首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Development and application of gene-based markers for the major rice QTL Phosphorus uptake 1
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Development and application of gene-based markers for the major rice QTL Phosphorus uptake 1

机译:水稻主要QTL磷吸收基因标记的开发与应用1

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Marker-assisted breeding is a very useful tool for breeders but still lags behind its potential because information on the effect of quantitative trait loci (QTLs) in different genetic backgrounds and ideal molecular markers are unavailable. Here, we report on some first steps toward the validation and application of the major rice QTL Phosphate uptake 1 (Pup1) that confers tolerance of phosphorus (P) deficiency in rice (Oryza sativa L.). Based on the Pup1 genomic sequence of the tolerant donor variety Kasalath that recently became available, markers were designed that target (1) putative genes that are partially conserved in the Nipponbare reference genome and (2) Kasalath-specific genes that are located in a large insertion-deletion (INDEL) region that is absent in Nipponbare. Testing these markers in 159 diverse rice accessions confirmed their diagnostic value across genotypes and showed that Pup1 is present in more than 50% of rice accessions adapted to stress-prone environments, whereas it was detected in only about 10% of the analyzed irrigated/lowland varieties. Furthermore, the Pup1 locus was detected in more than 80% of the analyzed drought-tolerant rice breeding lines, suggesting that breeders are unknowingly selecting for Pup1. A hydroponics experiment revealed genotypic differences in the response to P deficiency between upland and irrigated varieties but confirmed that root elongation is independent of Pup1. Contrasting Pup1 near-isogenic lines (NILs) were subsequently grown in two different P-deficient soils and environments. Under the applied aerobic growth conditions, NILs with the Pup1 locus maintained significantly higher grain weight plantp# under P deprivation in comparison with intolerant sister lines without Pup1. Overall, the data provide evidence that Pup1 has the potential to improve yield in P-deficient and/or drought-prone environments and in diverse genetic backgrounds.
机译:标记辅助育种对育种者来说是非常有用的工具,但仍落后于其潜力,因为尚无关于不同遗传背景和理想分子标记的定量性状位点(QTL)作用的信息。在这里,我们报告了一些主要稻米QTL磷酸盐吸收1(Pup1)的验证和应用的一些初步步骤,这些研究赋予了稻米(Oryza sativa L.)对磷(P)缺乏的耐受性。基于最近可获得的耐性供体品种Kasalath的Pup1基因组序列,设计了靶向(1)在Nipponbare参考基因组中部分保守的推定基因和(2)位于大范围内的Kasalath特异性基因的标记Nipponbare中不存在的插入-缺失(INDEL)区。在159个不同水稻品种中测试了这些标记,证实了它们在不同基因型中的诊断价值,并表明Pup1存在于50%的适应逆境环境的水稻品种中,而仅在约10%的灌溉/低地中检测到了品种。此外,在分析的耐旱水稻育种系中有80%以上检测到Pup1基因座,这表明育种者在不知不觉中选择了Pup1。水培试验揭示了旱地和灌溉品种对磷缺乏的反应的基因型差异,但证实根系的伸长与Pup1无关。随后在两种不同的缺磷土壤和环境中生长了对比的Pup1近等基因系(NIL)。在有氧生长条件下,与Pup1位点的不耐性姊妹系相比,具有Pup1位点的NIL在缺磷条件下仍保持较高的粒重plantp#。总体而言,这些数据提供了证据,表明Pup1在缺磷和/或易干旱的环境以及多种遗传背景下都有提高产量的潜力。

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