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四孢脉孢菌的拟同宗配合与交配型染色体的进化

Pseudohomothallism and evolution of the mating-type chromosome in Neurospora tetrasperma.

作者信息

Merino S T, Nelson M A, Jacobson D J, Natvig D O

机构信息

Department of Biology, University of New Mexico, Albuquerque 87131, USA.

出版信息

Genetics. 1996 Jun;143(2):789-99. doi: 10.1093/genetics/143.2.789.

Abstract

Ascospores of Neurospora tetrasperma normally contain nuclei of both mating-type idiomorphs (a and A), resulting in self-fertile heterokaryons (a type of sexual reproduction termed pseudohomothallism). Occasional homokaryotic self-sterile strains (either a or A) behave as heterothallics and, in principle, provide N. tetrasperma with a means for facultative outcrossing. This study was conceived as an investigation of the population biology of N. tetrasperma to assess levels of intrastrain heterokaryosis (heterozygosity). The unexpected result was that the mating-type chromosome and autosomes exhibited very different patterns of evolution, apparently because of suppressed recombination between mating-type chromosomes. Analysis of sequences on the mating-type chromosomes of wild-collected self-fertile strains revealed high levels of genetic variability between sibling A and a nuclei. In contrast, sequences on autosomes of sibling A and a nuclei exhibited nearly complete homogeneity. Conservation of distinct haplotype combinations on A and a mating-type chromosomes in strains from diverse locations further suggested an absence of recombination over substantial periods of evolutionary time. The suppression of recombination on the N. tetrasperma mating-type chromosome, expected to ensure a high frequency of self fertility, presents an interesting parallel with, and possible model for studying aspects of, the evolution of mammalian sex chromosomes.

摘要

四孢链孢霉的子囊孢子通常含有两种交配型特异形态(a和A)的细胞核,从而产生可自我育性的异核体(一种称为假同宗配合的有性生殖类型)。偶尔出现的同核体自交不育菌株(a或A)表现为异宗配合,原则上为四孢链孢霉提供了一种兼性异交的方式。本研究旨在调查四孢链孢霉的群体生物学,以评估菌株内异核现象(杂合性)的水平。意外的结果是,交配型染色体和常染色体表现出非常不同的进化模式,显然是因为交配型染色体之间的重组受到抑制。对野生采集的自育菌株交配型染色体上的序列分析表明,同胞A和a细胞核之间存在高水平的遗传变异性。相比之下,同胞A和a细胞核常染色体上的序列几乎完全相同。来自不同地点的菌株在A和a交配型染色体上不同单倍型组合的保守性进一步表明,在相当长的进化时间内不存在重组。四孢链孢霉交配型染色体上重组的抑制,预期可确保高频率的自我育性,这与哺乳动物性染色体的进化呈现出有趣的相似之处,并可能为研究其进化方面提供模型。

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