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The scope for nuclear selection within Termitomyces fungi associated with fungus-growing termites is limited

机译:与真菌生长的白蚁相关的Termitomyces真菌内的核选择范围有限

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Background We investigate the scope for selection at the level of nuclei within fungal individuals (mycelia) of the mutualistic Termitomyces cultivated by fungus-growing termites. Whereas in most basidiomycete fungi the number and kind of nuclei is strictly regulated to be two per cell, in Termitomyces mycelia the number of nuclei per cell is highly variable. We hypothesised that natural selection on these fungi not only occurs between mycelia, but also at the level of nuclei within the mycelium. We test this hypothesis using in vitro tests with five nuclear haplotypes of a Termitomyces species. Results First, we studied the transition from a mixture of five homokaryons (mycelia with identical nuclei) each with a different nuclear haplotype to heterokaryons (mycelia with genetically different nuclei). In vitro cultivation of this mixture for multiple asexual transfers led to the formation of multiple heterokaryotic mycelia, and a reduction of mycelial diversity over time. All heterokaryotic mycelia contained exactly two types of nucleus. The success of a heterokaryon during in vitro cultivation was mainly determined by spore production and to a lesser extent by mycelial growth rate. Second, heterokaryons invariably produced more spores than homokaryons implying that homokaryons will be outcompeted. Third, no homokaryotic ‘escapes’ from a heterokaryon via the formation of homokaryotic spores were found, despite extensive spore genotyping. Fourth, in contrast to most studied basidiomycete fungi, in Termitomyces sp. no nuclear migration occurs during mating, limiting the scope for nuclear competition within the mycelium. Conclusions Our experiments demonstrate that in this species of Termitomyces the scope for selection at the level of the nucleus within an established mycelium is limited. Although ‘mate choice’ of a particular nuclear haplotype is possible during mating, we infer that selection primarily occurs between mycelia with two types of nucleus (heterokaryons).
机译:背景我们研究了由真菌生长的白蚁培育的互生的Termmitomyces真菌个体(菌丝体)中的核水平选择范围。在大多数担子菌真菌中,细胞核的数量和种类都严格控制为每个细胞两个,而在菌丝菌菌丝体中,每个细胞的细胞核的数量却变化很大。我们假设这些真菌的自然选择不仅发生在菌丝体之间,而且发生在菌丝体内的细胞核水平。我们使用具有五个核单胞菌属物种的单倍型的体外测试来检验该假设。结果首先,我们研究了从五个均核型不同的同核体(具有相同核的菌丝体)的混合物过渡到异核体(具有遗传上不同的核的菌丝体)的过渡。将该混合物进行多次无性繁殖的体外培养导致形成多个异核生物菌丝体,并随着时间的推移降低了菌丝体多样性。所有异核生物菌丝体都恰好包含两种类型的核。异源核在体外培养过程中的成功主要取决于孢子的产生,而在较小程度上取决于菌丝体的生长速度。其次,异核总是产生比同核更多的孢子,这意味着同核将被竞争。第三,尽管进行了广泛的孢子基因分型,但未发现通过形成同核孢子而从异核体中逃脱的同核核“逃逸”。第四,与大多数研究过的担子菌真菌相反,在Termitomyces sp。中。在交配过程中不会发生核迁移,从而限制了菌丝体内核竞争的范围。结论我们的实验表明,在这种菌种中,在已建立的菌丝体中,在细胞核水平进行选择的范围是有限的。尽管在交配过程中可以选择特定核单体型的“伴侣选择”,但我们推断选择主要发生在具有两种细胞核(杂核)的菌丝体之间。

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