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首页> 外文期刊>Journal of Yeast and Fungal Research >Interactions between multiple fungi isolated from two bark beetles, Dendroctonus brevicomis and Dendroctonus frontalis (Coleoptera: Curculionidae)
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Interactions between multiple fungi isolated from two bark beetles, Dendroctonus brevicomis and Dendroctonus frontalis (Coleoptera: Curculionidae)

机译:从两个树皮甲虫,短小end虫和额叶front(鞘翅目:Curculionidae)分离的多种真菌之间的相互作用

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Antagonism between the fungal symbionts of bark beetles may represent a biologically significant interaction when multiple beetle species co-occur in a host tree. Since high density bark beetle populations rapidly and dramatically shift forest characteristics, patterns of competition between the obligate fungal associates of sympatric bark beetle species may have broad ecological effects.? Primary and competitive resource acquisition between allopatric and sympatric isolates of mutualist fungi associated with the bark beetles?Dendroctonus frontalis?andDendroctonus brevicomis?were investigated. Growth assays at multiple temperatures suggest that primary resource acquisition by fungi growing in the absence of competitors varies regionally, and that optimal growth rate is likely to correspond to average summertime maximum temperatures. In competition assays, interactions were asymmetric between fungi isolated from sympatric beetle populations and fungi isolated from allopatric beetle populations: sympatric isolates out-competed allopatric isolates. However, competition between fungi from beetle populations in sympatry was found to be equal. These studies are the first to investigate interactions between the mycangial fungi of multipleDendroctonus?species, and the results suggest that competition is likely to occur when the mycangial fungi of multiple beetle species occur together.
机译:当寄主树中同时存在多种甲虫时,树皮甲虫的真菌共生体之间的拮抗作用可能代表了生物学上的重要相互作用。由于高密度树皮甲虫种群迅速且显着地改变了森林特征,同胞树皮甲虫物种专性真菌同伴之间的竞争方式可能具有广泛的生态影响。研究了与树皮甲虫(Dendroctonus frontalis)和Dendroctonus brevicomis相关的共生真菌的异源和同伴分离株之间的主要和竞争性资源获取。在多个温度下进行的生长试验表明,在没有竞争者的情况下,真菌生长获得的主要资源在不同地区之间存在差异,并且最佳生长速率可能对应于夏季平均最高温度。在竞争测定中,从同伴甲虫种群分离的真菌与从异源甲虫种群分离的真菌之间的相互作用是不对称的:同胞分离株比异源分离株更具竞争优势。但是,发现甲虫种群中真菌之间的竞争是平等的。这些研究是第一个研究多种石end物种的真菌真菌之间相互作用的研究,结果表明当多种甲虫物种的真菌真菌一起发生时,竞争很可能发生。

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