Nature and as Designed Processes;2023-07-14

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