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The potential for tropical restoration legume and non-legume trees to suppress the invasive C4 grass Saccharum spontaneum in Panama.

机译:热带恢复性豆科植物和非豆科树木抑制巴拿马入侵性C4草Saccharum spontaneum的潜力。

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摘要

Saccharum spontaneum L. subsp. spontaneum is a large, exotic C4 grass species that invades abandoned agricultural fields in many tropical countries and can prevent natural forest regeneration. In Panama, studies on restoration of areas dominated by S. spontaneum have focused on identifying trees that establish readily after S. spontaneum removal. Few studies have evaluated how planted trees can suppress subsequent regeneration of S. spontaneum.;This dissertation focused on how legume and non-legume trees planted for restoration alter light availability and soil chemistry, and the influence of those effects on S. spontaneum suppression. In addition, I explored the potential use of agricultural legumes to suppress S. spontaneum through nutrient competition. Finally, I examined potential for using allelopahty as a tool for forest restoration and exotic species management both through a review of the literature and green house experiments.;I evaluated the response of S. spontaneum along a gradient of understory light conditions in single species plots of trees planted for restoration. S. spontaneum regeneration after planting restoration trees was most limited by light availability. Legume trees produce deeper shade than non-legume trees, and were more efficient at suppressing S. spontaneum. In addition, legume overstory species suppressed S. spontaneum abundance beyond the expected reductions associated with shade. S. spontaneum is nitrogen and phosphorus co-limited in our system in the absence of competition. However, although we find trends towards higher soil nitrogen and lower phosphorus under legume trees, greenhouse and field experiments provided weak evidence for both phosphorus competition and allelopathy to play roles in S. spontaneum suppression.;Overall, results emphasize the value of incorporating legume trees into restoration plantings where invasive S. spontaneum suppression is desired. Restoration practitioners should consider establishing mixed species stands dominated by legume tree species when reforesting areas dominated by S. spontaneum to expedite the reforestation process.
机译:糖蔗糖亚种自发性植物是一种大型的外来C4草种,它入侵了许多热带国家的废弃农业领域,并可能阻止天然森林的再生。在巴拿马,关于恢复以自发链球菌为主的地区的研究集中于确定在去除自发链球菌后容易建立的树木。很少有研究评估种植的树木如何抑制自发链球菌的再生。本论文着眼于种植用于恢复的豆类和非豆类树木如何改变光的利用率和土壤化学性质,以及这些效应对自发链球菌抑制的影响。此外,我探索了通过营养竞争来抑制豆类自发链球菌的农用豆类的潜在用途。最后,我通过回顾文献和温室实验,研究了将化石作用作为森林恢复和外来物种管理工具的潜力。;我评估了单物种地块中自发链球菌在地下光照条件下的响应恢复种植的树木。种植恢复树后,自然发光链球菌的再生受到光的可用性的最大限制。豆科树木比非豆科树木产生更深的阴影,并且在抑制自发链球菌方面更有效。此外,豆科植物的过度故事种抑制了自发链球菌的丰度,超出了与阴影相关的预期减少量。在没有竞争的情况下,自发链球菌在我们的系统中是氮和磷共同限制的。然而,尽管我们发现豆科植物树下土壤氮含量较高和磷含量较低的趋势,但温室和田间试验为磷竞争和化感作用在抑制自发链球菌中的作用提供了薄弱的证据。到需要抑制入侵性自发链球菌的恢复种植中。当以自然发芽链球菌为主的造林地区时,恢复从业人员应考虑建立以豆类树种为主的混交种林,以加快造林进程。

著录项

  • 作者

    Cummings, Justin A.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Biology Botany.;Biology Ecology.;Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:08

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