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作 者:王清郦[1,2] 孙启忠[2] 赵淑芬 郭艳艳[4] 周国栋[1]
机构地区:[1]中国农业科学院研究生院,北京100081 [2]中国农业科学院草原研究所,内蒙古呼和浩特010010 [3]林西县草原工作站,内蒙古林西025025 [4]内蒙古农业大学生态环境学院,内蒙古呼和浩特010019
出 处:《草业科学》2012年第9期1384-1389,共6页Pratacultural Science
基 金:现代农业产业技术体系(CARS-35)建设专项资金
摘 要:对3个不同类型尖叶胡枝子(Lespedeza hedysaroides)的种子贮藏蛋白进行SDS-PAGE比较分析。结果表明,3个不同类型尖叶胡枝子的盐溶蛋白和贮藏蛋白谱带表现出丰富的多态性,分子量10.75~154.53KDa。盐溶蛋白的特征蛋白谱带共19条,多态性条带13条,多态率68.42%;贮藏蛋白的特征蛋白谱带共28条,其中9条为多态性条带,多态率32.14%。利用盐溶蛋白和贮藏蛋白的条带信息进行聚类分析,供试材料可分为两类:Ⅰ类为普通型和浓绿型尖叶胡枝子;Ⅱ类为高杆型尖叶胡枝子。由此认为,种子贮藏蛋白电泳技术可以作为研究胡枝子属种内变异的重要研究手段。Seed storage proteins of three Lespedeza hedysaroides were analyzed by SDS-PAGE technique. Results indicated that SDS-PAGE of salt-soluble proteins and seed storage proteins were practical and reliable methods for determining relationships among three L. hedysaroides. Salt-soluble protein and seed storage protein in the common-type and deep green-type L. hedysaroides were significantly different from those in the tall-type. The protein molecular weight ranged from 10. 375 KDa to 155. 53 KDa. 6 bands were shared and 13 bands were polymorphism (68.42%) of total 19 salt-soluble protein bands. 19 bands were shared and 9 bands were polymorphism (32.14%) of total 28 seed storage protein bands. Clustering showed that three L. hedysaroides were divided into two groups. The common-type and the deep greentype were classified as the first group and the tall-type one was second group. Therefore, SDS-PAGE technology is an important method to study intraspecies variation among Lespedeza species.
分 类 号:S793.9[农业科学—林木遗传育种]
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