De Veaux L C, Hoagland N A, Smith G R
Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.
Genetics. 1992 Feb;130(2):251-62. doi: 10.1093/genetics/130.2.251.
We have analyzed 43 recessive mutations reducing meiotic intragenic recombination in Schizosaccharomyces pombe. These mutations were isolated by a screen for reduced plasmid-by-chromosome recombination at the ade6 locus. Sixteen of the mutations define 10 new complementation groups, bringing to 17 the number of genes identified to be involved in meiotic recombination. The mutations were grouped into three discrete classes depending on the severity of the recombination deficiency in crosses involving the ade6-M26 recombination hotspot. Class I mutations caused at least a 1000-fold reduction in M26-stimulated intragenic recombination at the ade6 locus. Class II mutations reduced M26-stimulated recombination approximately 100-fold. Class III mutations caused a 3-10-fold reduction in either M26-stimulated or non-hotspot recombination. We obtained multiple alleles of class I and class II mutations, suggesting that we may be nearing saturation for mutations of this type. As a first step toward mapping, we used mitotic segregation to assign fourteen of the rec genes to chromosomes. Mutations in the six rec genes tested also caused a decrease in intragenic recombination at the ura4 locus; five of these mutations also reduced intergenic recombination between the pro2 and arg3 genes. These results indicate that these multiple rec gene products are required for high level meiotic recombination throughout the S. pombe genome.
我们分析了43个隐性突变,这些突变可减少粟酒裂殖酵母中的减数分裂基因内重组。这些突变是通过筛选在ade6位点减少质粒与染色体间重组而分离得到的。其中16个突变定义了10个新的互补群,使已确定参与减数分裂重组的基因数量增加到17个。根据在涉及ade6-M26重组热点的杂交中重组缺陷的严重程度,这些突变被分为三个不同的类别。I类突变导致ade6位点处M26刺激的基因内重组至少降低1000倍。II类突变使M26刺激的重组降低约100倍。III类突变导致M26刺激的或非热点重组降低3至10倍。我们获得了I类和II类突变的多个等位基因,这表明我们可能已接近这类突变的饱和状态。作为定位的第一步,我们利用有丝分裂分离将14个rec基因定位到染色体上。所测试的6个rec基因中的突变也导致ura4位点处的基因内重组减少;其中5个突变还降低了pro2和arg3基因之间的基因间重组。这些结果表明,粟酒裂殖酵母全基因组高水平的减数分裂重组需要这些多个rec基因产物。