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Identification of quantitative trait loci for salinity tolerance in rice (Oryza sativa L.) using IR29/Hasawi mapping population

机译:利用IR29 / Hasawi作图群体鉴定水稻耐盐性的数量性状基因座

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Salinity is the second most important abiotic stress after drought that hampers rice production, especially in south and Southeast Asia. Breeding approach supplemented with molecular markers-assisted selection is the most promising approach in terms of efficiency to increase the productivity under salt-affected soils. Thirty-day-old rice seedlings of 300 F5:6 recombinant-inbred lines derived from a cross between the salt sensitive, IR29 (indica), and a salt tolerant, Hasawi (aus), were used to identify quantitative trait loci (QTLs) linked to salinity tolerance. One hundred and ninety four polymorphic SNP markers were used to construct a genetic linkage map involving 142 selected RILs that covered 1441.96 cM genome with an average distance of 7.88 cM between loci. Twentynew QTLs (LOD 3) were identified on chromosomes 1, 2, 4, 6, 8, 9 and 12 using composite interval mapping with R2 as high as 20% with LODvalue of 7.21. Many earlier studies reported big qSaltol for seedling stage salinity tolerance in rice is on short arm of chromosome 1 but none of the QTL in our study was on qSaltol or nearby position, therefore, Hasawi conferred salinity tolerance in RILs due to novel QTLs. It is suggested to fine map the novel QTLs so that the level of salinity tolerance could be further enhanced by pyramiding of the different QTLs in one genetic background through marker-assisted selection.
机译:盐分是干旱之后第二重要的非生物胁迫,特别是在南亚和东南亚,这是阻碍水稻生产的第二大非生物胁迫。就提高受盐影响的土壤的生产力而言,以分子标记辅助选择为基础的育种方法是最有前途的方法。 30天的300个F5:6重组近交系水稻幼苗,由盐敏感的IR29(indica)和耐盐的Hasawi(aus)杂交得到,用于鉴定数量性状基因座(QTL)与耐盐性有关。 194个多态性SNP标记用于构建遗传连锁图谱,涉及142个选定的RIL,这些RIL覆盖了1441.96 cM基因组,基因座之间的平均距离为7.88 cM。使用复合区间作图,R2高达> 20%,LOD值为7.21,在染色体1、2、4、6、8、9和12上鉴定出二十个新的QTL(LOD> 3)。许多较早的研究报道,水稻大苗期耐盐性的qSaltol位于第1号染色体的短臂上,但我们的研究中没有一个QTL位于qSaltol或附近位置,因此,由于新的QTL,Hasawi赋予了RIL耐盐性。建议对新的QTL进行精细定位,以便通过标记辅助选择在一个遗传背景中将不同QTL金字塔化来进一步提高耐盐性水平。

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