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CRISPR/Cas9-Mediated Knockout of Galactinol Synthase-Encoding Genes Reduces Raffinose Family Oligosaccharide Levels in Soybean Seeds.
Le, Huy; Nguyen, Nhung Hong; Ta, Dong Thi; Le, Thao Nhu Thi; Bui, Thao Phuong; Le, Ngoc Thu; Nguyen, Cuong Xuan; Rolletschek, Hardy; Stacey, Gary; Stacey, Minviluz G; Pham, Ngoc Bich; Do, Phat Tien; Chu, Ha Hoang.
Afiliação
  • Le H; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Nguyen NH; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Ta DT; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Le TNT; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Bui TP; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Le NT; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Nguyen CX; Division of Plant Sciences, University of Missouri, Columbia, MO, United States.
  • Rolletschek H; Leibniz Institute of Plant Genetics and Crop Plant Research, Gatersleben, Germany.
  • Stacey G; Division of Plant Sciences, University of Missouri, Columbia, MO, United States.
  • Stacey MG; Division of Plant Sciences, University of Missouri, Columbia, MO, United States.
  • Pham NB; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Do PT; Graduate University of Science, Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
  • Chu HH; Institute of Biotechnology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Front Plant Sci ; 11: 612942, 2020.
Article em En | MEDLINE | ID: mdl-33391326
ABSTRACT
Raffinose family oligosaccharides (RFOs) are major soluble carbohydrates in soybean seeds that cannot be digested by human and other monogastric animals. Hence, a major goal is to reduce RFO levels to improve the nutritional quality of soybean. In this study, we utilized a dual gRNAs CRISPR/Cas9 system to induce knockouts in two soybean galactinol synthase (GOLS) genes, GmGOLS1A and its homeolog GmGOLS1B. Genotyping of T0 plants showed that the construct design was efficient in inducing various deletions in the target sites or sequences spanning the two target sites of both GmGOLS1A and GmGOLS1B genes. A subset of induced alleles was successfully transferred to progeny and, at the T2 generation, we identified null segregants of single and double mutant genotypes without off-target induced mutations. The seed carbohydrate analysis of double mutant lines showed a reduction in the total RFO content of soybean seed from 64.7 mg/g dry weight to 41.95 mg/g dry weight, a 35.2% decrease. On average, the stachyose content, the most predominant RFO in soybean seeds, decreased by 35.4% in double mutant soybean, while the raffinose content increased by 41.7%. A slight decrease in verbascose content was also observed in mutant lines. Aside from changes in soluble carbohydrate content, some mutant lines also exhibited increased protein and fat contents. Otherwise, no difference in seed weight, seed germination, plant development and morphology was observed in the mutants. Our findings indicate that GmGOLS1A and GmGOLS1B contribute to the soybean oligosaccharide profile through RFO biosynthesis pathways, and are promising targets for future investigation, as well as crop improvement efforts. Our results also demonstrate the potential in using elite soybean cultivars for transformation and targeted genome editing.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article