首页> 美国卫生研究院文献>Genetics >Expression of Meiotic Drive Elements Spore Killer-2 and Spore Killer-3 in Asci of Neurospora Tetrasperma
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Expression of Meiotic Drive Elements Spore Killer-2 and Spore Killer-3 in Asci of Neurospora Tetrasperma

机译:减数分裂驱动元件孢子杀手2和孢子杀手3在神经孢子形成的精子中的表达。

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摘要

It was shown previously that when a chromosomal Spore killer factor is heterozygous in Neurospora species with eight-spored asci, the four sensitive ascospores in each ascus die and the four survivors are all killers. Sk-2(K) and Sk-3(K) are nonrecombining haplotypes that segregate with the centromere of linkage group III. No killing occurs when either one of these killers is homozygous, but each is sensitive to killing by the other in crosses of Sk-2(K) X Sk-3(K). In the present study, Sk-2(K) and Sk-3(K) were transferred by recurrent backcrosses from the eight-spored species Neurospora crassa into Neurospora tetrasperma, a pseudohomothallic species which normally makes asci with four large spores, each heterokaryotic for mating type and for any other centromere-linked genes that are heterozygous in the cross. The action of Sk-2(K) and Sk-3(K) in N. tetrasperma is that predicted from their behavior in eight-spored species. A sensitive nucleus is protected from killing if it is enclosed in the same ascospore with a killer nucleus. Crosses of Sk-2(K) X Sk-2(S), Sk-3(K) X Sk-3(S), and Sk-2(K) X Sk-3(K) all produce four-spored asci that are wild type in appearance, with the ascospores heterokaryotic and viable. The Eight-spore gene E, which shows variable penetrance, was used to obtain N. tetrasperma asci in which two to eight spores are small and homokaryotic. When killer and sensitive alleles are segregating in the presence of E, only those ascospores that contain a killer allele survive. Half of the small ascospores are killed. In crosses of Sk-2(K) X Sk-3(K) (with E heterozygous), effectively all small ascospores are killed. The ability of N. tetrasperma to carry killer elements in cryptic condition suggests a possible role for Spore killers in the origin of pseudohomothallism, with adoption of the four-spored mode restoring ascospore viability of crosses in which killing would otherwise occur.
机译:先前已显示,当具有8孢子asci的Neurospora物种中的染色体孢子杀手因子是杂合的时,每个ascus中的4个敏感子囊孢子都死亡,并且4个幸存者都是杀手。 Sk-2(K)和Sk-3(K)是与重组III型着丝粒分离的非重组单倍型。当这些杀手中的任何一个是纯合子时,都不会发生杀伤,但是在Sk-2(K)X Sk-3(K)的杂交中,每个杀手对另一个都敏感。在本研究中,Sk-2(K)和Sk-3(K)通过反复回交从八孢子种Neurospora crassa转移到Neurospora tetrasperma,这是一种假高齿种,通常使asci带有四个大孢子,每个孢子为交配型以及杂交中杂合的任何其他着丝粒相关基因。 Sk-2(K)和Sk-3(K)在N.tetrasperma中的作用是根据它们在八孢子物种中的行为预测的。如果敏感核被杀手核包裹在同一个子囊孢子中,则可以保护其免受杀伤。 Sk-2(K)X Sk-2(S),Sk-3(K)X Sk-3(S)和Sk-2(K)X Sk-3(K)的杂交均产生四孢子外观为野生型,具有子囊孢子的异核和有活力。使用八孔孢子基因E(显示出不同的外显率)来获得双精子孢子囊虫,其中两到八个孢子很小并且是同核的。当在E的存在下杀手和敏感等位基因分离时,只有那些包含杀手等位基因的子囊孢子存活。一半的小子囊孢子被杀死。在Sk-2(K)X Sk-3(K)(带有E杂合子)的杂交中,有效杀死了所有小的子囊孢子。四精子孢子虫在隐蔽条件下携带杀伤分子的能力表明,孢子杀手可能在假高保真性起源中发挥作用,采用四孢子模式可恢复杂交子囊孢子的生存能力,否则会造成杀伤。

著录项

  • 期刊名称 Genetics
  • 作者

    N. B. Raju; D. D. Perkins;

  • 作者单位
  • 年(卷),期 1991(129),1
  • 年度 1991
  • 页码 25–37
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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