Hydrochorous seed transport in a small river in Northern Germany as trait-dependent filter of plant dispersal and recruitment

IF 0.9 3区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Leonid Rasran, Kati Vogt, Kai Jensen
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引用次数: 3

Abstract

We studied seed transport in the Upper Eider River (Northern Germany). Our main questions were: Diaspores of what species are transported in the river and which of them remain viable after the drift? Could functional species traits be used as predictors for the survival of plant propagules in course of water transport? The water body of the Upper Eider River was sampled for plant diaspores at two bridges with each four traps changed weekly during the whole year. Samples were separated into two equal groups. Each two samples per bridge and week were dried and seeds were counted manually. The other two samples were spread on sterilised soil for germination. Species composition and community weighted trait means were compared for dried samples (total transport) and seedlings (germinated after drift). About half of the species and 1/10 of the seeds were able to survive hydrochorous transport. Species traits (community weighted means) were not reliable predictors for survival of species during the hydrochorous transport, but the majority of traits reflect the differences between the transport pools of seeds and seedlings. Small seed size, ruderal life strategy, and high light preference correlate positively with germinability after the drift, while large-seeded species adapted to endozoochory tend to lose viability during hydrochory. Dispersal of terrestrial plants with running water in the studied small river system is a highly stochastic event. We did not find evidence that specific adaptations to hydrochory significantly contribute to its success. Nevertheless, a few functional traits can increase the probability for the species to pass through the ecological filter “hydrochory.” Among those traits are (i) small seed size (less vulnerability for mechanical stress), (ii) generalist dispersal mode, less dependent on other particular vectors, and (iii) ruderal life strategy.

Abstract Image

德国北部一条小河中的水生种子运输作为植物扩散和补充的性状依赖过滤器
我们研究了德国北部上埃德河(Upper Eider River)的种子运输。我们的主要问题是:哪些物种在河流中迁移,哪些物种在漂流后仍能存活?功能物种性状能否作为植物繁殖体在水运过程中存活的预测因子?在上游鸭德河的两座桥上取样,每4个捕集器全年每周更换一次。样本被分成两组。每隔一桥和一周各两个样品干燥并人工计数种子。另外两个样本则放在消毒过的土壤上发芽。比较了干样(全运输)和幼苗(漂后发芽)的物种组成和群落加权性状均值。大约一半的物种和1/10的种子能够在水生运输中存活下来。物种性状(群落加权平均值)不是水生运输过程中物种存活的可靠预测因子,但大多数性状反映了种子和幼苗运输池之间的差异。较小的种子尺寸、较粗的生命策略和较高的光偏好与漂流后的发芽能力呈正相关,而适应于内生的大种子物种在水生过程中往往会失去生存能力。陆生植物随流水在研究的小河水系中扩散是一个高度随机的事件。我们没有发现证据表明对水生生物的特定适应对其成功有显著贡献。然而,一些功能特征可以增加物种通过生态过滤器“水生”的可能性。这些特征包括:(1)种子尺寸小(不容易受到机械应力的影响),(2)通用性传播模式,较少依赖于其他特定载体,以及(3)粗糙的生命策略。
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来源期刊
International Review of Hydrobiology
International Review of Hydrobiology 生物-海洋与淡水生物学
CiteScore
4.10
自引率
10.50%
发文量
15
审稿时长
3 months
期刊介绍: As human populations grow across the planet, water security, biodiversity loss and the loss of aquatic ecosystem services take on ever increasing priority for policy makers. International Review of Hydrobiology brings together in one forum fundamental and problem-oriented research on the challenges facing marine and freshwater biology in an economically changing world. Interdisciplinary in nature, articles cover all aspects of aquatic ecosystems, ranging from headwater streams to the ocean and biodiversity studies to ecosystem functioning, modeling approaches including GIS and resource management, with special emphasis on the link between marine and freshwater environments. The editors expressly welcome research on baseline data. The knowledge-driven papers will interest researchers, while the problem-driven articles will be of particular interest to policy makers. The overarching aim of the journal is to translate science into policy, allowing us to understand global systems yet act on a regional scale. International Review of Hydrobiology publishes original articles, reviews, short communications, and methods papers.
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