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首页> 外文期刊>Methods in Ecology and Evolution >Covariation in abscission force and terminal velocity of windborne sibling seeds alters long-distance dispersal projections
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Covariation in abscission force and terminal velocity of windborne sibling seeds alters long-distance dispersal projections

机译:风力传播的同胞种子的脱落力和末端速度的协变会改变长距离分散投影

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摘要

Despite the fact that seeds are unlikely to be identical - even among siblings within a maternal individual - dispersal models typically use one mean trait value to represent the ability of an entire species to disperse. Previous work has shown that the environmental conditions under which individuals leave the maternal site strongly affect how far seeds will travel. However, less is known about how trait variation within individuals contributes to dispersal or how such variation might interact with abiotic factors. Here, we develop the use of an ergometer in a novel application to investigate variation in seed traits, specifically the force required for seed abscission and seed terminal velocity, exhibited by seeds from different locations within maternal capitula of the invasive species Carduus nutans (Asteraceae). We find that seeds from the centre of capitula are significantly easier to liberate and have slower falling velocities than siblings found near the edge of capitula. When abscission force is positively correlated with terminal velocity, slowly falling, easily abscised, central seeds are projected to travel much further than edge seeds on slow winds. Our experimental and theoretical results, which together show that within-individual variation can strongly affect model projections of species dispersal, have important implications for our broader understanding of population spread rates, the spatial structure of populations, metapopulation connectivity and gene flow in the landscape.
机译:尽管事实上种子的可能性不大,即使是在同母异母兄弟姐妹之间,但传播模型通常使用一个平均性状值来代表整个物种的传播能力。先前的工作表明,个体离开母体的环境条件强烈影响种子的传播距离。但是,人们对个体内的性状变异如何影响传播或这种变异如何与非生物因子相互作用的了解还很少。在这里,我们开发了一种测功机,用于研究种子性状的变异,特别是入侵种Carduus nutans(Asteraceae)母头内不同位置的种子表现出的种子脱落和种子终末速度所需的力。我们发现,与在Capitula边缘附近发现的兄弟姐妹相比,来自capitula中心的种子更容易释放,并且下降速度较慢。当脱落力与终极速度呈正相关时,在慢风下,中心种子比边缘种子移动得更远,容易下落,容易脱落。我们的实验和理论结果共同表明,个体内部的变化会严重影响物种扩散的模型预测,这对我们对种群扩散率,种群的空间结构,亚种群连通性和景观中的基因流的更广泛理解具有重要意义。

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