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Position: Home > Articles > Optimization of macro-element composition in the medium for in vitro propagation of apple dwarfing rootstock 'SH6' Journal of Fruit Science 2020 (1) 40-49

苹果矮化砧木‘SH6’组培快繁培养基大量元素配方的优化

作  者:
杨雨璋;周贝贝;李民吉;李兴亮;张军科;张强;魏钦平
单  位:
北京市林业果树科学研究院·农业农村部华北地区园艺作物生物学与种质创制重点实验室·北京市落叶果树工程技术研究中心
关键词:
苹果矮化砧木;‘SH6’;组织培养;大量元素;二次回归正交旋转设计;配方优化
摘  要:
【目的】探讨培养基大量元素组分和配比对苹果矮化砧木‘SH6’组培继代的影响,为提高组培快繁效率、建立快繁技术提供理论依据。【方法】采用五因素二次回归正交旋转设计(1/2实施)方法,以MS培养基大量元素KNO_3、NH_4NO_3、MgSO_4·7H_2O、KH_2PO_4与CaCl_2·2H_2O为自变量,接种后35 d的组培苗继代系数和幼苗高度为因变量。【结果】单因子效应分析表明,大量元素影响苹果矮化砧木‘SH6’继代系数的主次顺序是KNO_3> NH_4NO_3> MgSO_4·7H_2O>KH_2PO_4> CaCl_2·2H_2O,影响幼苗高度的主次顺序是KNO_3> NH_4NO_3> CaCl_2·2H_2O> MgSO_4·7H_2O> KH_2PO_4。因子交互效应表明,继代系数受NH_4NO_3与CaCl_2·2H_2O交互效应的影响;幼苗高度受KNO_3与NH_4NO_3、KNO_3与KH_2PO_4、KNO_3与CaCl_2·2H_2O交互效应的影响。配方优化的研究表明,理论预测与实验验证的结果无显著差异。【结论】MS培养基的大量元素影响苹果矮化砧木‘SH6’的继代系数和幼苗高度,KNO_3与NH_4NO_3是主要影响因素。大量元素优化配方为:KNO_31 535 mg·L~(-1)、NH_4NO_31 430 mg·L~(-1)、MgSO_4·7H_2O 310 mg·L~(-1)、KH_2PO_4172 mg·L~(-1)与CaCl_2·2H_2O 445 mg·L~(-1),培养35 d继代系数4.2,幼苗高度2.6 cm。
译  名:
Optimization of macro-element composition in the medium for in vitro propagation of apple dwarfing rootstock 'SH6'
作  者:
YANG Yuzhang;ZHOU Beibei;LI Minji;LI Xingliang;ZHANG Junke;ZHANG Qiang;WEI Qinping;Beijing Academy of Forestry and Pomology Sciences/Key Laboratory of Biology and Genetic Improvement of Horticultural Crops(North China), Ministry of Agriculture and Rural Affairs/Beijing Engineering Research Center for Deciduous Fruit Trees;
关键词:
Apple dwarfing rootstock;;'SH6';;Tissue culture;;Macro-element;;Quadratic regression orthogonal rotation design;;Optimum proposal
摘  要:
【Objective】‘SH6', a representative Chinese apple dwarfing rootstock, was used in this study to investigate the effect of macro-elements in tissue culture medium on in vitro subculture, in order to improve the efficiency of tissue culture. Growth regulators and carbohydrates have been widely studied in tissue culture research. However, macro-elements have also an important effect on tissue culture. Macro-elements play indispensable roles in the rapid propagation of apple dwarfing rootstock. Reasonable dosage and composition of macro-elements are important for rapid propagation system.【Methods】A five-factor quadratic regression orthogonal rotation design(1/2) was used to construct the experiment. Concentrations of macro-elements in MS medium including KNO_3, NH_4NO_3, MgSO_4· 7 H_2O,KH_2PO_4 and CaCl_2· 2 H_2O were set as independent variables. The amounts of trace-element followed the standard MS medium. 6-BA at 1.0 mg · L~(-1) and IBA at 0.1 mg · L~(-1) were used as growth regulators, and the pH value was adjusted to 5.8. The temperature of the culture chamber was controlled at(232) ℃;the photoperiod was 16 h/8 h(day/night); the light intensity was 30 μmol · m~(-2)· s~(-1). Statistical analysis was carried out after 35 days of culture. The subculture coefficient and the average height of seedlings as dependent variables were recorded. The regression models of subculture coefficient and average seedling height were built based on the experiment results. Principal component analysis was carried out for studying the order of the effect of independent variables on the dependent variables. Single-factor analysis was carried out for studying the effects of each independent variable on subculture coefficient and seedling height. Two-factor interaction analysis was carried out for studying the combined effect of the two independent variables on the dependent variables. Frequency analysis was carried out with 3 125 coded combinations for obtaining the possible change area scope of the dependent variables. The optimized proposal of macro elements was predicted based on frequency analysis under a given target objective value. The verification experiment was performed to test the predicted results.【Results】The reliable models(p < 0.01) of subculture coefficient and average height of SH6 seedlings were constructed based on the five variables. During the culture process, the subculture coefficient and the average height of seedlings were affected by macro elements significantly. The results of principal component analysis show that the order of degree of the effect on subculture coefficient was KNO_3> NH_4NO_3> MgSO_4·7 H_2O >KH_2PO_4> CaCl_2· 2 H_2O, and the order of degree of effect on average seedling height was KNO_3>NH_4NO_3> CaCl_2· 2 H_2O > MgSO_4· 7 H_2O > KH_2PO_4. The results of single-factor analysis show that the subculture coefficient decreased with the increase in the amount of KNO_3, NH_4NO_3 and MgSO_4· 7 H_2O,whereas it decreased at first and then increased with the increase in the amount of KH_2PO_4 and CaCl_2·2 H_2O. The average height decreased with the increase in the amount of KNO_3 and NH_4NO_3, whereas it decreased at first and then increased with the increase in the amount of MgSO_4· 7 H_2O, KH_2PO_4 and CaCl_2· 2 H_2O. The results of two-factor interaction analysis show that the regeneration coefficient was significantly influenced by the interaction of NH_4NO_3 and CaCl_2· 2 H_2O. The subculture coefficient increased slowly with the increase in the amount of NH_4NO_3 and CaCl_2· 2 H_2O, but with increases in the amounts of CaCl_2· 2 H_2O and NH_4NO_3, the subculture coefficient increased greatly. The average height was significantly affected by three groups of two-factor interactions. In the interaction of KNO_3 and NH_4NO_3, the average height decreased with the increase in the both factors. In the interaction of KNO_3 and KH_2PO_4, irrespective of changes in KH_2PO_4, the average height decreased with the increase in the amount of KNO_3. In the interaction of KNO_3 and CaCl_2· 2 H_2O, the average height decreased with the increase in KNO_3 but increased with the increase in CaCl_2· 2 H_2O. Two optimized proposals were predicted based on the subculture coefficient > 4 and average height > 3 cm. Except KH_2PO_4, there was no overlap between the same factor in different proposals. Depended on the optimized proposal of subculture coefficient > 4, the result of the verified experiment was subculture coefficient of 4.2 and average height of 2.6 cm. It showed that there was no significant difference between theoretical prediction and experimental verification, but one proposal hardly met two or more target values.【Conclusion】The in vitro regeneration culture of apple dwarfing rootstock SH6 was significantly influenced by the amount of macro-elements in MS medium. The main factors affecting the efficiency of tissue culture were KNO_3 and NH_4NO_3. In vitro subculture of SH6 during 35 days with the result of subculture coefficient of 4.2 and the average height of 2.6 cm was obtained by the optimized macro-element proposal composed of KNO_31 535 mg · L~(-1), NH_4NO_31 430 mg · L~(-1), MgSO_4· 7 H_2O 310 mg · L~(-1), KH_2PO_4172 mg · L~(-1) and CaCl_2·2 H_2O 445 mg·L~(-1).

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