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首页> 外文期刊>Mycorrhiza >Afforestation of abandoned farmland with conifer seedlings inoculated with three ectomycorrhizal fungi—impact on plant performance and ectomycorrhizal community
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Afforestation of abandoned farmland with conifer seedlings inoculated with three ectomycorrhizal fungi—impact on plant performance and ectomycorrhizal community

机译:接种了三种外生菌根真菌的针叶树幼苗对退耕地的绿化-对植物性能和外生菌根群落的影响

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摘要

The aim of a 3-year study was to investigate whether inoculation of Pinus sylvestris L. and Picea abies (L.) Karst. seedlings with mycorrhizas of Cenococcum geophilum Fr., Piceirhiza bicolorata, and Hebeloma crustuliniforme (Bull.) Quel. has any impact on: 1) survival and growth of outplanted seedlings on abandoned agricultural land, and 2) subsequent mycorrhizal community development. For inoculation, the root system of each plant was wrapped in a filter paper containing mycelium, overlaid with damp peat–sand mixture and wrapped in a paper towel. In total, 8,000 pine and 8,000 spruce seedlings were planted on 4-ha of poor sandy soil in randomized blocks. Already after the first year natural mycorrhizal infections prevailed in the inoculated root systems, and introduced mycorrhizas were seldom found. Yet, the seedlings that had been pre-inoculated with C. geophilum and the P. bicolorata during the whole 3-year period showed significantly higher survival and growth as compared to controls. Moreover, the independent colonization of roots by C. geophilum and the P. bicolorata from natural sources was also observed. A diverse mycorrhizal community was detected over two growing seasons in all treatments, showing low impact of inoculation on subsequent fungal community development. A total of 19 additional ectomycorrhizal morphotypes was observed, which clustered into two well-separated groups, according to host tree species (pine and spruce). In conclusion, the results showed limited ability to increase tree survival and growth, and to manipulate the mycorrhizal community even by extensive pre-inoculations, indicating that fungal community formation in root systems is governed mainly by environmental factors.
机译:一项为期三年的研究的目的是调查是否对樟子松和云杉云杉喀斯特进行了接种。带有Cenococcum geophilum Fr.,Piceirhiza bicolorata和Crustuliniforme(Bull。)Quel菌根的菌根。对以下方面有任何影响:1)在废弃的农田上外植幼苗的存活和生长,以及2)随后的菌根群落发展。为了进行接种,将每种植物的根系包裹在含有菌丝体的滤纸中,并用湿的泥炭-沙子混合物覆盖,然后包裹在纸巾中。在4公顷贫瘠的沙质土壤上,随机分组种植了8,000棵松树和8,000棵云杉幼苗。在第一年之后,自然的菌根感染已经在接种的根系中普遍存在,并且很少发现引入的菌根。然而,与对照相比,在整整3年的时间里预先接种了Geophilum和Bicolorata的幼苗显示出更高的存活率和生长率。此外,还观察到地衣梭菌和双色假单胞菌根源自然来源的独立定殖。在所有处理中,在两个生长季节中均检测到了不同的菌根群落,显示接种对随后的真菌群落发育的影响很小。根据寄主树种(松树和云杉),共观察到另外19种外生菌根形态型,这些形态型分为两个完全分开的组。总之,结果表明,即使通过广泛的预先接种,增加树木存活和生长以及操纵菌根群落的能力有限,这表明根系中的真菌群落形成主要受环境因素支配。

著录项

  • 来源
    《Mycorrhiza》 |2007年第4期|337-348|共12页
  • 作者单位

    Department of Forest Mycology and Pathology Swedish University of Agricultural Sciences P.O. Box 7026 SE-750 07 Uppsala Sweden;

    Department of Forest Mycology and Pathology Swedish University of Agricultural Sciences P.O. Box 7026 SE-750 07 Uppsala Sweden;

    Department of Forest Mycology and Pathology Swedish University of Agricultural Sciences P.O. Box 7026 SE-750 07 Uppsala Sweden;

    Department of Forest Mycology and Pathology Swedish University of Agricultural Sciences P.O. Box 7026 SE-750 07 Uppsala Sweden;

    Department of Forest Mycology and Pathology Swedish University of Agricultural Sciences P.O. Box 7026 SE-750 07 Uppsala Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cenococcum; Piceirhiza; Hebeloma; Pinus sylvestris; Picea abies;

    机译:Cenococcum;Piceirhiza;Hebeloma;樟子松;云杉;

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