CRISPR-Cas9-mediated knockout of CYP79D1 and CYP79D2 in cassava attenuates toxic cyanogen production is a research paper published in Frontiers in Plant Science (2023). On theSindex it has a DataRank of 0. It has been cited 68 times.
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National Institutes of Health
Grant: 1S10OD020062-01
High Definition Ion Mobility Spectrometer
NIH HHS
Grant: S10 OD020062
Innovative Genomics Institute
FWCI
19.74
Citation Percentile
1.0%
Influential Citations
1
Citation Trend
Fields of Study
Keywords
Sustainable Development Goals
Additional file 1 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 1 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 2 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 2 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 3 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 4 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 3 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 4 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 5 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 5 of Development of cassava common mosaic virus-based vector for protein expression and gene editing in cassava
Additional file 1 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 1 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 2 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 2 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 3 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 3 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 4 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 7 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 4 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica
Additional file 7 of Mandelonitrile lyase MDL2-mediated regulation of seed amygdalin and oil accumulation of Prunus Sibirica