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描述、鉴定和不同石灰含量下共生有 Tuber borchii Vittad. 的 Pinus sylvestris L. 幼苗的生长。

Description, identification, and growth of Tuber borchii Vittad. mycorrhized Pinus sylvestris L. seedlings on different lime contents.

机构信息

Department of Forest Physiology and Genetics, Slovenian Forestry Institute, Večna pot 2, 1000, Ljubljana, Slovenia.

Truffle Nursery, Schneckleinsberg 5, 91788, Pappenheim, Germany.

出版信息

Mycorrhiza. 2024 Apr;34(1-2):85-94. doi: 10.1007/s00572-023-01135-3. Epub 2024 Jan 18.

Abstract

Tuber borchii forms ectomycorrhiza with oaks, hazel, and pines, including Pinus sylvestris. However, its ectomycorrhiza morphotype with P. sylvestris was not comprehensively described so far, and molecular analyses are missing despite a high danger of misidentification of T. borchii ectomycorrhiza with other closely related and less valuable truffle species. We described for the first time the morphology and anatomy of T. borchii-P. sylvestris ectomycorrhiza using differential interference contrast technique and semi-thin sections in combination with molecular confirmation of identity. Color of ectomycorrhiza is reddish to dark brown, and morphotypes are unevenly but densely covered by warts-bearing pin-like cystidia. All layers of the hyphal mantle are pseudoparenchymatous with outer mantle layer formed of epidermoid cells. T. borchii ectomycorrhiza was identified by a molecular comparison with fruitbodies used for inoculation and its respective ectomycorrhizae. T. borchii has a wide ecological amplitude. To get a better insight in mycorrhization requirements, we investigated growth of P. sylvestris and its ectomycorrhiza infection rate with T. borchii in substrate with different lime content. The mycorrhization of P. sylvestris with T. borchii in the mycorrhization substrate and cultivation in greenhouse conditions was successful, with colonization of P. sylvestris varying between 36.5 and 48.1%. There was no significant correlation of mycorrhization to applied lime contents, and consequently to pH in substrate, while the increased levels of lime improved growth of the P. sylvestris seedlings.

摘要

块菌与橡树、榛树和松树(包括欧洲赤松)形成外生菌根,但与欧洲赤松的外生菌根形态尚未得到全面描述,尽管块菌外生菌根与其他亲缘关系密切但价值较低的块菌物种容易混淆,存在很高的鉴定错误风险,但仍缺乏分子分析。我们首次使用微分干涉对比技术和半薄切片结合分子鉴定,描述了块菌-欧洲赤松外生菌根的形态和解剖结构。外生菌根的颜色为红棕色到深棕色,形态不均匀但密集地覆盖着有疣的针状囊状担子。菌丝套的所有层都是假薄壁组织,外层由表皮细胞组成。通过与用于接种的子实体及其相应的外生菌根进行分子比较,鉴定了块菌外生菌根。块菌具有广泛的生态幅度。为了更好地了解共生的要求,我们研究了不同石灰含量基质中欧洲赤松的生长及其与块菌的外生菌根感染率。在共生基质中,欧洲赤松与块菌的共生以及在温室条件下的栽培是成功的,欧洲赤松的定植率在 36.5%至 48.1%之间变化。外生菌根与施加石灰的含量之间没有显著的相关性,因此与基质中的 pH 也没有相关性,而石灰水平的提高则改善了欧洲赤松幼苗的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f7a/10998771/6f30576bbe6d/572_2023_1135_Fig1_HTML.jpg

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