【24h】

Dmc1 is a candidate for temperature tolerance during wheat meiosis

机译:DMC1是小麦减数分裂期间耐温耐受性的候选者

获取原文
获取原文并翻译 | 示例
       

摘要

Key message The meiotic recombination gene Dmc1 on wheat chromosome 5D has been identified as a candidate for the maintenance of normal chromosome synapsis and crossover at low and possibly high temperatures. We initially assessed the effects of low temperature on meiotic chromosome synapsis and crossover formation in the hexaploid wheat (Triticum aestivum L.) variety 'Chinese Spring'. At low temperatures, asynapsis and chromosome univalence have been observed before in Chinese Spring lines lacking the long arm of chromosome 5D (5DL), which led to the proposal that 5DL carries a gene (Ltp1) that stabilises wheat chromosome pairing at low temperatures. In the current study, Chinese Spring wild type and 5DL interstitial deletion mutant plants were exposed to low temperature in a controlled environment room during a period from premeiotic interphase to early meiosis I. A 5DL deletion mutant was identified whose meiotic chromosomes exhibit extremely high levels of asynapsis and chromosome univalence at metaphase I after 7 days at 13 degrees C, suggesting that Ltp1 is deleted in this mutant. Immunolocalisation of the meiotic proteins ASY1 and ZYP1 on ltp1 mutants showed that low temperature results in a failure to complete synapsis at pachytene. KASP genotyping revealed that the ltp1 mutant has a 4-Mb deletion in 5DL. Of 41 genes within this deletion region, the strongest candidate for the stabilisation of chromosome pairing at low temperatures is the meiotic recombination gene Dmc1. The ltp1 mutants were subsequently treated at 30 degrees C for 24 h during meiosis and exhibited a reduced number of crossovers and increased univalence, though to a lesser extent than at 13 degrees C. We therefore renamed our ltp1 mutant 'ttmei1' (temperature-tolerant meiosis 1) to reflect this additional loss of high temperature tolerance.
机译:关键消息在小麦染色体5d上的减数分子重组基因DMC1已被鉴定为维持正常染色体突触和在低和可能的高温下的交叉的候选者。我们最初评估了低温对低温对六倍体麦片突触和交叉形成的影响六倍体麦片(Triticum Aestivum L.)品种“中国春天”。在低温下,在缺乏染色体5D(5dl)的长臂的中国弹簧线之前,在缺乏染色体的长臂(5dl)的情况下,已经观察到了Asynapsis和染色体的单价,这导致了5dl携带在低温下稳定小麦染色体配对的基因(LTP1)的提议。在目前的研究中,在从中生差异到早期减数分裂的一段时间内,中国弹簧野生型和5DL间质缺失突变植物在受控环境室内暴露于低温。鉴定了5dl缺失突变体,其减数分裂染色体表现出极高的染色体在13℃下7天后,在中期I后的Asynapsis和染色体单价,表明LTP1被删除在该突变体中。 LTP1突变体的减数分裂蛋白Asy1和Zyp1的免疫促射表明,低温导致在悬浮烯中完成突触。 Kasp基因分型显示LTP1突变体在5dl中具有4mb缺失。在该缺失区域内的41个基因中,在低温下稳定染色体配对的最强候选者是减数分裂重组基因DMC1。随后将LTP1突变体在30摄氏度下处理24小时,并表现出减少的交叉数并增加单价,但在小于13摄氏度的程度上。因此,我们更名为我们的LTP1突变体'TTMEI1'(耐温MeIosis 1)反映这种额外的高温耐受性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号