Mohd Ikmal Asmuni, Noraziyah Abd Aziz Shamsudin, Wickneswari Ratnam
Department of Biological Sciences and Biotechnology, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.
Plants (Basel). 2021 Jan 24;10(2):225. doi: 10.3390/plants10020225.
Drought and submergence have been the major constraint in rice production. The present study was conducted to develop high-yielding rice lines with tolerance to drought and submergence by introgressing into a rice line with drought yield QTL (; = quantitative trait loci) viz. and using marker-assisted breeding. We report here the effect of different combinations of and on morpho-physiological, agronomical traits and yield under reproductive stage drought stress (RS) and non-stress (NS) conditions. Lines with outstanding performance in RS and NS trials were also evaluated in vegetative stage submergence stress (VS) trial to assess the tolerance level. The QTL class analysis revealed + as the best QTL combination affecting the measured traits in RS trial followed by + . The effects of single , and were not as superior as when the QTLs are combined, suggesting the positive interaction of and . Best performing lines selected from the RS and NS trials recorded yield advantage up to 4453.69 kg ha and 6954 kg ha over the parents, respectively. The lines were also found having great tolerance to submergence ranging from 80% to 100%, contributed by a lower percentage of shoot elongation and reduction of chlorophyll content after 14 days of VS. These lines could provide yield sustainability to farmers in regions impacted with drought and submergence while serving as important genetic materials for future breeding programs.
干旱和淹水一直是水稻生产的主要限制因素。本研究旨在通过将干旱产量QTL(即数量性状位点)导入一个水稻品系,利用分子标记辅助育种培育出耐旱和耐淹的高产水稻品系。我们在此报告了在生殖期干旱胁迫(RS)和非胁迫(NS)条件下,不同组合的QTL对形态生理、农艺性状和产量的影响。在RS和NS试验中表现优异的品系也在营养期淹水胁迫(VS)试验中进行了评估,以评估其耐受水平。QTL类别分析显示,在RS试验中,+是影响所测性状的最佳QTL组合,其次是+。单个、和的效应不如QTL组合时那么显著,这表明和之间存在正向互作。从RS和NS试验中选出的表现最佳的品系,其产量优势分别比亲本高出4453.69公斤/公顷和6954公斤/公顷。这些品系还被发现对淹水具有很强的耐受性,耐受性在80%至100%之间,这是由于在VS处理14天后,茎伸长百分比降低和叶绿素含量减少所致。这些品系可为受干旱和淹水影响地区的农民提供产量可持续性,同时作为未来育种计划的重要遗传材料。