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一个新的小鼠17号染色体杂种不育位点:对t单倍型起源的影响。

A novel mouse chromosome 17 hybrid sterility locus: implications for the origin of t haplotypes.

作者信息

Pilder S H, Hammer M F, Silver L M

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544-1014.

出版信息

Genetics. 1991 Sep;129(1):237-46. doi: 10.1093/genetics/129.1.237.

Abstract

The effects of heterospecific combinations of mouse chromosome 17 on male fertility and transmission ratio were investigated through a series of breeding studies. Animals were bred to carry complete chromosome 17 homologs, or portions thereof, from three different sources-Mus domesticus, Mus spretus and t haplotypes. These chromosome 17 combinations were analyzed for fertility within the context of a M. domesticus or M. spretus genetic background. Two new forms of hybrid sterility were identified. First, the heterospecific combination of M. spretus and t haplotype homologs leads to complete male sterility on both M. spretus and M. domesticus genetic backgrounds. This is an example of symmetrical hybrid sterility. Second, the presence of a single M. domesticus chromosome 17 homolog within a M. spretus background causes sterility, however, the same combination of chromosome 17 homologs does not cause sterility within the M. domesticus background. This is a case of asymmetrical hybrid sterility. Through an analysis of recombinant chromosomes, it was possible to map the M. domesticus, M. spretus and t haplotype alleles responsible for these two hybrid sterility phenotypes to the same novel locus (Hybrid sterility-4). Previous structural studies had led to the hypothesis that the ancestral t haplotype originated through an introgression event from M. spretus or a related species. If this were true, one might expect that (1) M. spretus homologs would be transmitted at a non-Mendelian ratio within the M. domesticus background, and (2) t haplotypes would be transmitted at a ratio closer to Mendelian within the M. spretus background.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过一系列育种研究,调查了小鼠17号染色体的异种组合对雄性生育力和传递率的影响。培育动物使其携带来自三个不同来源(家鼠、西班牙小鼠和t单倍型)的完整17号染色体同源物或其部分片段。在小家鼠或西班牙小鼠的遗传背景下,分析这些17号染色体组合的生育力。鉴定出两种新的杂种不育形式。首先,西班牙小鼠和t单倍型同源物的异种组合在西班牙小鼠和小家鼠的遗传背景下均导致完全雄性不育。这是对称杂种不育的一个例子。其次,在西班牙小鼠背景中存在单个小家鼠17号染色体同源物会导致不育,然而,相同的17号染色体同源物组合在小家鼠背景中不会导致不育。这是不对称杂种不育的情况。通过对重组染色体的分析,有可能将导致这两种杂种不育表型的小家鼠、西班牙小鼠和t单倍型等位基因定位到同一个新位点(杂种不育-4)。先前的结构研究提出了一个假设,即祖先t单倍型起源于西班牙小鼠或相关物种的基因渗入事件。如果这是真的,人们可能会预期:(1)在小家鼠背景中,西班牙小鼠同源物将以非孟德尔比率传递;(2)在西班牙小鼠背景中,t单倍型将以更接近孟德尔的比率传递。(摘要截断于250字)

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本文引用的文献

1
Population Dynamics of the Segregation Distorter Polymorphism of DROSOPHILA MELANOGASTER.
Genetics. 1978 May;89(1):171-92. doi: 10.1093/genetics/89.1.171.
3
alpha A-crystallin messenger RNA of the mouse lens: more noncoding than coding sequences.
Science. 1982 Feb 19;215(4535):985-7. doi: 10.1126/science.7156978.
4
Genomic analysis of the H-2 complex region associated with mouse t haplotypes.
Cell. 1982 Jul;29(3):961-8. doi: 10.1016/0092-8674(82)90459-7.
7
8
Genomic sequencing.
Proc Natl Acad Sci U S A. 1984 Apr;81(7):1991-5. doi: 10.1073/pnas.81.7.1991.
9
An alpha globin pseudogene is located within the mouse t complex.
Immunogenetics. 1984;19(2):125-30. doi: 10.1007/BF00387855.
10
Genetic studies on male sterility of hybrids between laboratory and wild mice (Mus musculus L.).
Genet Res. 1974 Oct;24(2):189-206. doi: 10.1017/s0016672300015214.

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