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化学诱变剂诱导番茄耐低温突变体的初步研究
引用本文:罗雷,梁燕,崔霞,杨姣,孙亚东,李翠,郑戌翔.化学诱变剂诱导番茄耐低温突变体的初步研究[J].中国农学通报,2012,28(22):138-143.
作者姓名:罗雷  梁燕  崔霞  杨姣  孙亚东  李翠  郑戌翔
作者单位:1. 襄阳市农业科学院,湖北襄阳,441057
2. 西北农林科技大学园艺学院,陕西杨凌,712100
3. 当阳市农业技术推广中心,湖北当阳,444100
基金项目:陕西省“13115”科技创新工程重大科技专项“番茄新品种选育与栽培技术研究”(2009ZDKG-05)
摘    要:为了利用化学诱变剂在番茄作物上诱导耐低温突变体,以番茄品种TTI1103B-2的愈伤组织为材料,分别采用不同浓度甲基磺酸乙酯(EMS)和叠氮化钠(NaN3)处理不同时间,根据愈伤组织存活率,确定这2种化学诱变剂处理番茄愈伤组织的半致死浓度和适宜的处理时间。结果表明:在相同化学诱变剂浓度处理下,愈伤组织随着处理时间的增加存活的比率降低;在同一处理时间下,愈伤组织随着化学诱变剂浓度增加存活的比率降低;EMS处理番茄品种TTI1103B-2愈伤组织的半致死浓度为0.2%,处理时间为20~40min;NaN3处理的半致死浓度为3.0mmol/L,处理时间为40~60min。

关 键 词:化学诱变剂  愈伤组织  甲基磺酸乙酯  叠氮化钠  半致死剂量
收稿时间:2011/8/29 0:00:00
修稿时间:3/5/2012 12:00:00 AM

The Preliminary Study on Screening Low-temperature-resistant Mutants of Tomato with Chemical Mutagenesis
Luo Lei , Liang Yan , Cui Xia , Yang Jiao , Sun Yadong , Li Cui , Zheng Xuxiang.The Preliminary Study on Screening Low-temperature-resistant Mutants of Tomato with Chemical Mutagenesis[J].Chinese Agricultural Science Bulletin,2012,28(22):138-143.
Authors:Luo Lei  Liang Yan  Cui Xia  Yang Jiao  Sun Yadong  Li Cui  Zheng Xuxiang
Institution:1 Xiangyang Academy of Agricultural Sciences,Xiangyang Hubei 441057;2 College of Horticulture,Northwest A & F University,Yangling Shaanxi 712100;3 Dangyang Agricultural Technology Extension Center,Dangyang Hubei 444100)
Abstract:In order to induce low-temperature-resistant mutants of tomato with chemical mutagen,callus of totamo variety ’ TTI1103B-2 ’ were treated with different concentrations of ethyl methane sulphonate (EMS) and sodium azide (NaN 3) for different time to determine the semi-lethal dose and the appropriate processing time by the callus survival rate.The results showed that the survival rate of callus decreased with treated time at the same chemical mutagenesis concentration,meanwhile,the survival rate of callus dropped down by the chemical mutagenesis concentration at the same time treatment.Semi-lethal dose of EMS was 0.2% concentration for 20-40 min,and the concentration of NaN 3 was 3.0 mmol/L for 40-60 min.
Keywords:chemical mutagenesis  callus  ethyl methane sulfonate  sodium azide  semi-lethal dose
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