首页> 外文期刊>Central European Forestry Journal >Vo?ba lesného reproduk?ného materiálu v podmienkach klimatickej zmeny / Choice of forest reproductive material under conditions of climate change
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Vo?ba lesného reproduk?ného materiálu v podmienkach klimatickej zmeny / Choice of forest reproductive material under conditions of climate change

机译:气候变化条件下森林繁殖材料的选择

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Climate change may endanger not only yield and fulfilling the social functions of European forests, but even the survival of several tree species. The study emphasises the complexity of climatic factors and physiological mechanisms, which may potentially endanger the persistence of tree populations and which cannot be reduced to problems of drought and temperature increase. A substantial inter-population variation in traits associated with the response to climatic stress, observed in provenance experiments, is a prerequisite for the choice of proper forest reproductive material (FRM) in reforestation as a strategy of climate-change mitigation. Assisted migration, i.e., transfer of FRM from source regions, currently characterised by such climate characteristics, which are expected in the target regions in the future, requires knowledge of key stress factors (depending on the climate scenario), physiological processes associated with the adaptation to this stress, identification of genes and eventually epigenetic mechanisms, controlling adaptation processes, and finally mapping of genetic and/or epigenetic variation in key genes. For most tree species, such information is not yet available. Therefore, assisted migration under such information uncertainty needs to be complemented by in situ gene conservation measures to preserve the possibility of reversing the effects of eventual erroneous decisions on FRM transfer.
机译:气候变化不仅可能危害欧洲森林的产量和履行其社会职能,甚至可能危害几种树种的生存。该研究强调了气候因素和生理机制的复杂性,这可能潜在地威胁树木种群的持久性,并且不能减少干旱和温度升高的问题。在种源实验中观察到,与气候胁迫响应相关的性状在种群之间存在很大的差异,这是在重新造林中选择合适的森林繁殖材料(FRM)作为缓解气候变化策略的前提。辅助移民,即从目前以这种气候特征为特征的来源地区转移FRM,这在未来的目标地区有望实现,需要了解关键的压力因素(取决于气候情况),与适应相关的生理过程为此,需要鉴定基因并最终鉴定表观遗传机制,控制适应过程,最后确定关键基因的遗传和/或表观遗传变异。对于大多数树种而言,此类信息尚不可用。因此,在这种信息不确定性下的辅助迁移需要辅之以原位基因保护措施,以保留逆转最终错误决定对FRM转移的影响的可能性。

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