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Seed dispersal and reproduction patterns among Everglades plants.

机译:大沼泽地植物之间的种子传播和繁殖方式。

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In this study three aspects of sexual reproduction in Everglades plants were examined to more clearly understand seed dispersal and the allocation of resources to sexual reproduction---spatial dispersal process, temporal dispersal of seeds (seedbank), and germination patterns in the dominant species, sawgrass (Cladium jamaicense). Community assembly rules for fruit dispersal were deduced by analysis of functional traits associated with this process. Seedbank ecology was investigated by monitoring emergence of germinants from sawgrass soil samples held under varying water depths to determine the fate of dispersed seeds. Fine-scale study of sawgrass fruits yielded information on contributions to variation in sexually produced propagules in this species, which primarily reproduces vegetatively.It was hypothesized that Everglades plants possess a set of functional traits that enhance diaspore dispersal. To test this, 14 traits were evaluated among 51 species by factor analysis. The factorial plot of this analysis generated groups of related traits, with four suites of traits forming dispersal syndromes. Hydrochory traits were categorized by buoyancy and appendages enhancing buoyancy. Anemochory traits were categorized by diaspore size and appendages enhancing air movement. Epizoochory traits were categorized by diaspore size, buoyancy, and appendages allowing for attachment. Endozoochory traits were categorized by diaspore size, buoyancy, and appendages aiding diaspore presentation. These patterns/trends of functional trait organization also represent dispersal community assembly rules.Seeds dispersed by hydrochory were hypothesized to be caught most often in the edge of the north side of sawgrass patches. Patterns of germination and dispersal mode of all hydrochorous macrophytes with propagules in the seedbank were elucidated by germination analysis from 90 soil samples collected from 10 sawgrass patches. Mean site seed density was 486 seeds/m2 from 13 species. Most seeds collected at the north side of patches and significantly in the outer one meter of the patch edge (p = 0.013).Sawgrass seed germination was hypothesized to vary by site, among individual plants, and within different locations of a plant's infructescence. An analysis of sawgrass fruits with nested ANOVAs found that collection site and interaction of site x individual plant significantly affect germination ability, seed viability, and fruit size (p &le 0.050). Fruit location within a plant's infructescence did not significantly affect germination.As for allocation of resources to sexual reproduction, only 17.9% of sawgrass seeds germinated and only 4.8% of ungerminated seeds with fleshy endosperm were presumed viable, but dormant. Collectively, only 22% of all sawgrass seeds produced were viable.
机译:在这项研究中,对大沼泽地植物的有性生殖的三个方面进行了研究,以更清楚地了解种子的扩散和资源对有性生殖的分配-空间扩散过程,种子的时间扩散(种子库)和优势种的发芽模式,锯齿草(Cladium jamaicense)。通过分析与此过程相关的功能性状,推导了水果散布的社区组装规则。通过监测在不同水深下保存的锯齿草土壤样品中萌发剂的出现来研究种子库的生态,以确定分散种子的命运。锯齿草果实的精细研究提供了有关该物种有性繁殖体的变异的信息,这些繁殖体主要是无性繁殖。据推测,大沼泽地植物具有一系列可增强硬孢子扩散的功能性状。为了检验这一点,通过因子分析对51个物种中的14个性状进行了评估。此分析的阶乘图生成了相关性状的组,其中四组性状形成了弥散综合症。水力性状按浮力和附肢增强浮力分类。防风性状按硬毛细孔大小和附肢增强空气流动性进行分类。附睾的性状是按毛孔大小,浮力和附肢进行分类的。内吞性的特征是按大孔的大小,浮力和附有大孔的外观进行分类的。这些功能性状组织的模式/趋势也代表了分散群落的聚集规则。据推测,通过水力发芽分散的种子最容易被捕获在锯齿草斑块北侧的边缘。通过从10个锯齿草斑块收集的90个土壤样品中进行发芽分析,阐明了种子库中所有带有繁殖体的水生大型植物的发芽模式和分散模式。 13种植物的平均种子密度为486种子/ m2。多数种子收集在斑块的北侧,且明显在斑块边缘的外一米处(p = 0.013)。据推测,禾本科种子的发芽会因地点,单个植物以及在植株的不同部位而异。对带有嵌套方差分析的锯齿果的分析发现,单个植物的收集位点和位点x的相互作用会显着影响发芽能力,种子活力和果实大小(p&le 0.050)。在植物的花序内的果实位置对发芽没有显着影响。关于有性繁殖的资源分配,据推测只有17.9%的锯齿草种子发芽,只有4.8%的未发芽种子具有肉质胚乳,但仍处于休眠状态。总体而言,生产的所有锯齿草种子中只有22%可行。

著录项

  • 作者

    Mossman, Ronald E.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Biology Botany.Biology Ecology.Environmental Management.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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