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Fine Mapping of qRC10-2 a Quantitative Trait Locus for Cold Tolerance of Rice Roots at Seedling and Mature Stages

机译:qRC10-2的精细作图qRC10-2是水稻苗期和成熟期耐冷性的定量性状基因座

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摘要

Cold stress causes various injuries to rice seedlings in low-temperature and high-altitude areas and is therefore an important factor affecting rice production in such areas. In this study, root conductivity (RC) was used as an indicator to map quantitative trait loci (QTLs) of cold tolerance in Oryza rufipogon Griff., Dongxiang wild rice (DX), at its two-leaf stage. The correlation coefficients between RC and the plant survival rate (PSR) at the seedling and maturity stages were –0.85 and –0.9 (P = 0.01), respectively, indicating that RC is a reliable index for evaluating cold tolerance of rice. A preliminary mapping group was constructed from 151 BC2F1 plants using DX as a cold-tolerant donor and the indica variety Nanjing 11 (NJ) as a recurrent parent. A total of 113 codominant simple-sequence repeat (SSR) markers were developed, with a parental polymorphism of 17.3%. Two cold-tolerant QTLs, named qRC10-1 and qRC10-2 were detected on chromosome 10 by composite interval mapping. qRC10-1 (LOD = 3.1, RM171-RM1108) was mapped at 148.3 cM, and qRC10-2 (LOD = 6.1, RM25570-RM304) was mapped at 163.3 cM, which accounted for 9.4% and 32.1% of phenotypic variances, respectively. To fine map the major locus qRC10-2, NJ was crossed with a BC4F2 plant (L188-3), which only carried the QTL qRC10-2, to construct a large BC5F2 fine-mapping population with 13,324 progenies. Forty-five molecular markers were designed to evenly cover qRC10-2, and 10 markers showed polymorphisms between DX and NJ. As a result, qRC10-2 was delimited to a 48.5-kb region between markers qc45 and qc48. In this region, Os10g0489500 and Os10g0490100 exhibited different expression patterns between DX and NJ. Our results provide a basis for identifying the gene(s) underlying qRC10-2, and the markers developed here may be used to improve low-temperature tolerance of rice seedling and maturity stages via marker-assisted selection (MAS).
机译:冷胁迫对低温和高海拔地区的水稻幼苗造成各种伤害,因此是影响这些地区水稻生产的重要因素。在这项研究中,根系电导率(RC)用作绘制东香野生稻(DX)的两叶阶段的Oryza rufipogon Griff。的耐冷性的数量性状基因座(QTL)的指标。 RC与苗期和成熟期植物存活率(PSR)之间的相关系数分别为–0.85和–0.9(P = 0.01),表明RC是评估水稻耐寒性的可靠指标。使用DX作为耐寒供体,以variety稻品种南京11(NJ)作为轮回亲本,从151 BC2F1植物构建了一个初步的作图组。总共开发了113个显性单重复序列(SSR)标记,父母多态性为17.3%。通过复合区间作图,在第10号染色体上检测到两个耐高温QTL,分别为qRC10-1和qRC10-2。 qRC10-1(LOD = 3.1,RM171-RM1108)定位在148.3 cM,qRC10-2(LOD = 6.1,RM25570-RM304)定位在163.3 cM,分别占表型变异的9.4%和32.1% 。为了对主要基因座qRC10-2进行精细定位,将NJ与仅携带QTL qRC10-2的BC4F2植物(L188-3)杂交,以构建具有13324个后代的大BC5F2精细定位种群。设计了45个分子标记以均匀覆盖qRC10-2,其中10个标记显示DX和NJ之间有多态性。结果,qRC10-2被划分为标记qc45和 qc48 之间的48.5-kb区域。在该区域中, Os10g0489500 Os10g0490100 在DX和NJ之间表现出不同的表达模式。我们的研究结果为鉴定 qRC10-2 潜在基因提供了基础,此处开发的标记可通过标记辅助选择用于提高水稻幼苗和成熟期的耐低温性( MAS)。

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