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首页> 外文期刊>Spanish Journal of Agricultural Research >Molecular control of winter dormancy establishment in trees
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Molecular control of winter dormancy establishment in trees

机译:树木冬季休眠的分子控制

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摘要

Dormancy is an adaptive mechanism that enables woody plants to survive the freezing temperatures of winter. This complex process is characterized by the cessation of meristem activity, which is accompanied by winter bud set, extensive metabolic remodelling, an acquired high tolerance to cold and, in deciduous trees, by leaf senescence and abscission. The induction of dormancy occurs in response to seasonal environmental signals. In most woody plants, shortening of the photoperiod induces growth cessation, bud set, and some degree of cold acclimation. The subsequent drop in temperature then leads to a greater tolerance to cold and leaf fall. Experimental evidence indicates that the phytochrome system plays an important role as a day length sensor, and it has been recently reported that in poplar (Populus tremula X tremuloides), the photoperiodic control of dormancy induction is driven by a molecular mechanism that shares components with the mechanism of the photoperiodic control of flowering time in Arabidopsis. In contrast, the effects of low temperatures are less well understood. Nonetheless, it has been established that the chestnut (Castanea sativa Mill.) circadian molecular clock is disrupted both during winter and in response to cold, with presumable consequences on the general physiology of the plant. However, there is no direct evidence so far for its role in dormancy regulation.
机译:休眠是一种适应性机制,可使木本植物在冬季的寒冷温度下生存。这个复杂的过程的特点是分生组织的活动停止,伴随着冬芽的结实,广泛的代谢重塑,对寒冷的获得性高耐受性以及在落叶乔木中叶片衰老和脱落。休眠的诱导是响应于季节性环境信号而发生的。在大多数木本植物中,光周期的缩短会导致生长停止,芽集和一定程度的冷驯化。随后温度下降导致对寒冷和落叶的耐受性增强。实验证据表明,植物色素系统作为日间长度传感器起着重要的作用,最近有报道称,在杨树(Populus tremula X tremuloides)中,休眠诱导的光周期控制是由与植物中共有成分的分子机制驱动的。光周期控制拟南芥开花时间的机理。相反,人们对低温的影响了解较少。然而,已经确定,栗子(Castanea sativa Mill。)昼夜节律分子钟在冬季和对寒冷的响应都被破坏,对植物的总体生理可能产生影响。但是,到目前为止,尚无直接证据表明其在休眠调节中的作用。

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