Acta Horticulturae Sinica ›› 2025, Vol. 52 ›› Issue (7): 1758-1768.doi: 10.16420/j.issn.0513-353x.2024-0690
• Genetic & Breeding·Germplasm Resources·Molecular Biology • Previous Articles Next Articles
SONG Qianna1,2, SONG Lushuai1,3, DUAN Yonghong1, BAI Xiaodong3,*(), and FENG Ruiyun1,2,*(
)
Received:
2024-10-14
Revised:
2025-04-16
Online:
2025-07-23
Published:
2025-07-23
Contact:
BAI Xiaodong, and FENG Ruiyun
SONG Qianna, SONG Lushuai, DUAN Yonghong, BAI Xiaodong, and FENG Ruiyun. Establishment a System to Obtain CRISPR/Cas9 Genome Editing Plants Based on Hairy Root Transformation in Potatoes[J]. Acta Horticulturae Sinica, 2025, 52(7): 1758-1768.
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URL: https://www.ahs.ac.cn/EN/10.16420/j.issn.0513-353x.2024-0690
引物名称 Prime name | 引物序列(5′-3′) Sequences of primes |
---|---|
StFBH3-sgRNA-F1 | ATTGAGTTGAGAGAATAAACCAGC |
StFBH3-sgRNA-R1 | AAACGCTGGTTTATTCTCTCAACT |
StFBH3-sgRNA-F2 | ATTGTCCATAGCTGCTATATCAGC |
StFBH3-sgRNA-R2 | AAACGCTGATATAGCAGCTATGGA |
StPDS-sgRNA-F | ATTGAAGGAGCGGGTAAAGCTTCG |
StPDS-sgRNA-R | AAACCGAAGCTTTACCCGCTCCTT |
StbHLH52-DT1-BsF | ATATATGGTCTCGATTGAATTGTCAATAGTTTCAACGTT |
StbHLH52-DT1-F0 | TGAATTGTCAATAGTTTCAACGTTTTAGAGCTAGAAATAGC |
StbHLH52-DT2-R0 | AACGAGTACTCTGTTTATGAGACAATCTCTTAGTCGACTCTAC |
StbHLH52-DT2-BsR | ATTATTGGTCTCGAAACGAGTACTCTGTTTATGAGACAA |
StbHLH52-DT3-BsF | ATATATGGTCTCGATTGTCTCAAAAGCAGAGTACTCGTT |
StbHLH52-DT3-F0 | TGTCTCAAAAGCAGAGTACTCGTTTTAGAGCTAGAAATAGC |
StbHLH52-DT4-R0 | AACGCCACTCACAATTCGTCATCAATCTCTTAGTCGACTCTAC |
StbHLH52-DT4-BsR | TTATTGGTCTCGAAACGCCACTCACAATTCGTCATCAA |
StFBH3-F1 | CACAGTTGCCACCTCAATATCCAAGG |
StFBH3-R1 | ATAGTCCCTCAGGCTCAGCTCA |
StFBH3-F2 | CAGCAGCACTCACAGGCCAC |
StFBH3-R2 | GCTCTTGTAGCTTTCTCATTCGTTCAC |
StPDS-F | GCCTTGCTTTTCCTTTCTCATCTTG |
StPDS-R | GGCAGGTAGACAATCTAACACCTC |
StbHLH52-F | GGAACCAAATGTTGAAGAATTCAAC |
StbHLH52-R | CTCCAGCATTATTGCTGCTAAAA |
Cas9-F | CCCTCAAAGAAGTTCAAGGTCCT |
Cas9-R | AGATCCCCCTCGATCAGGAAATG |
Table 1 Prime sequences in this study
引物名称 Prime name | 引物序列(5′-3′) Sequences of primes |
---|---|
StFBH3-sgRNA-F1 | ATTGAGTTGAGAGAATAAACCAGC |
StFBH3-sgRNA-R1 | AAACGCTGGTTTATTCTCTCAACT |
StFBH3-sgRNA-F2 | ATTGTCCATAGCTGCTATATCAGC |
StFBH3-sgRNA-R2 | AAACGCTGATATAGCAGCTATGGA |
StPDS-sgRNA-F | ATTGAAGGAGCGGGTAAAGCTTCG |
StPDS-sgRNA-R | AAACCGAAGCTTTACCCGCTCCTT |
StbHLH52-DT1-BsF | ATATATGGTCTCGATTGAATTGTCAATAGTTTCAACGTT |
StbHLH52-DT1-F0 | TGAATTGTCAATAGTTTCAACGTTTTAGAGCTAGAAATAGC |
StbHLH52-DT2-R0 | AACGAGTACTCTGTTTATGAGACAATCTCTTAGTCGACTCTAC |
StbHLH52-DT2-BsR | ATTATTGGTCTCGAAACGAGTACTCTGTTTATGAGACAA |
StbHLH52-DT3-BsF | ATATATGGTCTCGATTGTCTCAAAAGCAGAGTACTCGTT |
StbHLH52-DT3-F0 | TGTCTCAAAAGCAGAGTACTCGTTTTAGAGCTAGAAATAGC |
StbHLH52-DT4-R0 | AACGCCACTCACAATTCGTCATCAATCTCTTAGTCGACTCTAC |
StbHLH52-DT4-BsR | TTATTGGTCTCGAAACGCCACTCACAATTCGTCATCAA |
StFBH3-F1 | CACAGTTGCCACCTCAATATCCAAGG |
StFBH3-R1 | ATAGTCCCTCAGGCTCAGCTCA |
StFBH3-F2 | CAGCAGCACTCACAGGCCAC |
StFBH3-R2 | GCTCTTGTAGCTTTCTCATTCGTTCAC |
StPDS-F | GCCTTGCTTTTCCTTTCTCATCTTG |
StPDS-R | GGCAGGTAGACAATCTAACACCTC |
StbHLH52-F | GGAACCAAATGTTGAAGAATTCAAC |
StbHLH52-R | CTCCAGCATTATTGCTGCTAAAA |
Cas9-F | CCCTCAAAGAAGTTCAAGGTCCT |
Cas9-R | AGATCCCCCTCGATCAGGAAATG |
Fig. 1 Numbers of hairy roots(A)and induction efficiency of fluorescent hairy roots(B)under different co-culture time treatments in potato One-way ANOVA Duncan’s test is used for statistical analysis. Different lowercase letters indicate a signification difference at the 0.05 level. The same below
Fig. 4 Identification of hairy roots induced by Agrobacterium rhizogenes strain with StFBH3,StbHLH52 and StPDS gene editing vectors A:The infected explants;B:Hairy root appear from explants;C:Hairy root further growth;D:Fluorescent hairy roots;E:The Percentage of fluorescent roots;F:Schematic illustration of the CRISPR/Cas9 construct;G:Schematic of the StFBH3,StbHLH52,StPDS gene and the selected target sequences;H:PCR screening of hairy roots
基因 Gene | 载体 Vectors | 材料 Materials | 总毛状根数 No. of total hairy roots | 荧光毛状根数 No. of fluorescent hairy roots | 突变毛状根数 No. of mutant hairy roots | 编辑效率/% Editing efficiency |
---|---|---|---|---|---|---|
StPDS | 青薯9号 Qingshu 9 | 62 | 36 | 30 | 83.3 | |
StPDS-sgRNA | 晋薯16号 Jinshu 6 | 42 | 15 | 12 | 80.0 | |
Desiree | 60 | 33 | 29 | 87.8 | ||
StFBH3 | StFBH3-sgRNA1 | 青薯9号 Qingshu 9 | 68 | 17 | 12 | 70.6 |
StFBH3-sgRNA2 | 30 | 11 | 8 | 72.7 | ||
StbHLH52 | StbHLH52-sgRNA14 | Desiree | 173 | 42 | 7 | 16.7 |
StbHLH52-sgRNA23 | 130 | 31 | 6 | 19.4 |
Table 2 Identification of gene editing events in fluorescent hairy roots based on PCR
基因 Gene | 载体 Vectors | 材料 Materials | 总毛状根数 No. of total hairy roots | 荧光毛状根数 No. of fluorescent hairy roots | 突变毛状根数 No. of mutant hairy roots | 编辑效率/% Editing efficiency |
---|---|---|---|---|---|---|
StPDS | 青薯9号 Qingshu 9 | 62 | 36 | 30 | 83.3 | |
StPDS-sgRNA | 晋薯16号 Jinshu 6 | 42 | 15 | 12 | 80.0 | |
Desiree | 60 | 33 | 29 | 87.8 | ||
StFBH3 | StFBH3-sgRNA1 | 青薯9号 Qingshu 9 | 68 | 17 | 12 | 70.6 |
StFBH3-sgRNA2 | 30 | 11 | 8 | 72.7 | ||
StbHLH52 | StbHLH52-sgRNA14 | Desiree | 173 | 42 | 7 | 16.7 |
StbHLH52-sgRNA23 | 130 | 31 | 6 | 19.4 |
Fig. 5 Mutation detection of regeneration plants from mutated hairy root lines A:Mutated hairy roots;B:Callus induction;C:Seedings differentiation;D - E:GFP expression of regenerated plants;F:Schematic of the process for obtaining mutated potato plants;G:PCR/RE and sanger sequencing to analysis mutant types;H:Photobleaching phenotype of potato plants
[1] |
|
[2] |
|
[3] |
|
[4] |
doi: 10.1105/tpc.16.00922 pmid: 28522548 |
[5] |
|
[6] |
|
[7] |
|
[8] |
|
杜静雅, 陈凯园, 普金, 周会英, 祝光涛, 张春芝, 杜慧. 2023. 高效GFPuv荧光筛选基因编辑载体的改造及其在马铃薯遗传转化中的应用. 中国农业科学, 56 (11):2223-2236.
|
|
[9] |
|
[10] |
|
[11] |
|
[12] |
|
[13] |
|
[14] |
|
[15] |
|
刘光宇, 徐晓静, 夏科科, 孙海汐, 陶月如, 崔震, 顾颖. 2022. 基于原生质体的谷子CRISPR/Cas9 基因编辑系统优化. 河南农业科学, 51 (1):34-42.
|
|
[16] |
|
[17] |
doi: 10.16420/j.issn.0513-353x.2021-0531 |
陆晨飞, 高月霞, 黄河, 戴思兰. 2022. 植物类胡萝卜素代谢及调控研究进展. 园艺学报, 49 (12):2559-2578.
doi: 10.16420/j.issn.0513-353x.2021-0531 |
|
[18] |
doi: 10.1126/science.234.4778.856 pmid: 17758108 |
[19] |
doi: 10.1186/s13007-020-00692-4 pmid: 33292393 |
[20] |
doi: 10.1007/s11248-007-9083-1 pmid: 17436060 |
[21] |
doi: 10.1104/pp.114.239392 |
[22] |
doi: 10.13560/j.cnki.biotech.bull.1985.2024-0536 |
宋倩娜, 段永红, 冯瑞云. 2024. CRISPR/Cas9介导的高效四倍体马铃薯试管薯基因编辑体系的建立. 生物技术通报, 40 (9):33-41.
doi: 10.13560/j.cnki.biotech.bull.1985.2024-0536 |
|
[23] |
pmid: 9526659 |
[24] |
doi: 10.1016/j.jplph.2008.08.002 pmid: 18789557 |
[28] |
|
[29] |
doi: 10.1080/10543406.2015.1052475 pmid: 26010892 |
[30] |
|
[31] |
|
[32] |
|
[33] |
doi: 10.1186/s13059-019-1622-6 pmid: 30651124 |
[25] |
doi: 10.1111/tpj.13217 pmid: 27227462 |
[26] |
|
[27] |
|
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