Yuan Wenya, Li Xingwang, Chang Yuxiao, Wen Ruoyu, Chen Guoxing, Zhang Qifa, Wu Changyin
National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.
Plant J. 2009 Jul;59(2):303-15. doi: 10.1111/j.1365-313X.2009.03870.x. Epub 2009 Apr 14.
Meiosis is essential for eukaryotic sexual reproduction and important for genetic diversity among individuals. Although a number of genes regulating homologous chromosome pairing and synapsis have been identified in the plant kingdom, their molecular basis remains poorly understood. In this study, we identified a novel gene, PAIR3 (HOMOLOGOUS PAIRING ABERRATION IN RICE MEIOSIS 3), required for homologous chromosome pairing and synapsis in rice. Two independent alleles, designated pair3-1 and pair3-2, were identified in our T-DNA insertional mutant library which could not form bivalents due to failure of homologous chromosome pairing and synapsis at diakinesis, resulting in sterility in both male and female gametes. Suppression of PAIR3 by RNAi produced similar results to the T-DNA insertion lines. PAIR3 encodes a protein that contains putative coiled-coil motifs, but does not have any close homologs in other organisms. PAIR3 is preferentially expressed in reproductive organs, especially in pollen mother cells and the ovule tissues during meiosis. Our results suggest that PAIR3 plays a crucial role in homologous chromosome pairing and synapsis in meiosis.
减数分裂对于真核生物的有性生殖至关重要,并且对个体间的遗传多样性也很重要。尽管在植物界已经鉴定出许多调控同源染色体配对和联会的基因,但其分子基础仍知之甚少。在本研究中,我们鉴定了一个新基因PAIR3(水稻减数分裂中同源配对异常3),它是水稻同源染色体配对和联会所必需的。在我们的T-DNA插入突变体文库中鉴定出两个独立的等位基因,命名为pair3-1和pair3-2,由于在终变期同源染色体配对和联会失败,它们无法形成二价体,导致雄配子和雌配子均不育。通过RNAi抑制PAIR3产生了与T-DNA插入系相似的结果。PAIR3编码一种含有假定卷曲螺旋基序的蛋白质,但在其他生物体中没有任何密切的同源物。PAIR3在生殖器官中优先表达,特别是在减数分裂期间的花粉母细胞和胚珠组织中。我们的结果表明,PAIR3在减数分裂中的同源染色体配对和联会中起关键作用。