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Deep roots delay flowering and relax the impact of floral traits and associated pollinators in steppe plants

机译:深根延缓开花,并缓解草原植物的花卉性状和相关传粉媒介的影响

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摘要

Strong seasonality in abiotic harshness and pollinator availability shape the reproductive success of plants. Plant species can avoid or can tolerate harsh abiotic conditions and can attract different pollinators, but it remains unknown (i) which of these capacities is most important for flowering phenology, (ii) whether tolerance/avoidance of abiotic harshness reinforces or relaxes the phenological differentiation of species attracting different pollinators. We assembled possibly the first functional trait database for a North African steppe covering 104 species. We inferred avoidance of harshness (drought) from dormancy, i.e. annual life-span and seed size. We inferred tolerance or resistance to harshness from small specific leaf area, small stature, deep roots and high dry matter content. We inferred the type of pollinators attracted from floral colour, shape and depth. We found that avoidance traits did not affect flowering phenology, and among tolerance traits only deep roots had an effect by delaying flowering. Flower colour (red or purple), and occasionally flower depth, delayed flowering. Dish, gullet and flag shape accelerated flowering. Interactive effects however were at least as important, inversing the mentioned relationship between floral characters and flowering phenology. Specifically, among drought-tolerant deep-rooted species, flowering phenologies converged among floral types attracting different pollinators, without becoming less variable overall. Direct and interactive effects of root depth and floral traits explained at least 45% of the variance in flowering phenology. Also, conclusions on interactive effects were highly consistent with and without including information on family identity or outliers. Overall, roots and floral syndromes strongly control flowering phenology, while many other traits do not. Surprisingly, floral syndromes and the related pollinators appear to constrain phenology mainly in shallow-rooted, abiotically little tolerant species. Lack of abiotic tolerance might hence constrain accessible resources and thereby impose a stronger synchronization with biotic partners such as pollinators.
机译:非生物胁迫的强烈季节性和传粉媒介的可利用性决定了植物的繁殖成功。植物物种可以避免或可以忍受恶劣的非生物条件,并且可以吸引不同的传粉媒介,但仍然未知(i)这些能力中的哪一种对于开花物候最为重要,(ii)对非生物性耐性的耐受/避免会增强还是放松其物候分化。吸引不同传粉媒介的物种。我们可能会为覆盖104个物种的北非草原建立第一个功能性状数据库。我们推论避免因休眠而造成的恶劣(干旱),即年寿命和种子大小。我们从较小的比叶面积,较小的身材,深根和较高的干物质含量推断出对耐性的耐受性或耐受性。我们从花的颜色,形状和深度推断出传粉媒介的类型。我们发现回避性状不影响开花物候,而在耐受性状中,只有深根才延迟开花。花色(红色或紫色),偶尔花深,延迟开花。碟状,食蟹状和旗状加速开花。然而,交互作用至少同样重要,它颠倒了花性状与开花物候之间的关系。具体而言,在耐旱的深根树种中,开花物候在吸引不同授粉媒介的花型中趋于一致,但总体上变化不大。根深和花性状的直接和相互作用影响解释了开花物候方面至少45%的变化。此外,关于交互作用的结论与是否包含有关家庭身份或离群值的信息高度一致。总体而言,根和花综合症强烈控制着开花物候,而其他许多特性则不然。出乎意料的是,花卉综合症和相关的传粉媒介似乎主要在浅根,非生物性的低耐受性物种中限制了物候学。因此,缺乏非生物耐受性可能会限制可利用的资源,从而与诸如传粉媒介之类的生物伙伴更加紧密地同步。

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