Vega J M, Feldman M
Department of Plant Sciences, The Weizmann Institute of Science, Rehovot 76100, Israel.
Genetics. 1998 Nov;150(3):1199-208. doi: 10.1093/genetics/150.3.1199.
The analysis of the pattern of isochromosome pairing allows one to distinguish factors affecting presynaptic alignment of homologous chromosomes from those affecting synapsis and crossing-over. Because the two homologous arms in an isochromosome are invariably associated by a common centromere, the suppression of pairing between these arms (intrachromosome pairing) would indicate that synaptic or postsynaptic events were impaired. In contrast, the suppression of pairing between an isochromosome and its homologous chromosome (interchromosome pairing), without affecting intrachromosome pairing, would suggest that homologous presynaptic alignment was impaired. We used such an isochromosome system to determine which of the processes associated with chromosome pairing was affected by the Ph1 gene of common wheat-the main gene that restricts pairing to homologues. Ph1 reduced the frequency of interchromosome pairing without affecting intrachromosome pairing. In contrast, intrachromosome pairing was strongly reduced in the absence of the synaptic gene Syn-B1. Premeiotic colchicine treatment, which drastically decreased pairing of conventional chromosomes, reduced interchromosome but not intrachromosome pairing. The results support the hypothesis that premeiotic alignment is a necessary stage for the regularity of meiotic pairing and that Ph1 relaxes this alignment. We suggest that Ph1 acts on premeiotic alignment of homologues and homeologues as a means of ensuring diploid-like meiotic behavior in polyploid wheat.
对等臂染色体配对模式的分析,使人们能够区分影响同源染色体突触前排列的因素与影响联会和交叉的因素。由于等臂染色体中的两条同源臂总是通过一个共同的着丝粒相连,这些臂之间配对的抑制(染色体内配对)将表明突触或突触后事件受损。相反,等臂染色体与其同源染色体之间配对的抑制(染色体间配对),而不影响染色体内配对,将表明同源突触前排列受损。我们使用这样一个等臂染色体系统来确定与染色体配对相关的哪些过程受到普通小麦Ph1基因的影响——该基因是将配对限制在同源染色体上的主要基因。Ph1降低了染色体间配对的频率,而不影响染色体内配对。相比之下,在没有突触基因Syn-B1的情况下,染色体内配对大幅减少。减数分裂前秋水仙素处理极大地降低了常规染色体的配对,减少了染色体间配对,但没有减少染色体内配对。这些结果支持了这样的假设,即减数分裂前排列是减数分裂配对规律性的一个必要阶段,并且Ph1放松了这种排列。我们认为,Ph1作用于同源染色体和部分同源染色体的减数分裂前排列,作为确保多倍体小麦中类似二倍体减数分裂行为的一种方式。