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ВЛИЯНИЕ РЕДАКТИРОВАННОЙ ПЛАСТИДНОЙ КРАХМАЛФОСФОРИЛАЗЫ PHO1 A НА РАЗВИТИЕ И СТРЕССОВЫЙ ОТВЕТ РАСТЕНИЙ КАРТОФЕЛЯ

https://doi.org/10.20914/2304-4691-2022-1-63-65

About the Authors

А. Нежданова
Институт Биоинженерии им. К.Г. Скрябина
Russian Federation


А. Щенникова
Институт Биоинженерии им. К.Г. Скрябина
Russian Federation


References

1. Ma X. et al. A robustCRISPR/Cas9 system for convenient, high-efficiency multiplex genome editing in monocot and dicot plants //Molecular plant. -2015. -Vol. 8 (8). -P. 1274-1284.

2. Naito Y. et al.CRISPRdirect: software for designingCRISPR/Cas guideRNA with reduced off-target sites //Bioinformatics. - 2015. -Vol. 31(7). -P. 1120-1123.

3. Prykhozhij S.V. et al.CRISPR multitargeter: a web tool to find common and uniqueCRISPR single guideRNA targets in a set of similar sequences //PLoS One. -2015. -Vol. 10(3). -P. e0119372. Slugina M.A., et al. The expression pattern of the Pho1a genes encoding plastidic starch phosphorylase correlates with the degradation of starch during fruit ripening in green-fruited and red-fruited tomato species //Functional Plant Biology. -2019. -Vol. 46(12). -P. 1146-1157.

4. Slugina M.A., et al. The expression pattern of the Pho1a genes encoding plastidic starch phosphorylase correlates with the degradation of starch during fruit ripening in green-fruited and red-fruited tomato species //Functional Plant Biology. - 2019. - Vol. 46(12). - P. 1146-1157.


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 ,   . Topical biotechnology. 2022;(1):63-65. (In Russ.) https://doi.org/10.20914/2304-4691-2022-1-63-65

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