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Mapping and Validation of Quantitative Trait Loci for Root Architectural Traits in Rice (Oryza sativa) under Non-Stress and Salinity Stress Conditions

机译:在非应力和盐度应力条件下的水稻( Oryza Sativa)中根建筑特征的定量和验证

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摘要

Root architectural traits are governed by many genes exhibiting polygenic inheritance. The dissection of the genetic basis of root traits could be achieved by mapping of quantitative trait loci (QTLs) using molecular markers. The present study was conducted aiming at identifying root QTLs in rice using a recombinant inbred line (RIL) population derived from At354 and Bg352. At354 has less extensive, thin root structure and Bg352 has apparently large extensive, dense root structure. Ninety one RILs were phenotypically assessed for root traits namely, root volume (RV), top root girth (TRG), root dry weight (RDW) and root length (RL) under hydroponics. Frequency distributions of these traits indicated broad spectrum of genetic variability in the RIL population. Quantitative Trait Loci (QTLs) were mapped using Single Nucleotide Polymorphism (SNP) markers investigated from a previous study corresponding to same RILs. Results revealed eight QTLs associated with TRG and RDW explaining phenotypic variation ranging from 8.3% to 14.8% under non-stress hydroponics. Identified root QTLs were located within the narrow flanking SNP marker intervals of chromosome 2, 4, 5, 7, 8 and 10. Of them, six root QTLs were co-localized exactly within the same flanking regions of previously identified root QTLs under salinity stress, indicating their contribution under both stress and non-stress conditions. The same donor alleles have contributed in both set of QTLs and these results validated and confirmed the fidelity of the QTLs detected on TRG and RDW. Moreover, this study found a closely associated, user friendly, simple sequence repeat marker, RM24894 to the QTL qNTRG10 and qNRDW10 which could facilitate marker assisted breeding.
机译:根系结构特征受到呈现多基因遗传的许多基因。通过使用分子标记的定量性状基因座(QTLS)映射来实现根部性状的遗传基础的解剖。进行本研究,旨在使用来自AT354和BG352的重组近交系(RIL)群体鉴定水稻中的根QTL。 AT354具有较小的广泛,薄的根结构,BG352具有明显的广泛,致密的根结构。在水培中,九十一条rils对根部特征进行表型,根部特征,根部体积(RV),顶根周长(TRG),根系干重(RDW)和根长(R1)。这些特征的频率分布表明RIL群体中的遗传变异性广泛。使用从相同的rils对应的先前研究中研究的单核苷酸多态性(SNP)标记进行定量特性基因座(QTL)。结果揭示了与TRG和RDW相关的八种QTL,解释了非应力水培中的表型变化从8.3%到14.8%。所识别的根QTL位于它们的染色体2,4,5,7,8和10的窄侧翼SNP标记间隔内。在它们中,六根QTLS完全在盐度应力下先前识别的根QTLS的相同侧面区域内完全相同,表明它们在压力和非压力条件下的贡献。同样的捐赠等位基因在两组QTL中有所贡献,这些结果验证并确认了在TRG和RDW上检测到的QTL的保真度。此外,该研究发现了一个密切相关的用户友好,简单的序列重复标记,RM24894至QTL QNTRG10和QNRDW10,其可以促进标记辅助育种。

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