Green Revolution made a substantial contribution to wheat yields worldwide in the 196os and 197os. It is of great importance to analyze the haplotype variation of Rht-D1, the Green Revolution gene, during wheat (Triticum aestivum L.) domestication and breeding to understand its evolution and function in wheat breeding history. In this study, the Rht-D1 and its flanking regions were sequenced and single nucleotide polymorphisms were detected based on a panel of 45 accessions of Aegilops tauschii, 51 accessions of landraces and 8o accessions of commercial varieties. Genetic diversity in the wild accessions was much higher than that in the varieties and higher than that reported previously. Seven haplotypes (Hapl I to Hapl VII) of Rht-D1 were identified and their evolutionary relationships were proposed. In addition to the well-known Green Revolution allele Rht-Dlb, Hapl Vii (an allele Rht-Dlk) was identified in early breeding varieties, whichreduced plant height by 16%. The results suggested that Rht-Dlk had been used in breeding before the Green Revolution and made a great contribution to wheat production worldwide. Based on the breeding history and molecular evidence, we proposed that the wheat Green Revolution in China and International Maize and Wheat Improvement Center (CIMMYT) occurred independently.
【目的】明确气候变暖对作物生产的实际影响,降低对未来粮食安全预测的不确定性。【方法】依据东北水稻生产和气候变化的长期观测数据,并结合田间开放式增温试验(free air temperature increase,FATI),系统研究稻作系统对气候变暖的实际响应与适应。【结果】历史数据分析发现,近几十年来东北水稻单产与其生长季的气温呈明显递增趋势,相关显著,但与降水量变化相关不显著。理论推算表明,水稻生长季最低气温升高1℃,水稻单产可提高6.0%以上。田间试验发现,在目前的气温背景下,水稻冠层气温升高1℃,单产可提高10%左右。近四十年来东北水稻新品种的生育期每10年约延长3 d,与近二十年来田间观测到的水稻实际生育期延长幅度基本一致,达5 d左右;与1970年相比,2010年黑龙江省的水稻种植面积扩大了24倍,种植重心向北位移了近110 km,与东北水稻生长季≥10℃有效积温带北移的幅度一致。【结论】气候变暖对东北水稻的直接增产效应显著,稻作系统可以通过品种改良、栽培改进和区域调整等策略来逐步适应气候变化的趋势。在应对气候变化的稻作制度调整上,应充分挖掘增温的增产效应及作物系统的适应潜力,调整时机和幅度应适当迟后于预测的气候变化进程。在气候变暖的大趋势下,要注意因水稻生育期延长和种植区域北扩而可能遭遇的低温冷害等极端性天气。