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首页> 外文期刊>Plant, Cell & Environment >Impacts of light and temperature on shoot branching gradient and expression of strigolactone synthesis and signalling genes in rose.
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Impacts of light and temperature on shoot branching gradient and expression of strigolactone synthesis and signalling genes in rose.

机译:光照和温度对月季枝分支梯度和松果内酯合成及信号基因表达的影响。

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摘要

Light and temperature are two environmental factors that deeply affect bud outgrowth. However, little is known about their impact on the bud burst gradient along a stem and their interactions with the molecular mechanisms of bud burst control. We investigated this question in two acrotonic rose cultivars. We demonstrated that the darkening of distal buds or exposure to cold (5 degrees C) prior to transfer to mild temperatures (20 degrees C) both repress acrotony, allowing the burst of quiescent medial and proximal buds. We sequenced the strigolactone pathway MAX-homologous genes in rose and studied their expression in buds and internodes along the stem. Only expressions of RwMAX1, RwMAX2 and RwMAX4 were detected. Darkening of the distal part of the shoot triggered a strong increase of RwMAX2 expression in darkened buds and bark-phloem samples, whereas it suppressed the acropetal gradient of the expression of RwMAX1 observed in stems fully exposed to light. Cold treatment induced an acropetal gradient of expression of RwMAX1 in internodes and of RwMAX2 in buds along the stem. Our results suggest that the bud burst gradient along the stem cannot be explained by a gradient of expression of RwMAX genes but rather by their local level of expression at each individual position.
机译:光照和温度是两个严重影响芽生长的环境因素。然而,关于它们对沿茎的芽破裂梯度的影响以及它们与芽破裂控制的分子机制的相互作用知之甚少。我们在两个巴豆玫瑰品种中调查了这个问题。我们证明了远端芽变黑或在转移到温和温度(20摄氏度)之前暴露于寒冷(5摄氏度)都可以抑制肢端炎,从而使静止的内侧芽和近端芽破裂。我们对玫瑰中的Strigolactone途径MAX同源基因进行了测序,并研究了它们在茎中的芽和节间的表达。仅检测到RwMAX1,RwMAX2和RwMAX4的表达。芽远端的变黑触发了变暗的芽和树皮韧皮部样品中RwMAX2表达的强烈增加,而它却抑制了完全暴露于光的茎中观察到的RwMAX1表达的顶角梯度。冷处理引起沿茎向上节间中RwMAX1和芽中RwMAX2表达的顶峰梯度。我们的结果表明,不能通过RwMAX基因的表达梯度来解释沿茎的芽爆发梯度,而可以通过它们在每个单独位置的局部表达水平来解释。

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