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欧洲赤松子叶对激素处理的器官发生反应:苄氨基嘌呤代谢与细胞分裂素含量

Organogenic responses of Pinus pinea cotyledons to hormonal treatments: BA metabolism and cytokinin content.

作者信息

Moncaleán P, Alonso P, Centeno M L, Cortizo M, Rodríguez A, Fernández B, Ordás R J

机构信息

Instituto Vasco de Investigación y Desarrollo Agrario, Centro Arkaute, Apdo. 46, 01080 Vitoria, Pais Vasco, Spain.

出版信息

Tree Physiol. 2005 Jan;25(1):1-9. doi: 10.1093/treephys/25.1.1.

Abstract

Isolated cotyledons from mature Pinus pinea L. embryos were cultured in vitro in a factorial combination of 4.4, 10 and 44.4 microM N6-benzyladenine (BA) for 2, 4, 8, 16 and 35 days to optimize shoot regeneration. Incubation of explants in 44.4 microM BA for 4 days, in place of the standard incubation in 4.4 microM BA for 35 days, reduced the entire culture period to 4 weeks. Shortening the culture period had no significant effect on the caulogenic response or the number of buds formed per cotyledon. To establish the relationship between key moments in the caulogenic process induced by 4.4 microM BA and the endogenous concentrations of the active forms of BA and other isoprenoid-type cytokinins (CKs), we examined uptake, metabolism and amount of BA, as well as the amounts of zeatin, dihydrozeatin and their ribosides in P. pinea cotyledons after 1, 2, 6, 12 and 24 h, and 2, 4, 8, 16 and 35 days of exposure to 8-[14C]BA. Uptake and release of BA were associated with water movement between explants and the medium during the first 8 days of culture. The interconvertible forms of BA were the main metabolites formed in the tissues. Inactivation of BA as a result of conjugation or oxidation was insignificant. The endogenous concentration of BA + N6-benzyladenosine was 20-fold higher than the exogenously applied BA during the competence acquisition phase (Days 0-3). The concentration of isoprenoid-type CKs also increased 16-fold and then decreased during this time. Induction of shoot buds (Days 4-8) was characterized by a second peak of BA uptake by explants that triggered the synthesis of N6-benzyladenosine-5 -monophosphate and by the maintenance of isoprenoid-type CKs. Reestablishment of CK homeostasis marked the shift from the induction phase to the shoot development phase in this organogenic process (Days 8-12).

摘要

将成熟欧洲赤松胚胎分离出的子叶,在含有4.4、10和44.4微摩尔N6 - 苄基腺嘌呤(BA)的析因组合中进行体外培养2、4、8、16和35天,以优化芽再生。将外植体在44.4微摩尔BA中培养4天,代替在4.4微摩尔BA中标准培养35天,可将整个培养周期缩短至4周。缩短培养周期对成茎反应或每个子叶形成的芽数没有显著影响。为了确定由4.4微摩尔BA诱导的成茎过程中的关键时刻与BA和其他类异戊二烯型细胞分裂素(CKs)活性形式的内源浓度之间的关系,我们检测了在暴露于8 - [14C]BA 1、2、6、12和24小时以及2、4、8、16和35天后,欧洲赤松子叶中BA的吸收、代谢和含量,以及玉米素、二氢玉米素及其核苷的含量。在培养的前8天,BA的吸收和释放与外植体和培养基之间的水分移动有关。BA的可相互转化形式是组织中形成的主要代谢产物。由于结合或氧化导致的BA失活不显著。在能力获得阶段(第0 - 3天),BA + N6 - 苄基腺苷的内源浓度比外源施用的BA高20倍。在此期间,类异戊二烯型CKs的浓度也增加了16倍,然后下降。芽的诱导(第4 - 8天)的特征是外植体对BA的吸收出现第二个峰值,这触发了N6 - 苄基腺苷 - 5'- 单磷酸的合成,并维持了类异戊二烯型CKs的水平。CK内稳态的重建标志着在这个器官发生过程中从诱导阶段向芽发育阶段的转变(第8 - 12天)。

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