首页> 外文期刊>Evolution: International Journal of Organic Evolution >Evolutionary significance of imbalanced nuclear ratios within heterokaryons of the basidiomycete fungus Heterobasidion parviporum
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Evolutionary significance of imbalanced nuclear ratios within heterokaryons of the basidiomycete fungus Heterobasidion parviporum

机译:担子菌真菌异小孢子异核核内核比例失衡的进化意义。

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Many fungi have heterokaryotic life stages in which genetically different nuclei inhabit the same cell. In basidiomycetes, the heterokaryon is the product of mating and represents a genomic union very similar to a diploid thallus, yet the maintenance of unfused nuclei suggests a more complex association of the two genomes relative to diploidy. In species with variable numbers of nuclei per heterokaryotic cell, nuclear ratios within a mycelium may possibly become imbalanced (differ from 1:1) due to nuclear competition. In this study, heterokaryons of the basidiomycete Heterobasidion parviporum were examined to determine the effects of genotype and environment on nuclear ratios within vegetative mycelia. The data reveal that nuclear ratios are frequently imbalanced, generally stable over time, and genetically determined. The nuclear ratios were affected by environment, but the observed nuclear ratios did not follow the expectations of strong selection acting on a population of nuclei. Instead, these ratios were largely driven by genetic effects and epigenetic effects. Finally, the data suggest that nuclear ratio imbalance also affects both gene transcription and growth rate, implying that heterokaryotic basidiomycetes are not functionally equivalent to diploid individuals and have a higher potential for genotypic and phenotypic variation.
机译:许多真菌具有异核生活阶段,其中遗传上不同的核居住在同一细胞中。在担子菌中,异核体是交配的产物,代表与二倍体loid非常相似的基因组结合,但是未融合核的维持表明两个基因组相对于二倍体而言更为复杂的关联。在每个异核细胞中核数可变的物种中,由于核竞争,菌丝体内的核比率可能会变得不平衡(与1:1不同)。在这项研究中,检查了担子菌杂种细小孢子的异核体,以确定基因型和环境对植物菌丝体内核比的影响。数据表明,核比通常是不平衡的,通常随着时间的推移是稳定的,并且是由基因决定的。核比率受环境影响,但是观察到的核比率并未遵循强烈选择作用于核种群的期望。相反,这些比率主要由遗传效应和表观遗传效应驱动。最后,数据表明核比率失衡也影响基因转录和生长速率,这表明异核生物担子菌在功能上不等同于二倍体个体,并且具有更高的基因型和表型变异潜力。

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