Kumar Sunil, Gill Bikram S, Faris Justin D
Department of Plant Sciences, Loftsgard Hall, North Dakota State University, Fargo, ND 58105, USA.
Mol Genet Genomics. 2007 Aug;278(2):187-96. doi: 10.1007/s00438-007-0248-7. Epub 2007 May 23.
Segregation distortion genes are widespread in plants and animals and function by their effect on competition among gametes for preferential fertilization. In this study, we evaluated the segregation distortion of molecular markers in multiple reciprocal backcross populations derived from unique cytogenetic stocks involving the durum cultivar Langdon (LDN) and wild emmer accessions that allowed us to study the effects of chromosome 5B in isolation. No segregation distortion of female gametes was observed, but three populations developed to analyze segregation of male gametes had genomic regions containing markers with skewed segregation ratios. One region of distortion was due to preferential transmission of LDN alleles over wild emmer alleles through male gametes. Another region required the presence of LDN 5B chromosomes in the female for preferential fertilization by male gametes harboring LDN alleles indicating that the corresponding genes in the female gametes can govern genes affecting segregation distortion of male gametes. A third region of distortion was the result of preferential transmission of wild emmer alleles over LDN alleles through male gametes. These results indicate the existence of different distorter/meiotic drive elements among different genotypes and show that distortion factors along wheat chromosome 5B differ in chromosomal location as well as underlying mechanisms.
分离畸变基因在植物和动物中广泛存在,其作用是通过影响配子间竞争以实现优先受精。在本研究中,我们评估了源自独特细胞遗传学材料的多个正反交回交群体中分子标记的分离畸变情况,这些材料涉及硬粒小麦品种兰登(LDN)和野生二粒小麦材料,这使我们能够单独研究5B染色体的影响。未观察到雌配子的分离畸变,但为分析雄配子分离而构建的三个群体中有基因组区域包含分离比例偏斜的标记。一个畸变区域是由于LDN等位基因通过雄配子优先于野生二粒小麦等位基因传递。另一个区域要求雌性中存在LDN 5B染色体,以便携带LDN等位基因的雄配子优先受精,这表明雌配子中的相应基因可以控制影响雄配子分离畸变的基因。第三个畸变区域是野生二粒小麦等位基因通过雄配子优先于LDN等位基因传递的结果。这些结果表明不同基因型中存在不同的畸变/减数分裂驱动元件,并表明小麦5B染色体上的畸变因子在染色体位置和潜在机制上存在差异。