1 材料与方法
1.1 材料
1.2 方法
表1 引物序列Tab. 1 Sequence of primers used in this study |
| 引物Primer | 序列(5'-3')Sequence (5'-3') |
|---|---|
| HYG-F | CTTGGCTGGAGCTAGTGGAGGT |
| HYG-R | CCCGGTCGGCATCTCTCTATTC |
| Bik1-HYG-LBCK | TTGAGGAGAGTGACGACCA |
| Bik1-HYG-LB-R | ACCTCCACTAGCTCCAGCCAAGTCGCTGTTGAAAGCAGTAAC |
| Bik1-HYG-RB-F | GAATAGAGTAGATGCCGACCGGGACACTTCCCTACCGTGTCAGC |
| Bik1-HYG-RBCK | CGACGGACAGAGCAAACC |
| Bik1-HYG-LB-F | ATGTCAGCACCCACCGAA |
| HYG-R1 | GGATGCCTCCGCTCGAAGTA |
| HYG-F1 | CGTTGCAAGACCTGCCTGAA |
| Bik1-HYG-RB-R | CGCTTCAGTCACCACGCA |
| Bik1-Outside-F | TGCCAGCCACTACGGAGATT |
| Bik1-Outside-R | CAGGTGACGCAGTTGAGGTAGA |
| Bik1-Inside-F | CGAGGGCACTGAGGCTTA |
| Bik1-Inside-R | CTGTCGCAGCAATACGGG |
| 5SrRNA-U-F-EcoRI | GTTGTAAAACGACGGCCAGTGAATTCGATGACAAATTCAACAACTC |
| 5SrRNA-U-R-EcoRI | TCGCGAGGTACCGAGCTCGAATTATTAAGGTTGGCAAGTGCAGGA |
| BIK1-sgRNA162-F | AGAGAGAAAATCGATTCCCGGTTTTAGAGCTAGAAATAGCA |
| BIK1-sgRNA162-R | CGGGAATCGATTTTCTCTCTCATACAACAG CGGGGATTCGCT |
| pUC19-BIK1-LB-F | AGTGAATTCGAGCTCGGTACCCGGGGTTGCCCATACACAGGTCACT |
| pUC19-BIK1-LB-R | AAATAACACTGCCGCTTCAAGAGAAAATCGCTGTTGAAAGCA |
| pUC19-BIK1-RB-F | TGCTTTCAACAGCGATTTTCTTTGAAGCGGCAGTGTTATTT |
| pUC19-BIK1-RB-R | AACAGCTATGACCATGATTACGCCAAACGCATCTCGAAGAGAATGA |
2 结果与分析
2.1 进化树分析
图1 香蕉枯萎菌Foc4Bik1的蛋白结构域及多序列比对分析A:SMART预测的香蕉枯萎菌Foc4Bik1蛋白保守结构域;B:Foc4Bik1蛋白氨基酸多序列比对。 Fig. 1 Conserved domain and multiple alignment of Foc4Bik1 among different fungi species A: Schematic representation of the conserved domain of Foc4Bik1 (FOIG_14908) using online SMART software; B: Multiple alignment of Foc4Bik1. |
2.2 Foc4Bik1基因敲除及PCR检测
图2 Split-marker重组方法介导的Foc4Bik1基因敲除A:Split-marker重组基因敲除Foc4Bik1示意图;B:ΔFoc4Bik1转化子的PCR验证。 Fig. 2 Foc4Bik1 gene knockout via split-marker recombination approach and PCR screening A: Schematic map of Split-marker homologous recombination knockout of Foc4Bik1gene in Foc4; B: PCR detection of the ΔFoc4Bik1 gene-knockout transformants using outside, inside and HYG resistance primer set, respectively. |
2.3 ΔFoc4Bik1生长特性和产孢量分析
图3 ΔFoc4Bik1和野生型Foc4菌落生长表型及产孢量分析A:PDA平板菌落形态;B:菌丝顶端形态;C:分生孢子形态;D:菌落直径对比(1~7 d);E:产孢量;F:分生孢子大小。不同小写字母表示差异显著(P<0.05)。 Fig. 3 Comparison of colony growth rate, conidia morphology and production of ΔFoc4Bik1 and Foc4 A: Colonies morphology of PDA plate; B: Microscopic observe the hyphae tip; C: Microscopic observe the conidia morphology; D: The comparison of colony diameter (1-7 d); E: The number of conidia production; F: Conidia size. Different lowercase letters indicate significant difference (P<0.05). |
2.4 ΔFoc4Bik1摇培表型分析
图4 ΔFoc4Bik1和野生型Foc4菌落生长表型A:Foc4和ΔFoc4Bik1在PDB摇培后的菌液颜色;B:Foc4和ΔFoc4Bik1在PSB摇培后的菌液颜色。 Fig. 4 Phenotype between ΔFoc4Bik1 and wild type Foc4 cultured on different liquid medium A: The phenotype of Foc4 and ΔFoc4Bik1 cultured on the PDB liquid medium; B: The phenotype of Foc4 and ΔFoc4Bik1 cultured on the PSB liquid medium. |
2.5 ΔFoc4Bik1致病力分析
图5 ΔFoc4Bik1的致病力分析A:Foc4野生株和ΔFoc4Bik1侵染后的叶部症状和球茎症状;B:Foc4野生株和ΔFoc4Bik1侵染的病情指数。不同小写字母表示差异显著(P<0.05)。 A: The leaf symptom and corm phenotype of banana inoculated by Foc4 and ΔFoc4Bik1, respectively; B: The disease indexes of the banana infected by Foc4 and ΔFoc4Bik1, respectively. Different lowercase letters indicate significant difference (P<0.05). Fig. 5 Pathogenicity test of ΔFoc4Bik1 |
2.6 Foc4Bik1为靶标评估基因编辑可行性
图6 Foc4Bik1的CRISPR/Cas9基因编辑质粒示意图以及突变体表型分析A:基因编辑载体pUC-fFuCas9-HTBNLS-hph (Plasmid #121092);B:Foc4Bik1设计的gRNA162序列;C:ΔFoc4Bik1(HDR)基因编辑后敲除突变体的摇培表型分析;D:ΔFoc4Bik1(HDR)基因敲除突变体的PCR检测验证。 Fig. 6 Schematic diagram of plasmid-based CRISPR/Cas9 gene editing vector applied in Foc4 and the phenotype of the ΔFoc4Bik1(HDR) gene replacement mutants A: Schematic diagram of gene editing vector of pUC-fFuCas9-HTBNLS-hph (Plasmid #121092); B: Alignment of the designed guide RNA sequence in Foc4Bik1 gene; C: The phenotype analysis of ΔFoc4Bik1 (HDR) gene replacement mutants cultured on PDB (pH 4.0); D: PCR detection of ΔFoc4Bik1 (HDR) gene replacement mutants with different primer sets. |
