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Factors influencing the distribution, growth and infectivity of Casuarina-infective Frankia.

机译:影响木麻黄感染性Frankia分布,生长和感染性的因素。

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摘要

Soil dose to nitrogen-fixing actinorhizal plants have greater Frankia infectious capacity. In contrast to most frankiae, Casuarina-infective Frankia are usually not found outside the native range of Casuarina. The lack of Casuarina-infective Frankia beyond a zone of host influence led me to hypothesize that Casuarina may affect the growth and infectivity of its symbiont in soils. In a model system representing possible host influences on the soil environment I used a series of baiting studies with Casuarina seedlings as Frankia traps, cultured isolates of Frankia and other soil microorganisms, DNA analysis of microsymbionts, and analysis of soil chemical properties, to find supporting evidence for this hypothesis. An initial baiting study with Casuarina and Myrica seedlings revealed Casuarina-infective Frankia was detectable only in soils collected less than 20 m from Casuarina trees. Soils near Casuarina trees also had higher levels of micro- and macro-nutrients and organic matter. Frankia in Casuarina nodules was in the Casuarina “type 1” group, whereas Frankia in the Myrica nodules was not in the Casuarina group.; The growth of diverse Frankia isolates was stimulated by aqueous extracts of various Casuarina cunninghamiana tissue types. Green cladodes stimulated the growth of Casuarina-derived Frankia strains more than the other Frankia strains tested. Cladode extracts stimulated the growth of cultures of the actinomycete, Streptomyces albus, and the fungus, Rhizopus homothallicus . The growth of five other common isolates of soil microorganisms was either inhibited or unaffected by experimental addition of cladode extracts.; Further studies revealed that Casuarina cladodes increased the infectivity of a soil inoculum by a factor of 3.2, whereas leaves of a sympatric check plant, Terminalia catappa (Combretaceae), barely increased the same soil's infectivity. Charcoal and clay added to the seedling growth substrate to bind organic material significantly inhibited nodulation of C. cunninghamiana by a Frankia isolate, suggesting the host may release compounds necessary to the nodulation process. In a final study, the infectivity of soils inoculated with Frankia isolate CjI82001 decreased over time, whereas infectivity of soils without inoculum either increased or remained unaffected. A positive synergism was observed between the Frankia isolate and the soil biotic community, resulting in an increased infectivity of the Frankia isolate.
机译:固氮放线植物的土壤剂量具有更大的 Frankia 感染能力。与大多数弗兰科菌相反,通常不会在木麻黄属植物(italic)的天然范围内发现感染木麻黄属植物(italua) Frankia 。超出宿主影响区的木麻黄感染性 Frankia 的缺乏,使我推测 Casuarina 可能会影响其共生体的生长和感染力。土壤。在一个表示宿主对土壤环境可能影响的模型系统中,我使用了一系列诱饵研究,使用木麻黄幼苗作为 Frankia 陷阱,培养了 Frankia 和其他土壤微生物,微共生菌的DNA分析以及土壤化学性质分析,以找到支持该假说的证据。最初用木麻黄 Myrica 诱饵进行的研究表明,仅在收集的土壤中,木麻黄感染性的 Frankia 是可检测的。距 Casuarina 树木20 m。木麻黄属植物附近的土壤中的微量营养素和大量营养素以及有机质含量也较高。 Casuarina 结节中的 Frankia Casuarina “ type 1”组中,而 Frankia Myrica中结节不在 Casuarina 组中。各种 Casuarina cunninghamiana 组织类型的水提物刺激了各种 Frankia 分离株的生长。与测试的其他 Frankia 菌株相比,绿色枝条对源自 Casuarina Frankia 菌株的生长刺激更大。克拉德提取物刺激了放线菌,白色链霉菌和真菌, Hhizopus homothallicus 的培养物的生长。实验中添加了柱状提取物后,其他五种常见的土壤微生物分离株的生长受到抑制或不受影响。进一步的研究表明, Casuarina 枝条使土壤接种物的感染力增加了3.2倍,而同伴检疫植物 catinpa (Combretaceae)的叶片几乎没有增加同一土壤的传染性。将木炭和粘土添加到幼苗生长基质中以结合有机材料会显着抑制 C的结瘤。 Frankia 分离株的Cunninghamiana ,表明宿主可能释放结瘤过程中必需的化合物。在一项最终研究中,接种 Frankia CjI82001的土壤的感染力随着时间的推移而降低,而没有接种物的土壤的感染力要么增加,要么不受影响。在 Frankia 分离株和土壤生物群落之间观察到积极的协同作用,从而导致 Frankia 分离株的感染力增加。

著录项

  • 作者

    Zimpfer, Jeff Frederick.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Biology Plant Physiology.; Biology Ecology.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;生态学(生物生态学);土壤学;
  • 关键词

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