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一种交配型有限合子致死等位基因的抑制子也能抑制单细胞衣藻中的单亲叶绿体基因传递。

A suppressor of a mating-type limited zygotic lethal allele also suppresses uniparental chloroplast gene transmission in Chlamydomonas monoica.

作者信息

VanWinkle-Swift K, Hoffman R, Shi L, Parker S

机构信息

Department of Biological Sciences, Northern Arizona University, Flagstaff 86011.

出版信息

Genetics. 1994 Mar;136(3):867-77. doi: 10.1093/genetics/136.3.867.

Abstract

Uniparental inheritance of Chlamydomonas chloroplast genes is thought to involve modification of maternal (mt+) chloroplast genomes to protect against a nuclease that is activated after gamete fusion. The mating-type limited mtl-1 mutant strain of Chlamydomonas monoica is unable to protect mt(+)-derived chloroplast DNA. Zygotes homozygous for mtl-1 lose all chloroplast DNA and fail to germinate. We have selected for suppression of this zygote-specific lethality, and have obtained 20 mutant strains that produce viable homozygotes despite the continued presence of the mtl-1 allele. Genetic analysis indicates that the suppressor mutations are all recessive alleles at a single locus (sup-1) which is unlinked to mtl-1. Crosses between sup-1 strains carrying distinctive chloroplast antibiotic resistance markers also show predominantly biparental chloroplast gene transmission. Chloroplast nucleoids of both parental origins (stained with the DNA-specific fluorochrome, DAPI) are retained in the zygotes homozygous for sup-1. The data are compatible with the idea that the sup-1 (suppressor of uniparental inheritance) locus may encode a chloroplast DNA nuclease that is expressed from both parental genomes.

摘要

衣藻叶绿体基因的单亲遗传被认为涉及对母本(mt+)叶绿体基因组的修饰,以抵御配子融合后被激活的核酸酶。衣藻单型的交配型受限mtl-1突变菌株无法保护源自mt(+)的叶绿体DNA。mtl-1纯合的合子会失去所有叶绿体DNA,无法萌发。我们选择抑制这种合子特异性致死性,并获得了20个突变菌株,尽管mtl-1等位基因持续存在,但这些菌株仍能产生可存活的纯合子。遗传分析表明,抑制突变都是位于一个与mtl-1不连锁的单一位点(sup-1)上的隐性等位基因。携带独特叶绿体抗生素抗性标记的sup-1菌株之间的杂交也主要显示双亲叶绿体基因传递。双亲来源的叶绿体类核(用DNA特异性荧光染料DAPI染色)保留在sup-1纯合的合子中。这些数据与sup-1(单亲遗传抑制因子)位点可能编码一种从双亲基因组表达的叶绿体DNA核酸酶的观点一致。

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