首页> 外文期刊>Frontiers in Plant Science >Overexpression of a peach CBF gene in apple: a model for understanding the integration of growth, dormancy, and cold hardiness in woody plants
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Overexpression of a peach CBF gene in apple: a model for understanding the integration of growth, dormancy, and cold hardiness in woody plants

机译:苹果中桃CBF基因的过表达:了解木本植物生长,休眠和抗寒性整合的模型

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The timing of cold acclimation and deacclimation, dormancy, and budbreak play an integral role in the life cycle of woody plants. The molecular events that regulate these parameters have been the subject of much study, however, in most studies these events have been investigated independently of each other. Ectopic expression of a peach CBF ( PpCBF1) in apple increases the level of both non-acclimated and acclimated freezing tolerance relative to the non-transformed control, and also inhibits growth, induces early bud set and leaf senescence, and delays bud break in the spring. The current study examined differences in the seasonal expression of genes ( CBF, DAM, RGL , and EBB ) that have been reported to be associated with freezing tolerance, dormancy, growth, and bud break, respectively, in the PpCBF1 T166 transgenic apple line and the non-transformed M.26 control. Results indicated that expression of several of these key genes, including MdDAM , MdRGL , and MdEBB was altered in transgenic T166 trees relative to non-transformed M.26 trees. In particular, several putative MdDAM genes, associated with the dormancy-cycle in other species of woody plants in the Rosaceae, exhibited different patterns of expression in the T166 vs. M.26 trees. Additionally, for the first time a putative APETALA2/Ethylene-responsive transcription factor, originally described in poplar and shown to regulate the timing of bud break, was shown to be associated with the timing of bud break in apple. Since the overexpression of PpCBF1 in apple results in a dramatic alteration in cold acclimation, dormancy, and growth, this transgenic line (T166) may represent a useful model for studying the integration of these seasonal life-cycle parameters.
机译:冷驯化和去驯化的时间,休眠和萌芽在木本植物的生命周期中起着不可或缺的作用。调节这些参数的分子事件一直是许多研究的主题,但是,在大多数研究中,这些事件是相互独立研究的。与未转化的对照相比,苹果中桃CBF(PpCBF1)的异位表达增加了非适应性和适应性抗冻性的水平,并且还抑制了其生长,诱导了早期芽的形成和叶片的衰老,并延迟了芽的破裂。弹簧。本研究检查了PpCBF1 T166转基因苹果品系中基因的季节性表达差异(CBF,DAM,RGL和EBB),分别与耐冻性,休眠,生长和芽断裂有关。非转换的M.26控件。结果表明,相对于未转化的M.26树,这些关键基因中的几个基因(包括MdDAM,MdRGL和MdEBB)的表达均发生了改变。特别是,与蔷薇科其他木本植物的休眠周期相关的几个推定的MdDAM基因在T166与M.26树中表现出不同的表达模式。此外,首次以推定的APETALA2 /乙烯响应转录因子(最初在白杨中描述并显示出调节芽破裂的时间)与苹果芽破裂的时间相关。由于苹果中PpCBF1的过表达导致冷驯化,休眠和生长的急剧变化,因此该转基因品系(T166)可能是研究这些季节性生命周期参数整合的有用模型。

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