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首页> 外文期刊>Preslia >Testing community assembly predictions for nominal and continuous plant traits in species-rich grasslands. (Special Issue: Current topics in clonal plants research.)
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Testing community assembly predictions for nominal and continuous plant traits in species-rich grasslands. (Special Issue: Current topics in clonal plants research.)

机译:在物种丰富的草原上测试群落组装对名义和连续植物性状的预测。 (特刊:克隆植物研究的当前主题。)

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摘要

We investigated patterns of trait-based community assembly in grasslands sampled along a moisture gradient (216 species) using three continuous species-level traits (maximum species height, minimum species height, seed mass), as well as seven nominal traits (flowering phenology, fruit type, pollen vector, clonal growth organs - CGOs, branching type, leaf distribution, lateral spread), some of which are unusual in that a species may possess more than one state per trait simultaneously (e.g. CGO). Additionally, this study tests whether patterns of assembly vary with plot biomass and moisture using both presence-absence and abundance-weighted analyses (two plot sizes: 25x25 cm, 75x75 cm). Plant species in these grasslands were randomly organized with respect to both maximum and minimum species height; however, coexisting plant species had a significantly smaller mean seed mass than expected by chance, and were significantly convergent in seed mass, consistent with observations from one previous study, and with theory related to environmental or competitive filtering. These patterns were consistent across plot sizes, and were similar whether analyses were abundance-weighted or not, although partitioned analyses show that these patterns are most pronounced in wet grasslands. Grasslands were non-randomly assembled with respect to five of our ten traits including seed mass, fruit type, CGO, branching type and leaf distribution. Among these, only patterns of branching type clearly conformed to the predictions from Limiting Similarity Theory, suggesting that variation in this trait may contribute to species coexistence in these grasslands. In two cases (fruit type, branching type), results differed in significance depending on whether analysis used presence-absence or abundance data; incorporating abundance may be more relevant, however, cover-based abundance measures in small plots can bias trait representation in favour of size over ramet number. In general, patterns were consistent across the two plot sizes. For four traits (seed mass, flowering phenology, leaf distribution and lateral spread) plot-level effect sizes of our tests varied significantly with plot-level biomass production; the slope of these relationships was positive for seed mass, but negative for flowering phenology, leaf distribution and lateral spread. For seven of ten traits, plot-level effect sizes varied significantly with plot-level soil moisture, with positive regression slopes for some traits (flowering phenology, leaf distribution), and negative slopes for others (minimum height, seed mass, fruit type, pollen vector, CGO). These results indicate that community assembly rules related to different functional traits can be responsive to variation in either biomass or soil moisture, or both.
机译:我们使用三个连续的物种水平特征(最大物种高度,最小物种高度,种子质量)以及七个名义特征(开花物候,果实类型,花粉载体,克隆生长器官-CGO,分支类型,叶片分布,侧向传播),其中一些是不寻常的,因为一个物种可能同时具有每个性状的多个状态(例如CGO)。此外,本研究使用存在与不存在和丰度加权分析(两种样地大小:25x25 cm,75x75 cm)来测试样地生物量和湿度是否会改变组装模式。这些草原上的植物物种是根据最大和最小物种高度随机组织的。但是,与先前的一项研究以及与环境或竞争性过滤有关的理论相一致,共存的植物物种的平均种子质量比偶然预期的要小得多,并且在种子质量上也有显着的收敛。这些模式在样地大小上是一致的,无论是否进行了丰度加权,这些模式都是相似的,尽管分区分析显示这些模式在湿地草原上最为明显。就我们的十个性状中的五个而言,草原是非随机聚集的,包括种子质量,果实类型,CGO,分支类型和叶片分布。其中,只有分枝类型的模式明显符合有限相似理论的预测,这表明该性状的变异可能有助于这些草地物种共存。在两种情况下(水果类型,分支类型),结果的显着性有所不同,具体取决于分析使用的是存在数据还是丰度数据。合并丰度可能更相关,但是,在小块土地上基于覆盖度的丰度度量可能会使特征表示偏向于大小而不是分株数。通常,在两个样区大小上,模式是一致的。对于四个性状(种子质量,开花物候,叶片分布和侧向蔓延),我们试验的样地效应大小随样地生物量的产生而显着不同。这些关系的斜率对种子质量呈正相关,对开花物候,叶片分布和侧向传播呈负相关。对于十个性状中的七个,地积效应大小随地积土壤湿度的变化而显着变化,某些性状(开花物候,叶片分布)的回归斜率正,而其他性状的负回归斜率(最小高度,种子质量,果实类型,花粉载体,CGO)。这些结果表明,与不同功能性状有关的社区装配规则可以响应生物量或土壤水分或两者的变化。

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