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Dormancy and endosperm presence influence the ex situ conservation potential in central European calcareous grassland plants

机译:休眠和胚乳的存在影响中欧钙质草原植物的迁地保护潜力

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摘要

The preservation of plant species under ex situ conditions in seed banks strongly depends on seed longevity. However, detailed knowledge on this seed ecological aspect is limited and comparative studies from central European habitats are scarce. Therefore, we investigated the seed longevity of 39 calcareous grassland species in order to assess the prospects of ex situ storage of seeds originating from a single, strongly threatened habitat. Seed longevity (p50) was determined by artificially ageing the seeds under rapid ageing conditions (45 °C and 60 % eRH (equilibrium relative humidity)), testing for germination and calculating survival curves. We consulted seed and germination traits that are expected to be related to seed longevity. P50 values strongly varied within calcareous grassland species. The p50 values ranged between 3.4 and 282.2 days. We discovered significantly positive effects of physical dormancy and endosperm absence on p50. Physiological dormancy was associated to comparatively short longevity. These relationships remained significant when accounting for phylogenetic effects. Seed mass, seed shape, and seed coat thickness were not associated with longevity. We therefore recommend more frequent viability assessments of stored endospermic, non-physically and physiologically dormant seeds.
机译:在异地条件下在种子库中保存植物物种在很大程度上取决于种子的寿命。但是,有关种子生态学方面的详细知识有限,并且缺乏来自中欧栖息地的比较研究。因此,我们调查了39个钙质草原物种的种子寿命,以评估异地贮藏来自单一,受到严重威胁的栖息地的种子的前景。种子寿命(p50)是通过在快速老化条件下(45°C和60%eRH(平衡相对湿度))人工老化种子,测试发芽和计算存活曲线来确定的。我们咨询了预期与种子寿命有关的种子和发芽特性。在钙质草原物种内,P50值差异很大。 p50值介于3.4和282.2天之间。我们发现物理休眠和胚乳缺失对p50具有明显的积极影响。生理休眠与寿命相对较短有关。在考虑系统发育影响时,这些关系仍然很重要。种子质量,种子形状和种皮厚度与寿命无关。因此,我们建议对储存的胚乳,非物理和生理休眠种子进行更频繁的生存力评估。

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