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首页> 外文期刊>Functional Ecology >Maternal environmental effects on fitness, fruit morphology and ballistic seed dispersal distance in an annual forb
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Maternal environmental effects on fitness, fruit morphology and ballistic seed dispersal distance in an annual forb

机译:年度环境中母体环境对健康,水果形态和弹道种子传播距离的影响

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1. Adaptive phenotypic plasticity enables plant lineages to match trait expression to contemporary environmental conditions, while maternal environmental effects arise in response to environmental factors encountered in the previous generation. Maternal effects on seed dispersal distance in spatially structured habitats could determine the level of microenvironmental variation encountered by a lineage across generations. 2. We conducted a greenhouse experiment that spanned three generations to assess the relationship between variation in maternal phenotype and seed dispersal distance, maternal environmental effects on fitness in response to variation in nutrient availability across generations, fruit morphology, and seed dispersal distance in populations of an invasive annual forb Erodium cicutarium growing on serpentine and non-serpentine soils. Macro- and micronutrient availability is lower on serpentine soils than surrounding non-serpentine soils and result in a significant source of stress for plants growing on serpentine soils. 3. The combined effects of maternal and offspring environment on the fitness of E. cicutarium were substantial. We demonstrated a positive relationship between fruit length and ballistic dispersal distance, and found no evidence for a trade-off between fruit length and seed number in either high- or low-nutrient environments. The maternal environment had a significant effect on the mean ballistic seed dispersal distance such that lineages exposed to consistent nutrient availability across generations disperse their seeds significantly farther than lineages exposed to environmental heterogeneity. Although lineages exposed to different environments across generations on average dispersed their seeds shorter distances, there was a marginally non-significant trend for greater variance in dispersal distance in response to environmental heterogeneity than lineages exposed to consistent environments across generations. On average, lineages from non-serpentine source populations had significantly greater variance in dispersal distance than serpentine lineages. 4. This pattern of maternal effects on mean seed dispersal distance, and the observed trend for maternal effects on the breadth of the dispersal kernel, could be adaptive in the mosaic serpentine soil landscape where E. cicutarium was collected. However, field experiments are needed to rigorously demonstrate the fitness consequences of maternal environmental effects on seed dispersal.
机译:1.适应性表型可塑性使植物谱系能够使性状表达与当代环境条件相匹配,而母体环境效应则是对上一代所遇到的环境因素的响应。母体对空间结构化栖息地中种子传播距离的影响可能决定世代世系沿袭的微环境变异水平。 2.我们进行了一个横跨三代的温室实验,以评估母本表型变异与种子传播距离,母本环境对适应性的响应,以及不同代代之间的养分利用率,水果形态和种子在种子种群中的传播距离之间的关系。在蛇纹石和非蛇纹石土壤上生长的一年生有入侵性的Erodium cicutarium。蛇纹石土壤中的宏观和微量营养素利用率低于周围的非蛇纹石土壤,并为在蛇纹石土壤上生长的植物带来了重要的压力来源。 3.母体和后代环境对西葫芦的适应性综合影响很大。我们证明了果实长度与弹道扩散距离之间存在正相关关系,并且没有发现在高营养或低营养环境下果实长度与种子数量之间进行权衡的证据。母体环境对弹道种子的平均散布距离有显着影响,因此世代承受一致的养分利用率的世代比其环境异质性传承的种子散布得多。尽管平均世代暴露在不同环境下的血统使它们的种子分散的距离更短,但与世代一致环境下暴露于世代环境的血统相比,响应环境异质性的散布距离方差有一个不显着的显着趋势。平均而言,非蛇形血统种群的血统比蛇形血统的血统散布距离差异大得多。 4.这种对平均种子传播距离的母体效应模式和观察到的母体效应对种子核宽度分布的趋势,可能适用于收集了金眼葡萄球菌的镶嵌蛇形土壤景观。但是,需要进行现场试验以严格证明母体环境影响种子扩散的适应性后果。

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