首页> 外文期刊>Horticulture research. >An apple rootstock overexpressing a peach CBF gene alters growth and flowering in the scion but does not impact cold hardiness or dormancy
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An apple rootstock overexpressing a peach CBF gene alters growth and flowering in the scion but does not impact cold hardiness or dormancy

机译:过表达桃CBF基因的苹果砧木会改变接穗的生长和开花,但不会影响耐寒性或休眠性

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The C-repeat binding factor (CBF) transcription factor is involved in responses to low temperature and water deficit in many plant species. Overexpression of CBF genes leads to enhanced freezing tolerance and growth inhibition in many species. The overexpression of a peach CBF ( PpCBF1 ) gene in a transgenic line of own-rooted apple ( Malus × domestica ) M.26 rootstock (T166) trees was previously reported to have additional effects on the onset of dormancy and time of spring budbreak. In the current study, the commercial apple cultivar ‘Royal Gala’ (RG) was grafted onto either non-transgenic M.26 rootstocks (RG/M.26) or transgenic M.26 (T166) rootstocks (RG/T166) and field grown for 3 years. No PpCBF1 transcript was detected in the phloem or cambium of RG scions grafted on T166 rootstocks indicating that no graft transmission of transgene mRNA had occurred. In contrast to own-rooted T166 trees, no impact of PpCBF1 overexpression in T166 rootstocks was observed on the onset of dormancy, budbreak or non-acclimated leaf-cold hardiness in RG/T166 trees. Growth, however, as measured by stem caliper, current-year shoot extension and overall height, was reduced in RG/T166 trees compared with RG/M.26 trees. Although flowering was evident in both RG/T166 and RG/M.26 trees in the second season, the number of trees in flower, the number of shoots bearing flowers, and the number of flower clusters per shoot was significantly higher in RG/M.26 trees than RG/T166 trees in both the second and third year after planting. Elevated levels of RGL ( DELLA ) gene expression were observed in RG/T166 trees and T166 trees, which may play a role in the reduced growth observed in these tree types. A model is presented indicating how CBF overexpression in a rootstock might influence juvenility and flower abundance in a grafted scion.
机译:C-重复结合因子(CBF)转录因子参与许多植物物种对低温和缺水的反应。 CBF基因的过表达导致许多物种的抗冻能力增强和生长抑制。以前有报道称,在自生苹果(Malus×domestica)M.26砧木(T166)的转基因株系中桃CBF(PpCBF1)基因的过表达对休眠​​的开始和春季芽的爆发时间具有额外的影响。在当前的研究中,将商业苹果品种'Royal Gala'(RG)嫁接到非转基因M.26砧木(RG / M.26)或转基因M.26(T166)砧木(RG / T166)和田间生长了3年。在T166砧木上嫁接的RG接穗的韧皮部或形成层中未检测到PpCBF1转录本,表明未发生转基因mRNA的嫁接传递。与自生根的T166树相反,在T166砧木中未观察到PpCBF1过表达对RG / T166树中休眠,萌芽或未适应的叶抗寒性的发作。然而,与RG / M.26树木相比,RG / T166树木通过茎径,当年枝伸长和总体高度来衡量的生长降低。尽管第二季RG / T166和RG / M.26树木均开花明显,但RG / M中的花树数量,有花枝芽数量和每枝花簇数量明显增加。播种后第二年和第三年比.RG / T166树木多0.26棵。在RG / T166树和T166树中观察到RGL(DELLA)基因表达水平升高,这可能在这些树型中观察到的生长减少中起作用。提出了一个模型,该模型表明砧木中的CBF过表达如何影响嫁接接穗的幼稚性和花的丰度。

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