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首页> 外文期刊>Fungal Ecology >Sibling spore isolates of Tricholoma matsutake vary significantly in their ectomycorrhizal colonization abilities on pine hosts in vitro and form multiple intimate associations in single ectomycorrhizal roots
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Sibling spore isolates of Tricholoma matsutake vary significantly in their ectomycorrhizal colonization abilities on pine hosts in vitro and form multiple intimate associations in single ectomycorrhizal roots

机译:在体外,在杉木宿主的外菌腐败性殖民化能力中,孢子孢子孢子分离株显着变化显着变化,并在单胞外毒性根部形成多种贴心联想

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摘要

Tricholoma matsutake is a commercially important edible ectomycorrhizal mushroom. The ecology of this species has emerged from studies of the genetic background of mycelial colonies in nature. Single putative colonies sometimes comprise several genets. This complex mycelial structure should be subjected to analysis to determine its ecophysiological significance. We tested the ectomycorrhization ability of nine T. matsutake sibling spore isolates. The ectomycorrhizal colonization ratio differed significantly among isolates, and was dependent on the soil nitrogen content. Mixed inoculations of three selected isolates into soils in which single pine seedlings were grown showed that the isolates interacted in the seedling roots. Paired inoculations of isolates #52/#99 and #52/#84, and a triple inoculation of isolates #52/#84/#99 resulted in levels of ectomycorrhizal colonization that significantly exceeded the colonization levels following single isolate inoculation. We suggest that mycelial interaction between sibling isolates is a significant phenomenon that operates within individual ectomycorrhizal pine root tips. (C) 2019 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:Tricholoma Matsutake是一个商业上重要的食用菌腐败蘑菇。本物种的生态学已经出现了对本质上菌丝菌群遗传背景的研究。单个推定的菌落有时包括几种类型。应该对这种复杂的菌丝体结构进行分析以确定其生态学意义。我们测试了九吨松树兄弟孢子分离株的闭塞能力。分离株中的闭经癌结肠化率显着差异,并且依赖于土壤氮含量。将三种选定的分离物的混合接收到种植单一松树幼苗的土壤中显示出在幼苗根中相互作用的分离物。分离物与分离物#52 /#99和#52 /#84的成对接种导致分离物#52 /#84 /#99的三重接种导致突出菌殖民化的水平显着超过单分离酸盐接种后显着超过定植水平。我们建议兄弟姐妹分离物之间的菌丝体相互作用是在单个突出的松树根尖内运作的显着现象。 (c)2019年Elsevier Ltd和英国Mycological社会。版权所有。

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