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Enhanced drought-tolerance in the homoploid hybrid species Pinus densata: implication for its habitat divergence from two progenitors

机译:同倍体杂种松(Pinus densata)的增强的耐旱性:暗示其栖息地与两个祖先的差异

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摘要

The homoploid hybrid species Pinus densata is restricted to alpine habitats that exceed the altitude range of its two parental species, Pinus tabulaeformis and Pinus yunnanensis. Alpine habitats usually generate cold-induced water stress in plants. To understand the ecological differentiation between these three species, we examined their physiological responses to drought stress. Potted seedlings of three species were subjected to low, mild, moderate and severe water stress in an automatic-controlled glasshouse. Fifteen indicators of fitness were measured for each species in each treatment, and most of these decreased as drought increased. Pinus densata exhibited higher fitness than both parental species in terms of total dry mass production (TDM) and long-term water use efficiency (WUEL) across all treatments; several other ecophysiological traits were also extreme but not across every treatment, and not always in the highest stress treatment. These results indicate that extreme characters that have become well fixed in P. densata, confer a faster seedling growth rate and more efficient water use, which in turn should confer increased drought tolerance. These traits of P. densata likely promoted its ecological separation from its parental species and facilitated its successful colonization and establishment in high-altitude habitats.
机译:同倍体杂种松(Pinus densata)仅限于超过其两个亲本种(油松和云南松)海拔范围的高山生境。高山生境通常在植物中产生冷诱导的水分胁迫。为了了解这三个物种之间的生态分化,我们检查了它们对干旱胁迫的生理反应。在自动控制的温室中,将三种物种的盆栽幼苗置于低,轻,中度和重度水分胁迫下。在每种处理中对每种物种测量了15个适应性指标,并且大多数指标随着干旱的增加而降低。在所有处理中,在总干重产量(TDM)和长期水分利用效率(WUEL)方面,密度分布图都比亲本物种高。其他一些生理生态特征也很极端,但并非在所有治疗中都如此,而且并非总是在压力最高的治疗中。这些结果表明,已经在固结假单胞菌中很好地固定的极端特征,赋予幼苗更快的生长速度和更有效的水分利用,这反过来又应该赋予更高的耐旱性。致密体育的这些特征可能促进了其与亲本物种的生态分离,并促进了其在高海拔生境中的成功定居和定植。

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