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Polytolerance to abiotic stresses: how universal is the shade-drought tolerance trade-off in woody species?

机译:对非生物胁迫的多耐受性:在木本物种中耐阴旱性之间的权衡有多普遍?

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摘要

AimsAccording to traditional ecophysiological theories stress tolerance of plants is predominately determined by universal physiochemical constraints. Plant acclimation to environmental stress therefore compromises plant performance under a different stress, hindering successful toleration of several abiotic stress factors simultaneously. Yet, recent studies have shown that these trade-offs are less exclusive than postulated so far, leaving more wiggle room for gaining polytolerance through adaptations We tested whether the polytolerance to shade and drought depends on cold and waterlogging tolerances – hypothesizing that polytolerance patterns in different species groups (angiosperms vs. gymnosperms; deciduous vs. evergreen; species originating from North America, Europe and East Asia) depend on the length of the vegetation period and species’s dormancy through limiting the duration of favourable growing season.
机译:目的根据传统的生态生理理论,植物的胁迫耐受性主要由普遍的生理化学限制决定。因此,植物适应环境胁迫会损害植物在不同胁迫下的性能,从而阻碍同时成功耐受几种非生物胁迫因素。但是,最近的研究表明,这些折衷还不像目前所假设的那样排他性,为通过适应获得多耐受性留出了更多的摆动空间。我们测试了对阴暗和干旱的多耐受性是否取决于寒冷和涝渍的耐受性–假设不同情况下的多耐受性模式物种组(附子植物与裸子植物;落叶植物与常绿植物;源自北美,欧洲和东亚的物种)取决于限制生长季节持续时间的植被时期的长度和物种的休眠。

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