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Identification and mapping of QTLs associated with drought tolerance traits in rice by a cross between Super Basmati and IR55419-04

机译:超级巴斯马蒂小麦与IR55419-04杂交鉴定与水稻耐旱性状相关的QTL

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摘要

Water stress, in a climate change scenario is one of the major threats for sustainable rice productivity. Combining drought resistance with yield and desirable economic traits is the most promising solution for the researchers. Although several studies resulted in the identification of QTLs for drought resistance in rice, but none of them serve as a milestone. Therefore, there is always a quest to find the new QTLs. The present investigation was carried out to map QTLs involved in drought resistance and yield related parameter in a cross of IR55419-04 and Super Basmati. An F2 population of 418 individuals was used as the mapping population. The raised nursery was transplanted in lyzimeters. Two extreme sets of tolerant (23 Nos.) and sensitive (23 Nos.) individuals were selected based on total water uptake under water stress conditions. Two hundred thirty microsatellite markers staggered on the whole genome were used for identifying polymorphic markers between the two parents. The selected 73 polymorphic microsatellites were used to genotype individuals and were scattered on a distance of 1735 cM on all 12 linkage groups. QTL analysis was performed by using the WinQTL Cartographer 2.5 V. A total of 21 QTLs were detected using composite interval mapping. The QTLs relating to drought tolerance at the vegetative stage were found on chromosome 1. Novel genomic regions were detected in the marker interval RM520-RM143 and RM168-RM520. The region has a significant QTL qTWU3.1 for total water uptake. Root morphological trait QTLs were found on chromosome 3. QTLs responsible for additive effects were due to the alleles of the IR55419-04. These novel QTLs can be used for marker assisted breeding to develop new drought-tolerant rice varieties and fine mapping can be used to explore the functional relationship between the QTLs and phenotypic traits.
机译:在气候变化情况下,缺水是稻米可持续生产的主要威胁之一。将抗旱性与产量和理想的经济性状相结合是研究人员最有希望的解决方案。尽管有几项研究确定了水稻抗旱性的QTL,但它们都不是一个里程碑。因此,总是需要寻找新的QTL。本研究旨在绘制与IR55419-04和Super Basmati杂交的抗旱性和产量相关参数的QTL。使用418个人的F2人口作为测绘人口。育苗场被移植到溶血仪中。根据水分胁迫条件下的总吸水量,选择了两个极端的耐受性(23个)和敏感(23个)个体。在整个基因组上交错排列的233个微卫星标记用于鉴定两个亲本之间的多态性标记。选择的73个多态微卫星用于基因分型,并在所有12个连锁组上以1735 cM的距离散布。通过使用WinQTL Cartographer 2.5 V执行QTL分析。使用复合区间映射检测到总共21个QTL。在染色体1上发现了与营养期耐旱性相关的QTL。在标记间隔RM520-RM143和RM168-RM520中检测到新的基因组区域。该地区的总吸水量具有显着的QTL qTWU3.1。在3号染色体上发现了根系形态特征QTL。负责加性效应的QTL是IR55419-04的等位基因引起的。这些新颖的QTL可用于标记辅助育种,以开发新的耐旱水稻品种,精细定位可用于探索QTL与表型性状之间的功能关系。

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