El-Namaky R, van Oort P A J
Africa Rice Center (AfricaRice), P.B. 96, St. Louis, Senegal.
Rice Research & Training Center, 33717, Sakha Kafr Sheikh, Egypt.
Rice (N Y). 2017 Dec;10(1):31. doi: 10.1186/s12284-017-0169-y. Epub 2017 Jun 29.
There is still limited quantitative understanding of how environmental factors affect sterility of Environment-conditioned genic male sterility (EGMS) lines. A model was developed for this purpose and tested based on experimental data from Ndiaye (Senegal) in 2013-2015. For the two EGMS lines tested here, it was not clear if one or more recessive gene(s) were causing male sterility. This was tested by studying sterility segregation of the F2 populations.
Daylength (photoperiod) and minimum temperatures during the period from panicle initiation to flowering had significant effects on male sterility. Results clearly showed that only one recessive gene was involved in causing male sterility. The model was applied to determine the set of sowing dates of two different EGMS lines such that both would flower at the same time the pollen would be completely sterile. In the same time the local popular variety (Sahel 108, the male pollen donor) being sufficiently fertile to produce the hybrid seeds. The model was applied to investigate the viability of the two line breeding system in the same location with climate change (+2oC) and in two other potential locations: in M'Be in Ivory Coast and in the Nile delta in Egypt.
Apart from giving new insights in the relation between environment and EGMS, this study shows that these insights can be used to assess safe sowing windows and assess the suitability of sterility and fertility period of different environments for a two line hybrid rice production system.
关于环境因素如何影响环境条件型雄性不育(EGMS)系的不育性,目前仍缺乏定量的认识。为此建立了一个模型,并根据2013 - 2015年来自塞内加尔恩迪亚耶的实验数据进行了测试。对于这里测试的两个EGMS系,尚不清楚是一个还是多个隐性基因导致雄性不育。通过研究F2群体的不育性分离来进行测试。
从幼穗分化到开花期间的日长(光周期)和最低温度对雄性不育有显著影响。结果清楚地表明,只有一个隐性基因参与导致雄性不育。该模型用于确定两个不同EGMS系的播种日期组合,使两者同时开花且花粉完全不育。同时,当地流行品种(萨赫勒108,雄性花粉供体)具有足够的育性来生产杂交种子。该模型还用于研究在同一地点气候变化(+2℃)以及在另外两个潜在地点:科特迪瓦的姆贝和埃及的尼罗河三角洲,两系育种系统的可行性。
除了对环境与EGMS之间的关系提供新的见解外,本研究表明这些见解可用于评估安全播种窗口,并评估不同环境的不育期和育性期对两系杂交水稻生产系统的适宜性。