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真菌的忠实性:通过交配或单核体再生从双核体中进行核离异。

Fungal fidelity: nuclear divorce from a dikaryon by mating or monokaryon regeneration.

机构信息

Laboratory of Genetics, Wageningen University, Droevendaalsesteeg 1, Wageningen, The Netherlands.

出版信息

Fungal Biol. 2013 Apr;117(4):261-7. doi: 10.1016/j.funbio.2013.02.003. Epub 2013 Mar 14.

Abstract

Basidiomycete fungi perform fertilizations by incorporation of nuclei into a monokaryotic mycelium to establish a dikaryon. The dikaryon cannot incorporate another type of nucleus, but can still act as a nucleus donor in a dikaryon-monokaryon (di-mon) mating, known as the Buller phenomenon. Previously, it has been observed that: (1) in a particular di-mon mating, one of the nuclear types of the dikaryon generally performs better as a donor than the other, and (2) when nuclei from a dikaryon are separated to form monokaryons again (dedikaryotisation), recovery of monokaryons of the two nuclear types is usually unequal. In this study, we investigated if these two observations of asymmetry are functionally related. We tested this hypothesis by performing both di-mon matings and dedikaryotisation of dikaryons derived from five different monokaryons. When a single mechanism controls both processes, the nucleus better at fertilizing a monokaryon in a Buller pairing should also be recovered upon dedikaryotisation with a higher frequency. The results showed a hierarchical structure for recovery among nuclei in dedikaryotisation, but this hierarchy did not correspond to the fertilization success during di-mon mating. These findings thus show that the mechanism causing asymmetric regeneration of nuclei, is most likely not the same as the mechanism responsible for increased chance of fertilization in di-mon matings. We discuss the complexity of the interactions that occur during di-mon matings with regards to the mating type loci.

摘要

担子菌真菌通过将细胞核合并到单核菌丝体中进行受精,以建立双核体。双核体不能合并另一种类型的核,但仍然可以在双核体-单核体(di-mon)交配中充当核供体,这被称为布勒现象。以前已经观察到:(1)在特定的 di-mon 交配中,双核体的一种核类型通常比另一种作为供体表现更好,(2)当从双核体中分离出细胞核再次形成单核体时(去双核化),两种核类型的单核体的恢复通常是不平等的。在这项研究中,我们研究了这两个不对称观察结果是否在功能上相关。我们通过进行来自五个不同单核体的双核体的 di-mon 交配和 dedikaryotisation 来检验这一假设。当单一机制控制这两个过程时,在 Buller 配对中使单核体受精更好的核在去双核化时也应该以更高的频率恢复。结果表明,在去双核化过程中,细胞核的恢复存在层次结构,但这种层次结构与 di-mon 交配中的受精成功率不对应。因此,这些发现表明,导致细胞核不对称再生的机制,很可能与在 di-mon 交配中增加受精机会的机制不同。我们讨论了在 di-mon 交配中发生的相互作用的复杂性,以及交配型基因座。

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