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Post-fire Successions of Vegetation and Pinus koraiensis Ectomycorrhizal Communities in Korean Pine–Broadleaf Forests of the Central Sikhote-Alin

机译:锡科特-阿林中部红松阔叶林的植被和红松松材外生菌根群落火灾后演替

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Abstract The characteristics of four stages of demutational succession of a valley Korean pine–broadleaf forest are provided according to the parameters most vividly capturing the structure of the plant community and influencing the renewal and mycorrhization of Korean pine (Pinus koraiensis) seedlings. It was found that Korean pine seedlings grow in a competitive environment on the fresh burned site; hence the mycorrhization occurs from specialized symbiotes that provide competitive advantages and adaptation to stress factors. Mycorrhiza forms the least successful in the 50–60-year-old larch–birch–spiraea association during the seral stages of succession. The 90–100-year-old birch–broadleaf association offers the most suitable soil and cenotic conditions for the development of Korean pine seedlings that can successfully generate mycorrhiza from both the spores present in the thick soil layer, and through mycelia of shared mycorrhizal networks of seral and primary (including Korean pine) tree species. A 230–250-year-old climax community comprises all patterns to ensure that pine seedlings encounter a fungal component; in this community the greatest abundance of species and a balanced composition of ectomycorrhizal fungi communities of Korean pine are observed.
机译:摘要根据能最生动地捕捉到植物群落结构并影响红松幼苗更新和菌根的参数,给出了山谷红松阔叶林forest体演替的四个阶段特征。结果发现,在新鲜燃烧的地方,红松苗在竞争环境中生长。因此,菌根的产生是由具有竞争优势并适应压力因素的特殊共生体引起的。在连续演替的血清阶段,菌根形成在50-60岁的落叶松-桦木-螺旋藻协会中最不成功。有着90-100年历史的桦木-阔叶植物协会为红松幼苗的生长提供了最合适的土壤和土壤条件,它们可以成功地从厚土层中存在的孢子以及通过共享菌根网络的菌丝体成功产生菌根浆养和原生(包括红松)树种。一个230-250年的高潮群落包括所有模式,以确保松树幼苗遇到真菌。在这个群落中,观察到最大的物种丰富度和红松外生菌根真菌群落的平衡组成。

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