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作 者:段朝瑞[1] 陈佩[1] 张国军[2] 丁颖[1] 汪文乐[1] 高媛圆[1] 王乐怡[1] 赵飞[1] 冷平[1]
机构地区:[1]中国农业大学农学与生物技术学院,北京100193 [2]北京市农林科学院林业果树研究所,北京100093
出 处:《中国农业大学学报》2013年第2期50-55,共6页Journal of China Agricultural University
基 金:北京市科委重大资助项目(D0706002000091);中央高校基本科研业务费专项资金资助项目
摘 要:为了解β-葡萄糖苷酶基因是否与葡萄果实成熟有关,从基因库中分离出了3个β-葡萄糖苷酶基因,分别命名为VvBG1,VvBG2和VvBG3,并对其表达进行了分析。结果显示:所获得的3个基因在葡萄浆果成熟过程中均有表达。果皮中,随着果实的成熟,VvBG1变化较平稳;VvBG2在转色期时略有降低,之后不断升高,在完熟期时达到最大值;VvBG3在成熟过程中先升高后降低,在转色期时达到高峰。果肉中,VvBG1和VvBG2分别与果皮VvBG2和VvBG3变化趋势相似;VvBG3在转色前期和成熟期时表达较低,在完熟期达到最大值。种子中,VvBG1在转色前期出现最大值,之后迅速降低;随着果实的成熟,VvBG2不断上升;VvBG3在转色期时有个小峰,之后不断降低,在完熟期时表达量最低。综上,3个β-葡萄糖苷酶基因在葡萄成熟过程中的表达量和表达模式均不相同。其中果皮VvBG3和果肉VvBG2的变化趋势与ABA一致,可能在果实成熟过程中对ABA水平调节起作用。In order to investigate the relationship between beta-glucosidase genes and grape berry maturation, we identified three beta-glucosidase genes from NCBI named as VvBG1, VvBG2 and VvBG3 and then analyzed their expression. The results showed that three genes were all expressed during grape berry ripening. In peel, the expression of VvBG1 changed smoothly along with berry ripening,while the expression of VvBG2 was slightly low at veraison,then increased gradually and reached the maximum at full ripening stage. However, the expression of VvBG3 increased at first, then decreased and had a transient expression peak at veraison. In pulp,expression patterns of VvBG 1 and VvBG2 displayed similar trends with VvBG2 and VvBG3 in peel. The VvBG3 expressed relatively low at veraison, with the expression peak at full ripening stage. In seed, the expression of VvBG1 was highest at pre-veraison, then decreased rapidly. The expression of VvBG2 rose continuously during grape maturation, while the VvBG3 gene had a small expression peak at v^raison, then reduced to the lowest at the stage of full ripening. In summary,the expression patterns and levels of the three beta-glucosidase genes performed differently during grape maturation. Among them, the trends of VvBG3 in peel and VvBG2 in pulp were in consistent with the change of ABA,which might indicate that the two genes played a role in regulating ABA content during grape berry ripening.
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