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Demography and Management of the Invasive Plant Species Hypericum perforatum. I. Using Multi-Level Mixed-Effects Models For Characterizing Growth, Survival and Fecundity in a Long-Term Data Set

机译:入侵植物贯叶金丝桃的人口统计学和管理。 I.在长期数据集中使用多级混合效应模型表征生长,存活和生殖力

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摘要

1. Hypericum perforatum , St Johnu27s wort, is an invasive perennial herb that is especially problematic on waste ground, roadsides, pastures and open woodland in south-eastern Australia. We use detailed data from a long-term observational study to develop quantitative models of the factors affecting growth, survival and fecundity of H. perforatum individuals. 2. Multi-level or hierarchical mixed-effects statistical models are used to analyse how environmental and intrinsic plant variables affect growth and reproduction within a complex nested spatial and temporal context. These techniques are relatively underused in ecology, despite the prevalence of multi-level and repeated-measures data generated from ecological studies. 3. We found that plant size (rosette or flowering stems) was strongly correlated with all life stages studied (growth, probability of flowering, asexual reproduction, survival and fruit production). Environmental variables such as herbivory, ground cover and rainfall had significant effects on several life stages. 4. Significant spatial variation at the quadrat level was found in the probability of flowering, flowering stem growth and fruit production models; variation at all other spatial levels in all models was non-significant. Yearly temporal variation was significant in all models where multi-year data were available. 5. Plants in shaded habitats were smaller but had higher survival probabilities than plants in open habitats. They are therefore likely to have slightly different population dynamics. 6. Synthesis and applications. Analysis of these models for H. perforatum has provided insights into which plant traits and environmental factors determine how populations increase and persist in exotic ecosystems, enabling population management strategies to be most effectively targeted. Spatially and temporally correlated data are often collected in long-term ecological studies and multi-level models are a way in which we can fully exploit the wealth of data available. Without these tools data are either underexploited or crucial assumptions of independence on which many statistics are based are contravened
机译:1.贯叶连翘,圣约翰草,是一种侵入性多年生草本植物,在澳大利亚东南部的荒地,路边,牧场和开阔的林地上尤其成问题。我们使用来自长期观察性研究的详细数据来开发影响贯叶连翘个体生长,存活和繁殖力的因素的定量模型。 2.使用多层次或分层的混合效应统计模型来分析环境和内在植物变量如何在复杂的嵌套时空环境中影响生长和繁殖。尽管从生态学研究中获得了多层次和重复测量的数据,但这些技术在生态学中相对未被充分利用。 3.我们发现植物的大小(莲座状或开花茎)与研究的所有生命阶段(生长,开花的可能性,无性繁殖,存活和果实产量)密切相关。诸如草食,地面覆盖和降雨等环境变量对几个生命阶段都有重大影响。 4.在开花的概率,开花茎的生长和果实生产模型中发现了在方型水平上的显着空间变化;在所有模型中,所有其他空间级别的变化均不显着。在可获得多年数据的所有模型中,每年的时间变化都很大。 5.在阴凉的栖息地中的植物比在空旷的栖息地中的植物更小,但具有更高的生存概率。因此,他们的人口动态可能会略有不同。 6.综合与应用。对贯叶连翘的这些模型的分析提供了有关哪些植物性状和环境因素决定种群如何在外来生态系统中增加和维持的见解,从而使种群管理策略成为最有效的目标。时空相关数据通常是在长期生态研究中收集的,而多层次模型是我们可以充分利用可用数据的一种方法。没有这些工具,数据要么被利用不足,要么违反了许多统计数据所基于的独立性的关键假设。

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