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Published byGuillermo Cárdenas Padilla Modified 5年之前
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Chapter 3 Protoplast Culture & Somatic Hybridization
Wenwu Guo
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Part 2 Somatic hybridization
(体细胞杂交) Definition Fusion and culture Devel. process & hybrid verification Application
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1: Definition of SH SH, i.e. protoplast fusion, a process of PPs from two different parents were induced to fuse and then regenerate into plantlets, also named as SH (A + B) Several different expressions: 体细胞杂交:Somatic hybridization 细胞融合:Cell fusion 原生质体融合:Protoplast fusion 无性杂交:asexual hybridization 超性杂交:Parasexual hybridization 超性融合:Parasexual fusion 细胞操作:Cell manipulation 细胞工程: Cell engineering
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Comparison of SH with Sexual crossing
Items Somatic fusion Sexual cross Time 时间 No season limit Only bloom season (花期限制,母本花期) Phylogeny 亲缘关系 Can circumvent graft/sexual incompatibility 克服嫁接/有性不亲和性 Can not Results 结果 nuclear, cytoplasmic genomes recombined Ploidy level increaed Double fertilization, no recombination and ploidy level unchanged
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Possible Fusion Results of Two Genetically Different Protoplasts
= chloroplast = mitochondria Fusion = nucleus heterokaryon cybrid hybrid hybrid cybrid
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Terminology-1 对称杂种 (symmetric hybrid)(双亲给杂种贡献的遗传物质均为100%)
非对称杂种(asymmetric hybrid)(双亲给杂种贡献的遗传物质不等(相对值) 胞质杂种(cytoplasmic hybrid, Cybrid):细胞质重组,细胞核未重组 对称融合(symmetric fusion) 也称标准融合(Standard fusion) 非对称融合(asymmetric fusion):融合前对一方进行处理,使其染色体丢失一部分
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Terminology-2 供-受体融合:Donor-recipient fusion
体配融合(gameto-somatic fusion)(性细胞与体细胞融合) 亚原生质体-原生质体融合: Subprotoplast-protoplast fusion 小原生质体:Miniprotoplast 微原生质体:Microprotoplast 胞质体:Cytoplast 胞质体-原生质体融合: Cytoplast-protoplast fusion
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Technical developmental history
1970s, establish and optimize of PP technique 1972, tobacco interspecific somatic hybrid 1975, high Ca-high pH PEG fusion; electro-fusion Numerous reports, some were not realistic Early 1980s, model plants to staple/economic crops, symmetric to asymmetric, more realistic Late 1980s, many reports on perennial woody plants 1990s to date, a conventional & safe ‘biotech’ for plant breeding in citrus, rapeseed, wheat etc.
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Potato + Tomato = Pomato ?
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Factors affecting fusion
2: protoplast fusion Fusion methods Fusion process Factors affecting fusion
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Fusion methods Polyethylene glycol (PEG,聚乙二醇)
PEG-mediated fusion Electro-fusion Polyethylene glycol (PEG,聚乙二醇) Electrofusion, Electrically induced fusion
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1. PEG-mediated fusion Characteristics: 1) Merits include: low input, high frequency of hetero-karyons, no species limit; 2) Defects include: tedious fusion procedure, toxicity to cells Working mechanism: PEG分子具有轻微的负极性,可与具有正极性基团的水、蛋白质和碳水化合物等形成H键,从而在原生质体之间形成分子桥,从而使原生质体发生粘连进而促进原生质体融合;PEG能增加类脂膜的流动性,也使原生质体的核、细胞器发生融合成为可能
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Several stock solutions to prepare
Fusion sol: CaCl2 2H2O mmol KH2PO mmol Mannitol mol pH 5.6 Inducing sol: Fusion sol + PEG 20-45% Diluting sol: sol A (g/100 ml) pH sol B (g/100 ml) pH 10.5 Glucose Glycin CaCl2 2H2O NaOH
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PEG induced fusion procedure
Fusion sol P1 P2 Mix, keep intact 1 min Screening P1 P2 Add PEG Culture Fusion Add diluting sol Mix sols A & B Add medium Dilution Wash Note: Mix solutions A & B (9:1) to make working solution
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2.Electrofusion, Electrically induced fusion
Three advantages compared with PEG fusion No toxicity to protoplasts Higher fusion frequency Simpler manipulation Electro-fusion: A high frequency AC field is applied between 2 electrodes immersed in the suspension of protoplasts- this induces charges on the protoplasts and causes them to arrange themselves in lines between the electrodes to form pearl-chain. They are then subject to a high voltage discharge which causes their membranes to fuse where they are in contact.
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Electro-fusion instrument in NKL, HZAU
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The process of electrically induced fusion
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Fusion parameters Alternate current voltage (交流电压)
Time duration of AC (交变电场处理时间) Direct current voltage (直流高频电压) Pulse width (脉冲宽度) No. of Pulses (脉冲次数)
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Fusion process Membrane fusion (膜融合) Cytoplasm fusion (细胞质融合)
Nucleus fusion (核融合)
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Factors affecting PP fusion
PP quality (intact, viability etc) Fusion method (PEG or electro-fusion) Fusion parameters (电融合参数、溶液浓度等)
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